欧洲病原体或植物病害检测与监测市场:分析与预测(2023-2028)
市场调查报告书
商品编码
1408629

欧洲病原体或植物病害检测与监测市场:分析与预测(2023-2028)

Europe Pathogen or Plant Disease Detection and Monitoring Market: Analysis and Forecast, 2023-2028

出版日期: | 出版商: BIS Research | 英文 77 Pages | 商品交期: 1-5个工作天内

价格

2023年,欧洲病原体或植物病害检测和监测市场规模(不包括英国)为4.8亿美元,在2023-2028年预测期间复合年增长率为9.33%,到2028年将持续增长。预计将达到1.5亿美元2019 年为 7.496 亿。

在开发中国家,病原体和植物病害检测和监测市场是粮食安全和品质的关键驱动力,因为植物病害是作物生产高损失和采后管理困难的主要原因。预计随着需求的扩大,病原菌和植物病害检测和监测市场将扩大。增加。此外,用于识别植物病原体的新颖而巧妙的技术不断涌现,包括生物感测器、现场护理设备、遥感和奈米技术,为现场诊断提供了快速、可靠且经济实惠的解决方案,并提供了可能性。

主要市场统计数据
预测期 2023-2028
2023年评估 4.8亿美元
2028年预测 7.496 亿美元
复合年增长率 9.33%

最尖端科技有助于快速、准确的检测,以及对病原体和植物病害的持续监测,改变欧洲市场的农业健康和作物管理实践。此领域包括早期发现疾病所必需的农业和园艺工具及服务的开发、生产和销售。这些工具有助于实施及时干预和管理策略,以保护作物并确保粮食安全。

欧洲市场受到气候变迁、国际贸易动态、农业实践集约化和法规结构等因素的推动。特别是,植物病原体对工业构成重大威胁,导致重要经济作物的年产量产量高达 40%。入侵性害虫每年造成至少 700 亿美元的经济负担,并导致世界生物多样性下降。

该报告研究了欧洲病原体或植物病害检测和监测市场,并提供了市场概述,包括按应用、产品、地区和参与市场的公司概况分類的趋势。

目录

调查范围

执行摘要

第一章 市场

  • 产业展望
  • 业务动态
  • 案例研究
  • Start-Ups形势

第二章 区域

  • 病原或植物病害检测与监测市场(按地区)
  • 欧洲
  • 英国

第三章市场-竞争基准化分析与公司概况

  • 竞争基准化分析
  • 市场占有率分析
  • 公司简介
    • Abingdon Health
    • BIOREBA AG
    • Drone Ag
    • Libelium Comunicaciones Distribuidas SL
  • Start-Ups公司
    • Agricolus
    • GeoPard Agriculture
    • Dronegy
    • FIXAR-AERO, LLC

第四章调查方法

Product Code: AGA1777SS

“The Europe Pathogen or Plant Disease Detection and Monitoring Market (excluding U.K.) Expected to Reach $749.6 Million by 2028.”

Introduction to Europe Pathogen or Plant Disease Detection and Monitoring Market:

The Europe pathogen or plant disease detection and monitoring market (excluding U.K.) was valued at $480.0 million in 2023, and it is expected to grow with a CAGR of 9.33% during the forecast period 2023-2028 to reach $749.6 million by 2028. Provided that plant diseases are a major cause of significant crop production losses and post-harvest management difficulties in developing countries, the market for pathogen and plant disease detection and monitoring is expected to grow as demand for food security and quality increases. Furthermore, the advancements in the creation of novel and creative techniques for identifying plant pathogens, such as biosensors, point-of-care instruments, remote sensing, and nanotechnology, provide the possibility of quick, trustworthy, and affordable solutions for in-field diagnostics.

KEY MARKET STATISTICS
Forecast Period2023 - 2028
2023 Evaluation$480.0 Million
2028 Forecast749.6 Million
CAGR9.33%

Market introduction

Cutting-edge technology facilitates swift and precise detection, along with continuous monitoring of pathogens and plant diseases, transforming agricultural health and crop management practices in the European market. This sector encompasses the development, production, and sale of essential tools and services for agriculture and horticulture, crucial for early disease identification. These tools are instrumental in implementing timely intervention and management strategies to safeguard crops, ensuring food security.

The market in Europe is propelled by factors such as climate change, international trade dynamics, intensified agriculture practices, and regulatory frameworks. Notably, plant pathogens cause an annual loss of up to 40% in yield for economically significant crops, posing a substantial threat to the industry. Invasive pests contribute to an annual financial burden of at least $70 billion, playing a role in the broader global decline of biodiversity.

Market Segmentation

Segmentation 1: by Application

  • Open Field
  • Controlled Environment

Segmentation 2: by Product

  • Diagnostic Kits
  • Digital Solutions
  • Laboratory Services

Segmentation 3: by Country

  • Germany
  • France
  • Italy
  • Spain
  • Netherlands
  • Belgium
  • Switzerland
  • Bulgaria
  • Ukraine
  • Rest-of-Europe

How can this report add value to an organization?

Product/Innovation Strategy: In the realm of plant disease, technological advancements are transforming agricultural landscapes. Pathogen or plant disease detection and monitoring market solutions utilize diverse technologies such as IoT sensors, drones, and data analytics. These tools offer precise insights into crop health, optimizing irrigation, pest management, and harvest times. Innovations such as satellite imaging and remote sensing provide a holistic view of fields, empowering farmers to make informed decisions. The market encompasses a range of solutions, from real-time monitoring platforms to AI-driven predictive analysis, enabling farmers to enhance productivity and reduce resource wastage significantly.

Growth/Marketing Strategy: The pathogen or plant disease detection and monitoring market has witnessed remarkable growth strategies by key players. Business expansions, collaborations, and partnerships have been pivotal. Companies are venturing into European market, forging alliances, and engaging in research collaborations to enhance their technological prowess. Collaborative efforts between tech companies and agricultural experts are driving the development of cutting-edge monitoring tools. Additionally, strategic joint ventures are fostering the integration of diverse expertise, amplifying the market presence of these solutions. This collaborative approach is instrumental in developing comprehensive, user-friendly, and efficient phytopathogen detection and monitoring systems.

Competitive Strategy: In the competitive landscape of plant disease diagnosis, manufacturers are diversifying their product portfolios to cover various crops and farming practices. Market segments include soil analysis tools, disease detection systems, and climate analysis solutions. Competitive benchmarking illuminates the strengths of market players, emphasizing their unique offerings and regional strengths. Partnerships with research institutions and agricultural organizations are driving innovation.

Table of Contents

Scope of the Study

Executive Summary

1. Market

  • 1.1. Industry Outlook
    • 1.1.1. Market Definition
    • 1.1.2. Ongoing Trends
      • 1.1.2.1. Leveraging Data Analytics and Artificial Intelligence for Precision Disease Detection
    • 1.1.3. Ecosystem/Ongoing Programs
      • 1.1.3.1. Consortiums, Associations, and Regulatory Bodies
  • 1.2. Business Dynamics
    • 1.2.1. Business Drivers
      • 1.2.1.1. Rising Threat of Fungicide Resistance Crops
      • 1.2.1.2. Frequent Outbreaks of Emerging Plant Diseases
    • 1.2.2. Business Challenges
      • 1.2.2.1. Lack of Accuracy and Sample Security
      • 1.2.2.2. Rapid Adoption of Genetically Modified Organism (GMO) or Gene Adopted Crops
    • 1.2.3. Market Strategies and Developments
      • 1.2.3.1. Business Strategies
        • 1.2.3.1.1. Product Development and Innovations
        • 1.2.3.1.2. Market Development
      • 1.2.3.2. Corporate Strategies
        • 1.2.3.2.1. Mergers and Acquisitions
        • 1.2.3.2.2. Partnerships, Collaborations, and Joint Ventures
        • 1.2.3.2.3. Snapshot of Corporate Strategies Adopted by the Key Players in the Market
    • 1.2.4. Business Opportunities
      • 1.2.4.1. Innovations in Point-of-Care Diagnostics
      • 1.2.4.2. Rapid Adoption of Integrated Solutions
  • 1.3. Case Studies
    • 1.3.1. Libelium Comunicaciones Distribuidas S.L. - Agribio cooperative Case Study
    • 1.3.2. Ceres Imaging- Cardella Winery Case Study
  • 1.4. Start-Up Landscape
    • 1.4.1. Funding Analysis
      • 1.4.1.1. Total Investment
      • 1.4.1.2. Leading Investment by Start-Up Companies

2. Region

  • 2.1. Pathogen or Plant Disease Detection and Monitoring Market (by Region)
  • 2.2. Europe
    • 2.2.1. Europe (by Country)
      • 2.2.1.1. Italy
      • 2.2.1.2. France
      • 2.2.1.3. Netherlands
      • 2.2.1.4. Germany
      • 2.2.1.5. Switzerland
      • 2.2.1.6. Belgium
      • 2.2.1.7. Spain
      • 2.2.1.8. Bulgaria
      • 2.2.1.9. Ukraine
      • 2.2.1.10. Rest-of-Europe
  • 2.3. U.K.

3. Markets - Competitive Benchmarking & Company Profiles

  • 3.1. Competitive Benchmarking
  • 3.2. Market Share Analysis
  • 3.3. Company Profiles
    • 3.3.1. Abingdon Health
      • 3.3.1.1. Company Overview
      • 3.3.1.2. Product and Customer Portfolio Analysis
    • 3.3.2. BIOREBA AG
      • 3.3.2.1. Company Overview
      • 3.3.2.2. Product and Customer Portfolio Analysis
    • 3.3.3. Drone Ag
      • 3.3.3.1. Company Overview
      • 3.3.3.2. Product and Customer Portfolio Analysis
    • 3.3.4. Libelium Comunicaciones Distribuidas S.L.
      • 3.3.4.1. Company Overview
      • 3.3.4.2. Product and Customer Portfolio Analysis
  • 3.4. Start-Up Companies
    • 3.4.1. Agricolus
      • 3.4.1.1. Company Overview
      • 3.4.1.2. Product and Customer Portfolio Analysis
    • 3.4.2. GeoPard Agriculture
      • 3.4.2.1. Company Overview
      • 3.4.2.2. Product and Customer Portfolio Analysis
    • 3.4.3. Dronegy
      • 3.4.3.1. Company Overview
      • 3.4.3.2. Product and Customer Portfolio Analysis
    • 3.4.4. FIXAR-AERO, LLC
      • 3.4.4.1. Company Overview
      • 3.4.4.2. Product and Customer Portfolio Analysis

4. Research Methodology

  • 4.1. Primary Data Sources
  • 4.2. Secondary Data Sources
  • 4.3. Market Estimation and Forecast

List of Figures

  • Figure 1: Factors Driving the Need for Pathogen or Plant Disease Detection and Monitoring Market
  • Figure 2: Pathogen or Plant Disease Detection and Monitoring Market, $Billion, 2022-2028
  • Figure 3: Market Dynamics of the Pathogen or Plant Disease Detection and Monitoring Market
  • Figure 4: Pathogen or Plant Disease Detection and Monitoring Market (by Application), $Billion, 2022-2028
  • Figure 5: Pathogen or Plant Disease Detection and Monitoring Market (by Product), $Billion, 2022-2028
  • Figure 6: Pathogen or Plant Disease Detection and Monitoring Market (by Region), $Million, 2022
  • Figure 7: Literature Review Study on an AI-Based Strategy for Detecting and Monitoring Pest-Infested Crops and Leaves
  • Figure 8: Adoption of Genetically Engineered Crops in the U.S., 2000-2023
  • Figure 9: Share of Key Market Strategies and Developments, January 2019-October 2023
  • Figure 10: Share of Product Development and Innovations (by Company), January 2019-October 2023
  • Figure 11: Share of Partnerships, Collaborations, and Joint Ventures (by Company), January 2019-October 2023
  • Figure 12: Libelium Comunicaciones Distribuidas S.L.- Agribio cooperative Case Study
  • Figure 13: Ceres Imaging- Cardella Winery Case Study
  • Figure 14: Total Investment in the Pathogen or Plant Disease Detection and Monitoring Market, $Million, 2018-2023
  • Figure 15: Top Investments in the Plant Disease or Pathogen Detection and Monitoring Market, January 2018-July 2023
  • Figure 16: Competitive Benchmarking Matrix for Key Pathogen or Plant Disease Detection and Monitoring Product Manufacturers
  • Figure 17: Competitive Benchmarking Matrix for Key Plant Disease or Pathogen Detection and Monitoring Service Providers
  • Figure 18: Market Share Analysis of Pathogen or Plant Disease Detection and Monitoring Market (by Company), 2022
  • Figure 19: Market Share Analysis of Pathogen or Plant Disease Detection and Monitoring Market (by Company), 2022
  • Figure 20: Pathogen or Plant Disease Detection and Monitoring Market: Research Methodology
  • Figure 21: Data Triangulation
  • Figure 22: Top-Down and Bottom-Up Approach
  • Figure 23: Assumptions and Limitations

List of Tables

  • Table 1: Commercially Available Devices for Plant Pathogen Detection
  • Table 2: Key Consortiums, Associations, and Regulatory Bodies in the Pathogen or Plant Disease Detection and Monitoring Market
  • Table 3: Example of Fungicide Treatment
  • Table 4: Summary of Plant Pathogens, Pathways, and Distribution, Food and Agriculture Organization (FAO) Report, 2021
  • Table 5: Mergers and Acquisitions, January 2019-October 2023
  • Table 6: Some Examples of Point-of-Care Diagnostics (POCD)