病原體或植物病害檢測與監測市場-全球及區域分析:按產品、應用和國家分類-分析與預測,2026-2031年
市場調查報告書
商品編碼
2118832

病原體或植物病害檢測與監測市場-全球及區域分析:按產品、應用和國家分類-分析與預測,2026-2031年

Pathogen or Plant Disease Detection and Monitoring Market - A Global and Regional Analysis: Focus on Product, Application, and Country Analysis - Analysis and Forecast, 2026-2031

出版日期: | 出版商: BIS Research | 英文 299 Pages | 商品交期: 1-5個工作天內

價格

全球病原體或植物病害檢測和監測市場預計將從 2025 年的 6.378 億美元成長到 2031 年的 11.589 億美元,預計在 2026 年至 2031 年的預測期內,複合年成長率將達到 10.27%。

推動這一成長的因素包括:作物病原體對殺菌劑產生抗藥性的威脅日益加劇、新的植物病害頻繁出現、對快速田間診斷的需求不斷成長、數位農業的擴張以及對綜合監測和決策支援系統的需求。

關鍵市場統計數據
預測期 2026-2031
2026年市場規模 7.109億美元
2031 年預測 11.589億美元
複合年成長率 10.27%

該市場涵蓋用於檢測、識別、確認、監測和報告整體農業生產系統中植物病原體和疾病風險的產品和服務。這包括診斷試劑盒、檢測服務、數位化解決方案、遙感探測服務、物聯網感測器技術和數據分析服務,以及在露天和控制環境農業中使用的相關工作流程。其範圍包括真菌、鹿角蟲、細菌、病毒、類病毒、植原體和其他相關的植物健康目標。解決方案包括快速田間診斷、PCR 和分子檢測、血清學檢測、實驗室確認檢測、遙感探測、互聯監測和數位化疾病風險評估。

市場概覽

植物病害診斷正從集中式、實驗室主導的工作流程轉向分散式、一體化的植物健康系統。雖然傳統檢測對於確診、認證、種子健康檢測、疫情監測和監管決策仍然至關重要,但快速田間診斷正在縮短從採樣到介入的時間。攜帶式PCR、LAMP、RPA、CRISPR等診斷技術、側向流動免疫檢測、生物感測器和微流體平台正在推動即時檢測的商業化。

數位化整合正成為市場發展的關鍵趨勢。現代解決方案融合了現場診斷、實驗室驗證、遙感探測、物聯網設備、氣象資訊、農場管理軟體以及人工智慧驅動的決策支援。這些系統能夠將樣本與GPS座標、工作人員身分、採集時間、實驗室結果、疾病風險評分和植物檢疫記錄關聯起來,從而創建可追溯的工作流程,並透過軟體訂閱、分析、警報和技術服務創造持續的商機。

對產業的影響

病原體和植物病害檢測生態系統涵蓋試劑和抗體供應商、檢測套組製造商、攜帶式設備開發人員、檢查室網路、農業服務供應商、數位農業平台、分銷商、研究機構、種子企業、種植者和植物保護機構。製造商大規模生產試劑、試紙、試劑盒、攜帶式設備、感測器、孢子捕集器和耗材,而數位服務供應商則部署雲端平台、分析引擎、行動應用程式、資料管道和連網監測設備。

產品透過直銷、專業經銷商、檢測實驗室、農業服務供應商、政府專案和數位訂閱等管道交付給最終用戶。價值鏈涵蓋從檢體採集和現場檢測到實驗室驗證、病害風險評估、監測報告、預警、農業建議和監管通知等各個環節。這些成果為治療、控制、檢疫、作物移除、認證和持續監測等方面的決策提供支援。

目錄

第1章 市場:產業展望

  • 市場的定義
  • 當前趨勢
    • 利用數據分析和人工智慧進行精準疾病檢測。
    • 利用即時檢測進行分散式植物病害診斷。
    • 等溫擴增技術在快速現場診斷的應用拓展
    • 快速現場測試和實驗室驗證,以及數位決策支援的整合。
  • 生態系/持續性項目
    • 聯盟、協會和監管機構
    • 政府項目
    • 主要國家快速現場診斷的監管途徑
  • 商業趨勢
    • 業務促進因素
    • 業務挑戰
    • 商業機會
  • 市場策略與趨勢
    • 商業策略
    • 企業策略
    • 概述市場主要參與者所採取的企業策略。
  • 案例研究
  • 創業趨勢
    • 資金籌措分析
  • 價值鏈分析
  • 專利分析
    • 按國家和公司分類的專利申請趨勢
  • 快速現場診斷分析
    • 快速現場診斷與標準實驗室檢測的比較
    • 最先進的現場快速檢測和可用技術
    • 與ELISA、PCR和qPCR的比較
    • 農業領域的電化學感測器和生物感測器
    • 現場使用限制、交叉反應、基質干擾和檢體處理注意事項。
  • 價格分析
    • 價格基準/單位經濟效益概覽
    • 診斷試劑盒
    • 服務

第2章 應用

  • 用途概述
  • 病原體或植物病害檢測和監測市場(按應用領域分類)
    • 戶外栽培
    • 管理環境
  • 病原體或植物病害檢測和監測市場(按最終用戶分類)
    • 農業科學家/作物顧問/田間試驗提供服務業者
    • 農民、生產者和農業專家
    • 研究人員、科學家、大學和研究機構
    • 其他

第3章 產品

  • 產品概述
  • 病原體或植物病害檢測和監測市場(按產品分類)
    • 診斷試劑盒
    • 檢查服務
    • 數位解決方案

第4章 區域

  • 區域概況
  • 北美洲
    • 區域概覽
    • 目的
    • 最終用戶
    • 產品
    • 北美洲(按國家/地區分類)
  • 歐洲
    • 區域概覽
    • 目的
    • 最終用戶
    • 產品
    • 歐洲(按國家/地區分類)
  • 亞太地區
    • 區域概覽
    • 目的
    • 最終用戶
    • 產品
    • 亞太地區(按國家/地區分類)
  • 南美洲
    • 區域概覽
    • 目的
    • 最終用戶
    • 產品
    • 南美洲(按國家分類)
  • 中東和非洲
    • 區域概覽
    • 目的
    • 最終用戶
    • 產品
    • 中東和非洲(按國家分類)

第5章 市場-競爭標竿分析與公司概況

  • 競爭性標竿分析
  • 市佔率分析
  • 快速診斷和農業抗體供應商分佈圖
    • 快速現場診斷試劑盒製造商
    • 農業特定病原體抗體供應商
    • 植物病原體單株抗體和多株抗體的可用性
    • 關於客製化抗體開發的進度和成本的考量。
    • 比較單一抗體和試劑的可用性與試劑盒形式的使用情況。
  • 公司簡介
    • Abingdon Health plc
    • Agdia, Inc.
    • BIOREBA AG
    • Creative Diagnostics
    • LOEWE Biochemica GmbH
    • Agricolus Srl
    • OptiGene Limited
    • REGA Biotechnology Inc.
    • SignalChem Lifesciences Corporation(SLC)
    • Norgen Biotek Corp.
    • Tiaris Biosciences
    • NIPPON GENE CO., LTD.

第6章:調查方法

Product Code: AGA1537SB

This report can be delivered within 1 working day.

Introduction of the Pathogen or Plant Disease Detection and Monitoring Market

The global pathogen or plant disease detection and monitoring market is projected to reach $1,158.9 million by 2031 from $637.8 million in 2025, growing at a CAGR of 10.27% during the forecast period 2026-2031. Growth is supported by the rising threat of fungicide resistance in crop pathogens, frequent outbreaks of emerging plant diseases, increasing demand for rapid field diagnostics, expansion of digital agriculture, and the need for integrated surveillance and decision-support systems.

KEY MARKET STATISTICS
Forecast Period2026 - 2031
2026 Evaluation$710.9 Million
2031 Forecast$1,158.9 Million
CAGR10.27%

The market covers products and services used to detect, identify, confirm, monitor, and report plant pathogens and disease risks across agricultural production systems. It includes diagnostic kits, laboratory services, digital solutions, remote sensing services, IoT sensor technology and data analysis services, and associated workflows used across open-field and controlled-environment agriculture. The scope covers fungi, oomycetes, bacteria, viruses, viroids, phytoplasmas, and other relevant plant-health targets. Solutions include rapid field diagnostics, PCR and molecular testing, serological testing, laboratory confirmation, remote sensing, connected monitoring, and digital disease-risk assessment.

Market Introduction

Plant disease diagnostics are moving from centralized, laboratory-led workflows toward decentralized and integrated plant-health systems. Conventional testing remains important for confirmation, certification, seed-health testing, outbreak investigations, and regulatory decisions, while rapid field diagnostics reduce the time between sampling and intervention. Portable PCR, LAMP, RPA, CRISPR-based diagnostics, lateral-flow immunoassays, biosensors, and microfluidic platforms are supporting commercialization of point-of-care testing.

Digital integration is becoming a defining market trend. Modern solutions combine field diagnostics, laboratory confirmation, remote sensing, IoT devices, weather information, farm-management software, and AI-supported decision support. These systems can associate samples with GPS coordinates, operator identity, collection time, laboratory results, disease-risk scores, and phytosanitary records, creating traceable workflows and recurring revenue opportunities through software subscriptions, analytics, alerts, and technical services.

Industrial Impact

The pathogen and plant disease detection ecosystem spans reagent and antibody suppliers, test-kit manufacturers, portable instrument developers, laboratory networks, agricultural service providers, digital agriculture platforms, distributors, research institutions, seed companies, growers, and plant-protection authorities. Manufacturers scale reagents, test strips, cartridges, kits, portable instruments, sensors, spore traps, and consumables, while digital providers deploy cloud platforms, analytical engines, mobile applications, data pipelines, and connected monitoring equipment.

Products reach end users through direct sales, specialist distributors, laboratories, agronomic service providers, government programs, and digital subscriptions. The value chain extends from sample collection and field testing to laboratory confirmation, disease-risk scoring, surveillance reports, early warnings, agronomic recommendations, and regulatory notifications. These outputs support treatment, containment, quarantine, crop removal, certification, and continued monitoring decisions.

Market Segmentation:

Segmentation 1: By Application

  • Open Field
  • Controlled Environment

Open Field to Lead the Pathogen or Plant Disease Detection and Monitoring Market (by Application)

Open-field agriculture is expected to remain the dominant application, increasing from $542.1 million in 2025 to $977.6 million by 2031 at a CAGR of 10.33%. Most cereals, oilseeds, pulses, cotton, potatoes, fruits, and plantation crops are cultivated across extensive outdoor areas, creating recurring demand for crop scouting, rapid field tests, laboratory confirmation, satellite monitoring, weather stations, and disease-risk models. Open fields are also more exposed to rainfall, wind, temperature fluctuations, humidity, contaminated soil, insect vectors, and movement of infected plant material, making continuous surveillance and early warning commercially important.

Segmentation 2: By End User

  • Agronomists/Crop Consultants/Field Testing Service Providers
  • Farmers, Growers, and Agricultural Professionals
  • Researchers, Scientists, Universities, and Research Institutes
  • Others

Agronomists/Crop Consultants/Field Testing Service Providers to Lead the Pathogen or Plant Disease Detection and Monitoring Market (by End User)

Agronomists, crop consultants, and field testing service providers are expected to remain the leading end-user group, increasing from $242.4 million in 2025 to $462.3 million by 2031 at a CAGR of 11.36%. These users act as intermediaries between field observations, diagnostic testing, laboratory interpretation, and crop-management decisions. Service providers can distribute advanced technologies across multiple farms without requiring every grower to purchase dedicated equipment, while recurring testing relationships and broader assay menus support continued demand.

Segmentation 3: By Product

  • Diagnostic Kits
  • Laboratory Services
  • Digital Solutions

Laboratory Services to Lead the Pathogen or Plant Disease Detection and Monitoring Market (by Product)

Laboratory services are expected to remain the largest product category, increasing from $272.7 million in 2025 to $486.1 million by 2031 at a CAGR of 10.11%. Laboratories remain essential for confirmatory diagnosis, seed-health testing, phytosanitary certification, complex sample analysis, outbreak investigations, and tests requiring higher analytical sensitivity or specificity. Laboratory networks also increasingly integrate molecular diagnostics, sequencing, digital reporting, and specialist interpretation.

Segmentation 4: By Region

  • North America: U.S., Canada, and Mexico
  • Europe: U.K., Italy, France, Netherlands, Germany, Switzerland, Belgium, Spain, Bulgaria, Ukraine, and Rest-of-Europe
  • Asia-Pacific: China, Japan, Australia, New Zealand, South Korea, India, and Rest-of-Asia-Pacific
  • South America: Brazil, Argentina, and Rest-of-South America
  • Middle East and Africa: South Africa, Turkey, Israel, and Rest-of-MEA

Asia-Pacific to Lead the Pathogen or Plant Disease Detection and Monitoring Market (by Region)

Asia-Pacific represented 32.8% of the global market in 2025 and is expected to remain the largest regional market through the forecast period. The region combines large cultivated areas, diverse crop systems, expanding agricultural digitalization, growing diagnostic infrastructure, and increasing need for disease surveillance. China, India, Japan, Australia, South Korea, and other Asian markets are strengthening laboratory, field-testing, and digital surveillance capabilities.

North America accounted for 27.1% of the 2025 market, supported by mature diagnostic laboratories, established plant-health networks, commercial agriculture, and adoption of molecular and digital diagnostics. Europe represented 24.9%, with demand supported by phytosanitary requirements, accredited laboratories, seed-health testing, and digital plant-health systems. South America accounted for 8.7%, supported by large commercial agriculture and disease surveillance requirements, while the Middle East and Africa accounted for 6.5% and provide opportunities through export agriculture, greenhouse production, biosecurity, and development-supported surveillance.

Demand - Drivers, Challenges, and Opportunities

Market Drivers

Rising Threat of Fungicide Resistance in Crop Pathogens

Fungicide resistance is increasing the importance of accurate pathogen identification and disease surveillance because treatment decisions increasingly depend on understanding the pathogen and its resistance characteristics. Repeated use of the same fungicide modes of action can select resistant pathogen populations, reducing treatment effectiveness and increasing crop-management costs. This strengthens demand for diagnostics that can support early identification, resistance monitoring, laboratory confirmation, and targeted crop-protection decisions.

Frequent Outbreaks of Emerging Plant Diseases

Emerging, re-emerging, and transboundary plant diseases are creating sustained demand for rapid field diagnostics, molecular confirmation, surveillance, and traceability systems. Climate change can alter temperature, rainfall, humidity, and seasonal patterns, while international trade in seeds, seedlings, nursery stock, and fresh produce creates additional opportunities for pathogen introduction. These conditions increase the commercial need for rapid diagnostics supporting surveillance, border inspection, quarantine, outbreak investigation, and traceability.

Market Challenges

Diagnostic Accuracy, Sample Integrity, and Data Security

Reliable plant-pathogen diagnosis depends on analytical performance as well as sample integrity and traceability throughout the testing workflow. Sample degradation, cross-contamination, matrix interference, cross-reactivity, operator variability, inadequate chain of custody, and environmental conditions can affect results. False-negative results can allow infected planting material to enter production or trade, while false-positive results can trigger unnecessary crop destruction, quarantine, export rejection, or treatment. As diagnostic workflows become decentralized and digitally connected, secure result storage, authentication, timestamping, geolocation, and traceable reporting are also increasingly important.

Rapid Adoption of Genetically Modified and Gene-Edited Crops

The growing commercialization of genetically modified and gene-edited crops is increasing diagnostic complexity rather than directly increasing disease incidence. Modified cultivars may show altered symptom development, disease progression, pathogen interactions, or physiological responses. Laboratories therefore need assays that accurately detect pathogens across conventional, genetically modified, and gene-edited cultivars while maintaining separation between pathogen diagnostics and biotechnology-event testing. The principal commercial implication is greater validation and assay-design requirements.

Market Opportunities

Innovations in Point-of-Care Diagnostics

Point-of-care diagnostics are one of the most attractive opportunities because they move testing to the location where disease-management decisions are made. Portable PCR, LAMP, RPA, CRISPR-based diagnostics, lateral-flow immunoassays, biosensors, and microfluidic platforms can reduce laboratory turnaround times and address limited laboratory access in remote agricultural regions. Commercial evolution is increasingly centered on sample-to-answer workflows incorporating simplified sample preparation, ambient-stable reagents, disposable cartridges, smartphone interpretation, cloud connectivity, and AI-supported decision support.

Rapid Adoption of Integrated Plant Health Solutions

Plant disease diagnostics are evolving from standalone testing products into integrated plant-health solutions combining field diagnostics, laboratory confirmation, remote sensing, IoT devices, weather information, farm-management software, and digital decision support. These platforms create opportunities for SaaS subscriptions, API licensing, disease alerts, cloud analytics, hardware maintenance, and data services. Suppliers capable of connecting diagnostics with digital agronomy, certification systems, export documentation, and precision crop-protection workflows can strengthen customer retention and recurring revenue.

How Can This Report Add Value to an Organization?

The report supports diagnostic manufacturers, agricultural laboratories, seed companies, agrochemical companies, precision-agriculture providers, growers, agronomists, phytosanitary authorities, investors, and technology developers by quantifying demand across application, end user, product, region, and country markets. Diagnostic manufacturers can assess opportunities in rapid tests, PCR, serology, and integrated molecular workflows. Laboratory providers can evaluate testing demand and regional expansion opportunities, while digital agriculture companies can identify growth opportunities in remote sensing, IoT, AI, disease-risk models, and connected plant-health platforms.

The report also provides competitive benchmarking, company market shares, recent product developments, mergers and acquisitions, partnerships, start-up funding, rapid-diagnostics mapping, regulatory pathways, pricing analysis, patent trends, and country-level market context. These insights can support market-entry, product-development, partnership, investment, and regional-expansion decisions.

Product/Innovation Strategy: Product strategy should prioritize sample-to-answer workflows, portable molecular diagnostics, rapid field tests, multiplex pathogen panels, ambient-stable reagents, simplified sample preparation, and smartphone-assisted interpretation. Manufacturers should expand coverage of fungal and oomycete pathogens, where field detection remains constrained by sample preparation and commercial assay availability. Digital integration should connect test results with GPS, weather, remote sensing, farm records, laboratory systems, and disease-risk models. Validation across crop varieties, pathogen strains, matrices, and operating environments should remain a core product-development priority.

Growth/Marketing Strategy: Growth strategies should prioritize agronomists, crop consultants, field testing service providers, laboratories, seed companies, and high-value growers that can scale diagnostic adoption across multiple farms and production programs. Asia-Pacific offers substantial expansion potential because of its large agricultural base and digitalization trajectory, while North America and Europe provide mature markets for validated diagnostics, seed-health testing, and integrated plant-health services. Partnerships with laboratories, seed companies, agrochemical suppliers, precision-agriculture platforms, government programs, and plant-protection organizations can accelerate market access and technical credibility.

Competitive Strategy: Competitive strategy should combine diagnostic accuracy with breadth of pathogen coverage, field usability, validation evidence, distribution reach, and digital integration. Established companies can strengthen positions through broader assay libraries, laboratory networks, and recurring services, while emerging companies can differentiate through portable molecular platforms, biosensors, AI, computer vision, remote sensing, and integrated data ecosystems. Mergers, acquisitions, partnerships, and OEM or white-label relationships can expand technology portfolios and accelerate commercialization. Companies should also invest in secure chain-of-custody workflows and interoperable reporting to meet increasingly demanding regulatory and commercial requirements.

Methodology

Primary Data Sources

The primary sources involve industry experts from the pathogen or plant disease detection and monitoring market and various stakeholders in the ecosystem. Respondents, including CEOs, vice presidents, marketing directors, and technology and innovation directors, have been interviewed to gather and verify both qualitative and quantitative aspects of this research study.

The key data points taken from primary sources include:

  • validation and triangulation of all the numbers and graphs
  • validation of report segmentations and key qualitative findings
  • understanding the competitive landscape
  • validation of the numbers of various markets for the market type
  • percentage split of individual markets for geographical analysis

Secondary Data Sources

This research study involves the extensive use of secondary sources, including company websites, annual reports, investor presentations, press releases, white papers, scientific publications, product datasheets, diagnostic protocols, and industry directories. It also utilizes databases such as Hoover's, Bloomberg, Businessweek, and Factiva to collect relevant and reliable information for a comprehensive, technology-focused, market-oriented, and commercial analysis of the global pathogen or plant disease detection and monitoring market. In addition to these sources, the study has been supported by data and insights from agricultural ministries, plant protection organizations, phytosanitary authorities, international organizations, patent databases, standards and regulatory bodies, crop research institutes, diagnostic laboratories, agricultural technology associations, and other credible public-domain sources to assess disease prevalence, diagnostic adoption, technology development, competitive positioning, laboratory-testing activity, digital surveillance deployment, and regional commercialization patterns.

Secondary research has been done to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.

The key data points taken from secondary research include:

  • segmentations and percentage shares
  • data for market value
  • key industry trends of the top players in the market
  • qualitative insights into various aspects of the market, key trends, and emerging areas of innovation
  • quantitative data for mathematical and statistical calculations

Key Market Players and Competition Synopsis

Competition in the global pathogen or plant disease detection and monitoring market is shaped by dedicated agricultural diagnostic companies, rapid-test manufacturers, laboratory service providers, molecular diagnostic specialists, digital agriculture companies, and technology developers. Leading participants are differentiating through broader pathogen coverage, faster testing workflows, and stronger integration of field screening with laboratory confirmation. Competitive positioning is increasingly shaped by lateral-flow tests, ELISA, PCR, qPCR, LAMP, portable molecular platforms, biosensors, remote sensing, connected sensors, artificial intelligence, and validated laboratory services. Strategic partnerships among diagnostic manufacturers, agricultural laboratories, universities, technology developers, distributors, and national plant protection organizations are becoming central to market access and technical credibility.

Leading participants are also increasing investment in portable molecular diagnostics, digital test interpretation, AI, computer vision, remote sensing, connected sensors, and cloud-based analytics. Product validation, quality assurance, sample-handling guidance, and technical support are becoming important competitive factors as buyers evaluate reliability across crops, matrices, and operating environments. Established specialists retain advantages through extensive pathogen libraries, validated antibodies, laboratory expertise, and distributor networks, while emerging companies compete through cartridge-based systems, CRISPR, biosensors, and simplified field workflows.

List of key companies profiled in the market report:

  • Abingdon Health plc
  • Agdia, Inc.
  • BIOREBA AG
  • Creative Diagnostics
  • LOEWE Biochemica GmbH
  • Agricolus S.r.l.
  • OptiGene Limited
  • REGA Biotechnology Inc.
  • SignalChem Lifesciences Corporation (SLC)
  • Norgen Biotek Corp.
  • Tiaris Biosciences
  • NIPPON GENE CO., LTD.

Table of Contents

1. Market: Industry Outlook

  • 1.1 Market Definition
  • 1.2 Ongoing Trends
    • 1.2.1 Leveraging Data Analytics and Artificial Intelligence for Precision Disease Detection
    • 1.2.2 Decentralization of Plant Disease Diagnostics through Point-of-Care Testing
    • 1.2.3 Expansion of Isothermal Amplification Technologies for Rapid Field Diagnostics
    • 1.2.4 Integration of Rapid Field Testing with Laboratory Confirmation and Digital Decision Support
  • 1.3 Ecosystem/Ongoing Programs
    • 1.3.1 Consortiums, Associations, and Regulatory Bodies
    • 1.3.2 Government Programs
    • 1.3.3 Regulatory Pathways for Rapid Field Diagnostics in Top Countries
      • 1.3.3.1 Global Phytosanitary Framework
      • 1.3.3.2 U.S.
      • 1.3.3.3 Canada
      • 1.3.3.4 China
      • 1.3.3.5 India
      • 1.3.3.6 Japan
      • 1.3.3.7 South Korea
      • 1.3.3.8 Australia
      • 1.3.3.9 Europe
      • 1.3.3.10 U.K.
      • 1.3.3.11 Rapid-Test Relevance and Market Implications
  • 1.4 Business Dynamics
    • 1.4.1 Business Drivers
      • 1.4.1.1 Rising Threat of Fungicide Resistance in Crop Pathogens
      • 1.4.1.2 Frequent Outbreaks of Emerging Plant Diseases
    • 1.4.2 Business Challenges
      • 1.4.2.1 Diagnostic Accuracy, Sample Integrity, and Data Security
      • 1.4.2.2 Rapid Adoption of Genetically Modified and Gene-Edited Crops
    • 1.4.3 Business Opportunities
      • 1.4.3.1 Innovations in Point-of-Care Diagnostics
      • 1.4.3.2 Rapid Adoption of Integrated Plant Health Solutions
  • 1.5 Market Strategies and Developments
    • 1.5.1 Business Strategies
      • 1.5.1.1 Product Development and Innovations
      • 1.5.1.2 Market Developments
    • 1.5.2 Corporate Strategies
      • 1.5.2.1 Mergers and Acquisitions
      • 1.5.2.2 Partnerships, Collaborations, and Joint Ventures
    • 1.5.3 Snapshot of Corporate Strategies Adopted by the Key Players in the Market
  • 1.6 Case Studies
  • 1.7 Start-Up Landscape
    • 1.7.1 Funding Analysis
      • 1.7.1.1 Total Investment
      • 1.7.1.2 Leading Investment by Start-Up Companies
  • 1.8 Value Chain Analysis
  • 1.9 Patent Analysis
    • 1.9.1 Patent Filing Trend by Country and by Company
  • 1.1 Rapid Field Diagnostics Analysis
    • 1.10.1 Rapid Field Diagnostics vs. Standard Laboratory Testing
    • 1.10.2 State-of-the-Art Rapid Field Tests and Available Technologies
    • 1.10.3 Comparison with ELISA, PCR, and qPCR
    • 1.10.4 Electrochemical Sensors and Biosensors in Agriculture
    • 1.10.5 Field-Use Limitations, Cross-Reactivity, Matrix Interference, and Sample Handling Considerations
      • 1.10.5.1 Field-Use Limitations of Rapid Plant Disease Diagnostics
  • 1.11 Pricing Analysis
    • 1.11.1 Pricing Benchmark/Unit Economics Snapshot
    • 1.11.2 Diagnostic Kits
    • 1.11.3 Services

2. Application

  • 2.1 Application Summary
  • 2.2 Pathogen or Plant Disease Detection and Monitoring Market (by Application)
    • 2.2.1 Open Field
    • 2.2.2 Controlled Environment
  • 2.3 Pathogen or Plant Disease Detection and Monitoring Market (by End User)
    • 2.3.1 Agronomists/Crop Consultants/Field Testing Service Providers
    • 2.3.2 Farmers, Growers, and Agricultural Professionals
    • 2.3.3 Researchers, Scientists, Universities, and Research Institutes
    • 2.3.4 Others

3. Products

  • 3.1 Product Summary
  • 3.2 Pathogen or Plant Disease Detection and Monitoring Market (by Product)
    • 3.2.1 Diagnostic Kits
      • 3.2.1.1 Rapid Test Kits/Rapid Field Diagnostics
      • 3.2.1.2 PCR Diagnostic Kits
      • 3.2.1.3 Serological Test Kits
      • 3.2.1.4 Other Diagnostic Kits
    • 3.2.2 Laboratory Services
    • 3.2.3 Digital Solutions
      • 3.2.3.1 Remote Sensing Services
      • 3.2.3.2 IoT Sensor Technology and Data Analysis Services

4. Region

  • 4.1 Regional Summary
  • 4.2 North America
    • 4.2.1 Regional Overview
      • 4.2.1.1 Driving Factors for Market Growth
      • 4.2.1.2 Factors Challenging the Market
      • 4.2.1.3 Economic Factor
      • 4.2.1.4 Farm Structure and Digitalization
      • 4.2.1.5 Crop Pattern and Stress Factor
    • 4.2.2 Application
    • 4.2.3 End User
    • 4.2.4 Product
    • 4.2.5 North America (by Country)
      • 4.2.5.1 U.S.
        • 4.2.5.1.1 Application
        • 4.2.5.1.2 End User
        • 4.2.5.1.3 Product
      • 4.2.5.2 Canada
        • 4.2.5.2.1 Application
        • 4.2.5.2.2 End User
        • 4.2.5.2.3 Product
      • 4.2.5.3 Mexico
        • 4.2.5.3.1 Application
        • 4.2.5.3.2 End User
        • 4.2.5.3.3 Product
  • 4.3 Europe
    • 4.3.1 Regional Overview
      • 4.3.1.1 Driving Factors for Market Growth
      • 4.3.1.2 Factors Challenging the Market
      • 4.3.1.3 Economic Factor
      • 4.3.1.4 Farm Structure and Digitalization
      • 4.3.1.5 Crop Pattern and Stress Factor
    • 4.3.2 Application
    • 4.3.3 End User
    • 4.3.4 Product
    • 4.3.5 Europe (by Country)
      • 4.3.5.1 U.K.
        • 4.3.5.1.1 Application
        • 4.3.5.1.2 End User
        • 4.3.5.1.3 Product
      • 4.3.5.2 Italy
        • 4.3.5.2.1 Application
        • 4.3.5.2.2 End User
        • 4.3.5.2.3 Product
      • 4.3.5.3 France
        • 4.3.5.3.1 Application
        • 4.3.5.3.2 End User
        • 4.3.5.3.3 Product
      • 4.3.5.4 Netherlands
        • 4.3.5.4.1 Application
        • 4.3.5.4.2 End User
        • 4.3.5.4.3 Product
      • 4.3.5.5 Germany
        • 4.3.5.5.1 Application
        • 4.3.5.5.2 End User
        • 4.3.5.5.3 Product
      • 4.3.5.6 Switzerland
        • 4.3.5.6.1 Application
        • 4.3.5.6.2 End User
        • 4.3.5.6.3 Product
      • 4.3.5.7 Belgium
        • 4.3.5.7.1 Application
        • 4.3.5.7.2 End User
        • 4.3.5.7.3 Product
      • 4.3.5.8 Spain
        • 4.3.5.8.1 Application
        • 4.3.5.8.2 End User
        • 4.3.5.8.3 Product
      • 4.3.5.9 Bulgaria
        • 4.3.5.9.1 Application
        • 4.3.5.9.2 End User
        • 4.3.5.9.3 Product
      • 4.3.5.10 Ukraine
        • 4.3.5.10.1 Application
        • 4.3.5.10.2 End User
        • 4.3.5.10.3 Product
      • 4.3.5.11 Rest-of-Europe
        • 4.3.5.11.1 Application
        • 4.3.5.11.2 End User
        • 4.3.5.11.3 Product
  • 4.4 Asia-Pacific
    • 4.4.1 Regional Overview
      • 4.4.1.1 Driving Factors for Market Growth
      • 4.4.1.2 Factors Challenging the Market
      • 4.4.1.3 Economic Factor
      • 4.4.1.4 Farm Structure and Digitalization
      • 4.4.1.5 Crop Pattern and Stress Factor
    • 4.4.2 Application
    • 4.4.3 End User
    • 4.4.4 Product
    • 4.4.5 Asia-Pacific (by Country)
      • 4.4.5.1 China
        • 4.4.5.1.1 Application
        • 4.4.5.1.2 End User
        • 4.4.5.1.3 Product
      • 4.4.5.2 Japan
        • 4.4.5.2.1 Application
        • 4.4.5.2.2 End User
        • 4.4.5.2.3 Product
      • 4.4.5.3 Australia
        • 4.4.5.3.1 Application
        • 4.4.5.3.2 End User
        • 4.4.5.3.3 Product
      • 4.4.5.4 New Zealand
        • 4.4.5.4.1 Application
        • 4.4.5.4.2 End User
        • 4.4.5.4.3 Product
      • 4.4.5.5 South Korea
        • 4.4.5.5.1 Application
        • 4.4.5.5.2 End User
        • 4.4.5.5.3 Product
      • 4.4.5.6 India
        • 4.4.5.6.1 Application
        • 4.4.5.6.2 End User
        • 4.4.5.6.3 Product
      • 4.4.5.7 Rest-of-Asia-Pacific
        • 4.4.5.7.1 Application
        • 4.4.5.7.2 End User
        • 4.4.5.7.3 Product
  • 4.5 South America
    • 4.5.1 Regional Overview
      • 4.5.1.1 Driving Factors for Market Growth
      • 4.5.1.2 Factors Challenging the Market
      • 4.5.1.3 Economic Factor
      • 4.5.1.4 Farm Structure and Digitalization
      • 4.5.1.5 Crop Pattern and Stress Factor
    • 4.5.2 Application
    • 4.5.3 End User
    • 4.5.4 Product
    • 4.5.5 South America (by Country)
      • 4.5.5.1 Brazil
        • 4.5.5.1.1 Application
        • 4.5.5.1.2 End User
        • 4.5.5.1.3 Product
      • 4.5.5.2 Argentina
        • 4.5.5.2.1 Application
        • 4.5.5.2.2 End User
        • 4.5.5.2.3 Product
      • 4.5.5.3 Rest-of-South America
        • 4.5.5.3.1 Application
        • 4.5.5.3.2 End User
        • 4.5.5.3.3 Product
  • 4.6 Middle East and Africa
    • 4.6.1 Regional Overview
      • 4.6.1.1 Driving Factors for Market Growth
      • 4.6.1.2 Factors Challenging the Market
      • 4.6.1.3 Economic Factor
      • 4.6.1.4 Farm Structure and Digitalization
      • 4.6.1.5 Crop Pattern and Stress Factor
    • 4.6.2 Application
    • 4.6.3 End User
    • 4.6.4 Product
    • 4.6.5 Middle East and Africa (by Country)
      • 4.6.5.1 South Africa
        • 4.6.5.1.1 Application
        • 4.6.5.1.2 End User
        • 4.6.5.1.3 Product
      • 4.6.5.2 Turkey
        • 4.6.5.2.1 Application
        • 4.6.5.2.2 End User
        • 4.6.5.2.3 Product
      • 4.6.5.3 Israel
        • 4.6.5.3.1 Application
        • 4.6.5.3.2 End User
        • 4.6.5.3.3 Product
      • 4.6.5.4 Rest-of-Middle East and Africa
        • 4.6.5.4.1 Application
        • 4.6.5.4.2 End User
        • 4.6.5.4.3 Product

5. Markets - Competitive Benchmarking & Company Profiles

  • 5.1 Competitive Benchmarking
  • 5.2 Market Share Analysis
  • 5.3 Rapid Diagnostics and Agriculture-Specific Antibody Supplier Mapping
    • 5.3.1 Rapid Field Diagnostic Kit Manufacturers
    • 5.3.2 Agriculture-Specific Pathogen Antibody Suppliers
    • 5.3.3 Availability of Monoclonal and Polyclonal Antibodies for Plant Pathogens
    • 5.3.4 Custom Antibody Development Timelines and Cost Considerations
    • 5.3.5 Standalone Antibody/Reagent Availability vs. Kit-Integrated Use
  • 5.4 Company Profiles
    • 5.4.1 Abingdon Health plc
      • 5.4.1.1 Overview
      • 5.4.1.2 Top Products/Product Portfolio
      • 5.4.1.3 Top Competitors
      • 5.4.1.4 Target Customers
      • 5.4.1.5 Key Personnel
      • 5.4.1.6 Analyst View
    • 5.4.2 Agdia, Inc.
      • 5.4.2.1 Overview
      • 5.4.2.2 Top Products/Product Portfolio
      • 5.4.2.3 Top Competitors
      • 5.4.2.4 Target Customers
      • 5.4.2.5 Key Personnel
      • 5.4.2.6 Analyst View
    • 5.4.3 BIOREBA AG
      • 5.4.3.1 Overview
      • 5.4.3.2 Top Products/Product Portfolio
      • 5.4.3.3 Top Competitors
      • 5.4.3.4 Target Customers
      • 5.4.3.5 Key Personnel
      • 5.4.3.6 Analyst View
    • 5.4.4 Creative Diagnostics
      • 5.4.4.1 Overview
      • 5.4.4.2 Top Products/Product Portfolio
      • 5.4.4.3 Top Competitors
      • 5.4.4.4 Target Customers
      • 5.4.4.5 Key Personnel
      • 5.4.4.6 Analyst View
    • 5.4.5 LOEWE Biochemica GmbH
      • 5.4.5.1 Overview
      • 5.4.5.2 Top Products/Product Portfolio
      • 5.4.5.3 Top Competitors
      • 5.4.5.4 Target Customers
      • 5.4.5.5 Key Personnel
      • 5.4.5.6 Analyst View
    • 5.4.6 Agricolus S.r.l.
      • 5.4.6.1 Overview
      • 5.4.6.2 Top Products/Product Portfolio
      • 5.4.6.3 Top Competitors
      • 5.4.6.4 Target Customers
      • 5.4.6.5 Key Personnel
      • 5.4.6.6 Analyst View
    • 5.4.7 OptiGene Limited
      • 5.4.7.1 Overview
      • 5.4.7.2 Top Products/Product Portfolio
      • 5.4.7.3 Top Competitors
      • 5.4.7.4 Target Customers
      • 5.4.7.5 Key Personnel
      • 5.4.7.6 Analyst View
    • 5.4.8 REGA Biotechnology Inc.
      • 5.4.8.1 Overview
      • 5.4.8.2 Top Products/Product Portfolio
      • 5.4.8.3 Top Competitors
      • 5.4.8.4 Target Customers
      • 5.4.8.5 Key Personnel
      • 5.4.8.6 Analyst View
    • 5.4.9 SignalChem Lifesciences Corporation (SLC)
      • 5.4.9.1 Overview
      • 5.4.9.2 Top Products/Product Portfolio
      • 5.4.9.3 Top Competitors
      • 5.4.9.4 Target Customers
      • 5.4.9.5 Key Personnel
      • 5.4.9.6 Analyst View
    • 5.4.10 Norgen Biotek Corp.
      • 5.4.10.1 Overview
      • 5.4.10.2 Top Products/Product Portfolio
      • 5.4.10.3 Top Competitors
      • 5.4.10.4 Target Customers
      • 5.4.10.5 Key Personnel
      • 5.4.10.6 Analyst View
    • 5.4.11 Tiaris Biosciences
      • 5.4.11.1 Overview
      • 5.4.11.2 Top Products/Product Portfolio
      • 5.4.11.3 Top Competitors
      • 5.4.11.4 Target Customers
      • 5.4.11.5 Key Personnel
      • 5.4.11.6 Analyst View
    • 5.4.12 NIPPON GENE CO., LTD.
      • 5.4.12.1 Overview
      • 5.4.12.2 Top Products/Product Portfolio
      • 5.4.12.3 Top Competitors
      • 5.4.12.4 Target Customers
      • 5.4.12.5 Key Personnel
      • 5.4.12.6 Analyst View

6. Research Methodology

  • 6.1 Data Sources
    • 6.1.1 Primary Data Sources
    • 6.1.2 Secondary Data Sources
    • 6.1.3 Data Triangulation
  • 6.2 Market Estimation and Forecast

List of Figures

  • Figure 1: Global Pathogen or Plant Disease Detection and Monitoring Market (by Scenario), $Million, 2026, 2028, and 2031
  • Figure 2: Global Pathogen or Plant Disease Detection and Monitoring Market, 2025 and 2031
  • Figure 3: Top 9 Countries, Global Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025
  • Figure 4: Global Market Snapshot, 2025
  • Figure 5: Global Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025 and 2031
  • Figure 6: Global Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025, 2028, and 2031
  • Figure 7: Global Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025, 2028, and 2031
  • Figure 8: Global Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025, 2028, and 2031
  • Figure 9: Pathogen or Plant Disease Detection and Monitoring Market Segmentation
  • Figure 10: Global Screening-to-Regulatory Pathway
  • Figure 11: Rapid-Test Pathway and Permitted Use in the U.S.
  • Figure 12: Rapid-Test Pathway and Permitted Use in Canada
  • Figure 13: Domestic Agricultural Use
  • Figure 14: Import and Export Quarantine
  • Figure 15: Imported Planting Material and Seed
  • Figure 16: Domestic Grower and Extension Use
  • Figure 17: Rapid-Test Pathway and Permitted Use in Japan
  • Figure 18: Rapid-Test Pathway and Permitted Use in South Korea
  • Figure 19: Rapid-Test Pathway and Permitted Use in Australia
  • Figure 20: Rapid-Test Pathway and Permitted Use in Europe
  • Figure 21: Rapid-Test Pathway and Permitted Use in the U.K.
  • Figure 22: Snapshot of Corporate Strategies Adopted by the Key Players in the Market
  • Figure 23: Case 1: OptiGene Supports Rapid Detection of Cape St. Paul Wilt Disease in Ghanaian Coconut Palms
  • Figure 24: Case 2: Agdia Supports On-Site Phytophthora Screening in Colombian Hydrangea Production
  • Figure 25: Total Investment in the Global Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2020-2025
  • Figure 26: Pathogen or Plant Disease Detection and Monitoring Market (by Country/Jurisdiction), January 2024-June 2026
  • Figure 27: Pathogen or Plant Disease Detection and Monitoring Market (by Company), January 2024-June 2026
  • Figure 28: Global Pathogen or Plant Disease Detection and Monitoring Market (by Application), Value, $Million, 2025, 2028, and 2031
  • Figure 29: Global Pathogen or Plant Disease Detection and Monitoring Market (by End User), Value, $Million, 2025, 2028, and 2031
  • Figure 30: Global Pathogen or Plant Disease Detection and Monitoring Market (Open Field), Value, $Million, 2025-2031
  • Figure 31: Global Pathogen or Plant Disease Detection and Monitoring Market (Controlled Environment), Value, $Million, 2025-2031
  • Figure 32: Global Pathogen or Plant Disease Detection and Monitoring Market (Agronomists/Crop Consultants/Field Testing Service Providers), Value, $Million, 2025-2031
  • Figure 33: Global Pathogen or Plant Disease Detection and Monitoring Market (Farmers, Growers, and Agricultural Professionals), Value, $Million, 2025-2031
  • Figure 34: Global Pathogen or Plant Disease Detection and Monitoring Market (Researchers, Scientists, Universities, and Research Institutes), Value, $Million, 2025-2031
  • Figure 35: Global Pathogen or Plant Disease Detection and Monitoring Market (Others), Value, $Million, 2025-2031
  • Figure 36: Global Pathogen or Plant Disease Detection and Monitoring Market (by Product), Value, $Million, 2025, 2028, and 2031
  • Figure 37: Global Pathogen or Plant Disease Detection and Monitoring Market (by Diagnostic Kits), Value, $Million, 2025, 2028, and 2031
  • Figure 38: Global Pathogen or Plant Disease Detection and Monitoring Market (by Digital Solutions), Value, $Million, 2025, 2028, and 2031
  • Figure 39: Global Pathogen or Plant Disease Detection and Monitoring Market (Diagnostic Kits), Value, $Million, 2025-2031
  • Figure 40: Global Pathogen or Plant Disease Detection and Monitoring Market (Rapid Test Kits / Rapid Field Diagnostics), Value, $Million, 2025-2031
  • Figure 41: Global Pathogen or Plant Disease Detection and Monitoring Market (PCR Diagnostic Kits), Value, $Million, 2025-2031
  • Figure 42: Global Pathogen or Plant Disease Detection and Monitoring Market (Serological Test Kits), Value, $Million, 2025-2031
  • Figure 43: Global Pathogen or Plant Disease Detection and Monitoring Market (Other Diagnostic Kits), Value, $Million, 2025-2031
  • Figure 44: Global Pathogen or Plant Disease Detection and Monitoring Market (Laboratory Services), Value, $Million, 2025-2031
  • Figure 45: Global Pathogen or Plant Disease Detection and Monitoring Market (Digital Solutions), Value, $Million, 2025-2031
  • Figure 46: Global Pathogen or Plant Disease Detection and Monitoring Market (Remote Sensing Services), Value, $Million, 2025-2031
  • Figure 47: Global Pathogen or Plant Disease Detection and Monitoring Market (IoT Sensor Technology and Data Analysis Services), Value, $Million, 2025-2031
  • Figure 48: U.S. Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 49: Canada Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 50: Mexico Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 51: U.K. Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 52: Italy Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 53: France Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 54: Netherlands Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 55: Germany Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 56: Switzerland Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 57: Belgium Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 58: Spain Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 59: Bulgaria Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 60: Ukraine Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 61: Rest-of-Europe Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 62: China Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 63: Japan Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 64: Australia Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 65: New Zealand Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 66: South Korea Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 67: India Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 68: Rest-of-Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 69: Brazil Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 70: Argentina Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 71: Rest-of-South America Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 72: South Africa Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 73: Turkey Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 74: Israel Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 75: Rest-of-Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2025-2031
  • Figure 76: Competitive Benchmarking
  • Figure 77: Data Triangulation
  • Figure 78: Top-Down and Bottom-Up Approach
  • Figure 79: Assumptions and Limitations

List of Tables

  • Table 1: Market Snapshot
  • Table 2: Competitive Landscape Snapshot
  • Table 3: List of Companies Integrating Artificial Intelligence into Rapid Crop Disease Detection and Monitoring Products
  • Table 4: Key Consortiums, Associations, and Regulatory Bodies in the Global Pathogen or Plant Disease Detection and Monitoring Market
  • Table 5: List of Government Programs Supporting Plant Pathogen or Plant Disease Detection and Monitoring
  • Table 6: Global Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 7: U.S. Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 8: Canada Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 9: China Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 10: India Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 11: Japan Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 12: South Korea Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 13: Australia Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 14: Europe Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 15: U.K. Phytosanitary Framework, Testing Pathway, and Rapid-Test Relevance
  • Table 16: Cross-Country Regulatory Comparison
  • Table 17: Cross-Country Regulatory and Commercial Assessment
  • Table 18: Representative Crop–Pathogen–Resistance Examples
  • Table 19: Crop–Pathogen–Resistance Examples
  • Table 20: Key Sources of Diagnostic Error
  • Table 21: List of Key Recent Product Development and Innovations
  • Table 22: List of Key Market Developments in the Pathogen or Plant Disease Detection and Monitoring Market
  • Table 23: List of Recent Mergers and Acquisitions in the Pathogen or Plant Disease Detection and Monitoring Market Ecosystem
  • Table 24: List of Recent Partnerships, Collaborations, and Joint Ventures in the Pathogen or Plant Disease Detection and Monitoring Market Ecosystem
  • Table 25: List of Investments or Funding developments in Start-Up Companies
  • Table 26: Rapid Field Diagnostics vs. Standard Laboratory Testing
  • Table 27: State-of-the-Art Rapid Field Diagnostic Technology Comparison
  • Table 28: List of Commercially Available, Research-Stage, and Prototype Rapid Diagnostic Solutions
  • Table 29: Comparison of Rapid Field Diagnostics with ELISA, PCR, and qPCR
  • Table 30: Pricing Benchmark/Unit Economics Snapshot
  • Table 31: Diagnostic Kits Pricing Analysis
  • Table 32: Service Pricing Analysis
  • Table 33: Global Pathogen or Plant Disease Detection and Monitoring Market (by Region), $Million, 2025-2031
  • Table 34: North America Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 35: North America Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 36: North America Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 37: U.S. Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 38: U.S. Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 39: U.S. Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 40: U.S. Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 41: Canada Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 42: Canada Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 43: Canada Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 44: Canada Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 45: Mexico Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 46: Mexico Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 47: Mexico Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 48: Mexico Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 49: Europe Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 50: Europe Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 51: Europe Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 52: U.K. Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 53: U.K. Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 54: U.K. Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 55: U.K. Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 56: Italy Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 57: Italy Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 58: Italy Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 59: Italy Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 60: France Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 61: France Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 62: France Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 63: France Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 64: Netherlands Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 65: Netherlands Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 66: Netherlands Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 67: Netherlands Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 68: Germany Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 69: Germany Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 70: Germany Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 71: Germany Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 72: Switzerland Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 73: Switzerland Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 74: Switzerland Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 75: Switzerland Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 76: Belgium Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 77: Belgium Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 78: Belgium Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 79: Belgium Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 80: Spain Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 81: Spain Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 82: Spain Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 83: Spain Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 84: Bulgaria Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 85: Bulgaria Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 86: Bulgaria Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 87: Bulgaria Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 88: Ukraine Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 89: Ukraine Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 90: Ukraine Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 91: Ukraine Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 92: Rest-of-Europe Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 93: Rest-of-Europe Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 94: Rest-of-Europe Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 95: Rest-of-Europe Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 96: Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 97: Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 98: Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 99: China Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 100: China Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 101: China Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 102: China Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 103: Japan Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 104: Japan Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 105: Japan Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 106: Japan Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 107: Australia Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 108: Australia Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 109: Australia Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 110: Australia Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 111: New Zealand Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 112: New Zealand Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 113: New Zealand Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 114: New Zealand Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 115: South Korea Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 116: South Korea Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 117: South Korea Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 118: South Korea Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 119: India Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 120: India Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 121: India Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 122: India Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 123: Rest-of-Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 124: Rest-of-Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 125: Rest-of-Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 126: Rest-of-Asia-Pacific Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 127: South America Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 128: South America Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 129: South America Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 130: Brazil Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 131: Brazil Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 132: Brazil Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 133: Brazil Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 134: Argentina Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 135: Argentina Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 136: Argentina Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 137: Argentina Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 138: Rest-of-South America Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 139: Rest-of-South America Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 140: Rest-of-South America Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 141: Rest-of-South America Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 142: Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 143: Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 144: Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 145: South Africa Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 146: South Africa Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 147: South Africa Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 148: South Africa Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 149: Turkey Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 150: Turkey Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 151: Turkey Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 152: Turkey Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 153: Israel Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 154: Israel Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 155: Israel Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 156: Israel Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 157: Rest-of-Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market: Market Context and Commercial Priorities
  • Table 158: Rest-of-Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Million, 2025-2031
  • Table 159: Rest-of-Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by End User), $Million, 2025-2031
  • Table 160: Rest-of-Middle East and Africa Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Million, 2025-2031
  • Table 161: Company Market Shares, 2025
  • Table 162: Rapid Field Diagnostic Kit Manufacturers
  • Table 163: Agriculture-Specific Pathogen Antibody Suppliers
  • Table 164: Availability of Monoclonal and Polyclonal Antibodies for Plant Pathogens
  • Table 165: Custom Antibody Development Timelines and Cost Considerations
  • Table 166: Standalone Antibody/Reagent Availability vs. Kit-Integrated Use