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Plant Phenotyping Market by Products (Equipment, Sensors, Software), Platform/Carrier Type (Bench-Based Systems, Conveyor-Based & Modular Systems, Drones), Analysis System Type, Application, End-User - Global Forecast 2025-2030

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ÁÖ¿ä ½ÃÀå Åë°è
±âÁسâ(2023) 2¾ï 5,787¸¸ ´Þ·¯
ÃßÁ¤³â(2024) 2¾ï 7,534¸¸ ´Þ·¯
¿¹Ãø³â(2030) 4¾ï 1,712¸¸ ´Þ·¯
CAGR(%) 7.11%

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JHS 24.12.20

The Plant Phenotyping Market was valued at USD 257.87 million in 2023, expected to reach USD 275.34 million in 2024, and is projected to grow at a CAGR of 7.11%, to USD 417.12 million by 2030.

Plant phenotyping, the study of plants' structural and functional traits, is fundamental in agriculture for enhancing crop yield, adaptability, and sustainability. This discipline is increasingly vital due to the global challenges of food security, climate change, and resource limitations. The necessity of plant phenotyping lies in its ability to provide insights into how plants interact with their environment, leading to optimization in breeding, farming practices, and crop management. Applications span from academic research to commercial uses, such as developing drought-resistant crops or efficient resource utilization models, with end-use segments including agriculture, biotechnology, and research institutions.

KEY MARKET STATISTICS
Base Year [2023] USD 257.87 million
Estimated Year [2024] USD 275.34 million
Forecast Year [2030] USD 417.12 million
CAGR (%) 7.11%

Market growth in this sector is driven by advances in genomics, sensor technology, and data analytics, which facilitate high-throughput and non-destructive phenotyping methods. The rising demand for precision agriculture and sustainable farming solutions further fuels this growth. Key opportunities exist in integrating artificial intelligence and machine learning with phenotyping processes, which can enhance data processing and predictive capabilities for better crop management. Additionally, the global push towards sustainable agriculture practices opens doors for innovations in resource-efficient phenotyping tools and methodologies.

However, the market faces challenges such as high costs of advanced phenotyping equipment, the need for skilled personnel, and data management complexities. The interoperability of various technologies and scalability in diverse agricultural settings also pose considerable limitations. Market players are encouraged to focus on developing cost-effective, user-friendly phenotyping systems that can be widely adopted across different scales of operation. Investment in training programs for data analysis and interpretation is crucial for broadening the skill set available in the industry.

Innovation can flourish in areas like remote sensing, drone technologies, and the development of mobile phenotyping platforms that offer flexibility and efficiency. The nature of the plant phenotyping market is dynamic, with significant potential for disrupting traditional agricultural practices and offering transformative solutions for food production systems globally.

Market Dynamics: Unveiling Key Market Insights in the Rapidly Evolving Plant Phenotyping Market

The Plant Phenotyping Market is undergoing transformative changes driven by a dynamic interplay of supply and demand factors. Understanding these evolving market dynamics prepares business organizations to make informed investment decisions, refine strategic decisions, and seize new opportunities. By gaining a comprehensive view of these trends, business organizations can mitigate various risks across political, geographic, technical, social, and economic domains while also gaining a clearer understanding of consumer behavior and its impact on manufacturing costs and purchasing trends.

  • Market Drivers
    • Significant advancements in the application of imaging sensors for high-throughput data collection
    • High significance of sustainable crop production using improved crop varieties
    • Increasing expansions and investments in plant breeding activities
  • Market Restraints
    • Associated high cost of plant phenotyping
  • Market Opportunities
    • Ongoing research activities for plant phenotyping
    • Emergence of field-based phenotyping using remote sensing tools
  • Market Challenges
    • Limited awareness of the concept of plant phenotypic diversity

Porter's Five Forces: A Strategic Tool for Navigating the Plant Phenotyping Market

Porter's five forces framework is a critical tool for understanding the competitive landscape of the Plant Phenotyping Market. It offers business organizations with a clear methodology for evaluating their competitive positioning and exploring strategic opportunities. This framework helps businesses assess the power dynamics within the market and determine the profitability of new ventures. With these insights, business organizations can leverage their strengths, address weaknesses, and avoid potential challenges, ensuring a more resilient market positioning.

PESTLE Analysis: Navigating External Influences in the Plant Phenotyping Market

External macro-environmental factors play a pivotal role in shaping the performance dynamics of the Plant Phenotyping Market. Political, Economic, Social, Technological, Legal, and Environmental factors analysis provides the necessary information to navigate these influences. By examining PESTLE factors, businesses can better understand potential risks and opportunities. This analysis enables business organizations to anticipate changes in regulations, consumer preferences, and economic trends, ensuring they are prepared to make proactive, forward-thinking decisions.

Market Share Analysis: Understanding the Competitive Landscape in the Plant Phenotyping Market

A detailed market share analysis in the Plant Phenotyping Market provides a comprehensive assessment of vendors' performance. Companies can identify their competitive positioning by comparing key metrics, including revenue, customer base, and growth rates. This analysis highlights market concentration, fragmentation, and trends in consolidation, offering vendors the insights required to make strategic decisions that enhance their position in an increasingly competitive landscape.

FPNV Positioning Matrix: Evaluating Vendors' Performance in the Plant Phenotyping Market

The Forefront, Pathfinder, Niche, Vital (FPNV) Positioning Matrix is a critical tool for evaluating vendors within the Plant Phenotyping Market. This matrix enables business organizations to make well-informed decisions that align with their goals by assessing vendors based on their business strategy and product satisfaction. The four quadrants provide a clear and precise segmentation of vendors, helping users identify the right partners and solutions that best fit their strategic objectives.

Strategy Analysis & Recommendation: Charting a Path to Success in the Plant Phenotyping Market

A strategic analysis of the Plant Phenotyping Market is essential for businesses looking to strengthen their global market presence. By reviewing key resources, capabilities, and performance indicators, business organizations can identify growth opportunities and work toward improvement. This approach helps businesses navigate challenges in the competitive landscape and ensures they are well-positioned to capitalize on newer opportunities and drive long-term success.

Key Company Profiles

The report delves into recent significant developments in the Plant Phenotyping Market, highlighting leading vendors and their innovative profiles. These include BASF SE, Controlled Environments Limited, Delta-T Devices Ltd, EarthSense, Inc., Heinz Walz GmbH, Hiphen, Keygene N.V., LemnaTec GmbH, Phenospex B. V., Qubit Systems Inc., Rothamsted Research Limited, Saga Robotics AS, and WPS B.V..

Market Segmentation & Coverage

This research report categorizes the Plant Phenotyping Market to forecast the revenues and analyze trends in each of the following sub-markets:

  • Based on Products, market is studied across Equipment, Sensors, and Software. The Equipment is further studied across Fully Automated, Manual, and Semi-Automated. The Sensors is further studied across Image Sensors, NDVI Sensors, and Temperature Sensors. The Software is further studied across Data Acquisition, Image Analysis, and System Control.
  • Based on Platform/Carrier Type, market is studied across Bench-Based Systems, Conveyor-Based & Modular Systems, Drones, and Handheld or Portable Systems.
  • Based on Analysis System Type, market is studied across Canopy Analysis Systems, Fluorometers, Image Analysis Systems, and Multispectral Scientific Cameras.
  • Based on Application, market is studied across High-Throughput Screening, Morphology & Growth Assessment, Photosynthetic Performance, and Trait Identification.
  • Based on End-User, market is studied across Greenhouse and Laboratory.
  • Based on Region, market is studied across Americas, Asia-Pacific, and Europe, Middle East & Africa. The Americas is further studied across Argentina, Brazil, Canada, Mexico, and United States. The United States is further studied across California, Florida, Illinois, New York, Ohio, Pennsylvania, and Texas. The Asia-Pacific is further studied across Australia, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Taiwan, Thailand, and Vietnam. The Europe, Middle East & Africa is further studied across Denmark, Egypt, Finland, France, Germany, Israel, Italy, Netherlands, Nigeria, Norway, Poland, Qatar, Russia, Saudi Arabia, South Africa, Spain, Sweden, Switzerland, Turkey, United Arab Emirates, and United Kingdom.

The report offers a comprehensive analysis of the market, covering key focus areas:

1. Market Penetration: A detailed review of the current market environment, including extensive data from top industry players, evaluating their market reach and overall influence.

2. Market Development: Identifies growth opportunities in emerging markets and assesses expansion potential in established sectors, providing a strategic roadmap for future growth.

3. Market Diversification: Analyzes recent product launches, untapped geographic regions, major industry advancements, and strategic investments reshaping the market.

4. Competitive Assessment & Intelligence: Provides a thorough analysis of the competitive landscape, examining market share, business strategies, product portfolios, certifications, regulatory approvals, patent trends, and technological advancements of key players.

5. Product Development & Innovation: Highlights cutting-edge technologies, R&D activities, and product innovations expected to drive future market growth.

The report also answers critical questions to aid stakeholders in making informed decisions:

1. What is the current market size, and what is the forecasted growth?

2. Which products, segments, and regions offer the best investment opportunities?

3. What are the key technology trends and regulatory influences shaping the market?

4. How do leading vendors rank in terms of market share and competitive positioning?

5. What revenue sources and strategic opportunities drive vendors' market entry or exit strategies?

Table of Contents

1. Preface

  • 1.1. Objectives of the Study
  • 1.2. Market Segmentation & Coverage
  • 1.3. Years Considered for the Study
  • 1.4. Currency & Pricing
  • 1.5. Language
  • 1.6. Stakeholders

2. Research Methodology

  • 2.1. Define: Research Objective
  • 2.2. Determine: Research Design
  • 2.3. Prepare: Research Instrument
  • 2.4. Collect: Data Source
  • 2.5. Analyze: Data Interpretation
  • 2.6. Formulate: Data Verification
  • 2.7. Publish: Research Report
  • 2.8. Repeat: Report Update

3. Executive Summary

4. Market Overview

5. Market Insights

  • 5.1. Market Dynamics
    • 5.1.1. Drivers
      • 5.1.1.1. Significant advancements in the application of imaging sensors for high-throughput data collection
      • 5.1.1.2. High significance of sustainable crop production using improved crop varieties
      • 5.1.1.3. Increasing expansions and investments in plant breeding activities
    • 5.1.2. Restraints
      • 5.1.2.1. Associated high cost of plant phenotyping
    • 5.1.3. Opportunities
      • 5.1.3.1. Ongoing research activities for plant phenotyping
      • 5.1.3.2. Emergence of field-based phenotyping using remote sensing tools
    • 5.1.4. Challenges
      • 5.1.4.1. Limited awareness of the concept of plant phenotypic diversity
  • 5.2. Market Segmentation Analysis
  • 5.3. Porter's Five Forces Analysis
    • 5.3.1. Threat of New Entrants
    • 5.3.2. Threat of Substitutes
    • 5.3.3. Bargaining Power of Customers
    • 5.3.4. Bargaining Power of Suppliers
    • 5.3.5. Industry Rivalry
  • 5.4. PESTLE Analysis
    • 5.4.1. Political
    • 5.4.2. Economic
    • 5.4.3. Social
    • 5.4.4. Technological
    • 5.4.5. Legal
    • 5.4.6. Environmental

6. Plant Phenotyping Market, by Products

  • 6.1. Introduction
  • 6.2. Equipment
    • 6.2.1. Fully Automated
    • 6.2.2. Manual
    • 6.2.3. Semi-Automated
  • 6.3. Sensors
    • 6.3.1. Image Sensors
    • 6.3.2. NDVI Sensors
    • 6.3.3. Temperature Sensors
  • 6.4. Software
    • 6.4.1. Data Acquisition
    • 6.4.2. Image Analysis
    • 6.4.3. System Control

7. Plant Phenotyping Market, by Platform/Carrier Type

  • 7.1. Introduction
  • 7.2. Bench-Based Systems
  • 7.3. Conveyor-Based & Modular Systems
  • 7.4. Drones
  • 7.5. Handheld or Portable Systems

8. Plant Phenotyping Market, by Analysis System Type

  • 8.1. Introduction
  • 8.2. Canopy Analysis Systems
  • 8.3. Fluorometers
  • 8.4. Image Analysis Systems
  • 8.5. Multispectral Scientific Cameras

9. Plant Phenotyping Market, by Application

  • 9.1. Introduction
  • 9.2. High-Throughput Screening
  • 9.3. Morphology & Growth Assessment
  • 9.4. Photosynthetic Performance
  • 9.5. Trait Identification

10. Plant Phenotyping Market, by End-User

  • 10.1. Introduction
  • 10.2. Greenhouse
  • 10.3. Laboratory

11. Americas Plant Phenotyping Market

  • 11.1. Introduction
  • 11.2. Argentina
  • 11.3. Brazil
  • 11.4. Canada
  • 11.5. Mexico
  • 11.6. United States

12. Asia-Pacific Plant Phenotyping Market

  • 12.1. Introduction
  • 12.2. Australia
  • 12.3. China
  • 12.4. India
  • 12.5. Indonesia
  • 12.6. Japan
  • 12.7. Malaysia
  • 12.8. Philippines
  • 12.9. Singapore
  • 12.10. South Korea
  • 12.11. Taiwan
  • 12.12. Thailand
  • 12.13. Vietnam

13. Europe, Middle East & Africa Plant Phenotyping Market

  • 13.1. Introduction
  • 13.2. Denmark
  • 13.3. Egypt
  • 13.4. Finland
  • 13.5. France
  • 13.6. Germany
  • 13.7. Israel
  • 13.8. Italy
  • 13.9. Netherlands
  • 13.10. Nigeria
  • 13.11. Norway
  • 13.12. Poland
  • 13.13. Qatar
  • 13.14. Russia
  • 13.15. Saudi Arabia
  • 13.16. South Africa
  • 13.17. Spain
  • 13.18. Sweden
  • 13.19. Switzerland
  • 13.20. Turkey
  • 13.21. United Arab Emirates
  • 13.22. United Kingdom

14. Competitive Landscape

  • 14.1. Market Share Analysis, 2023
  • 14.2. FPNV Positioning Matrix, 2023
  • 14.3. Competitive Scenario Analysis
  • 14.4. Strategy Analysis & Recommendation

Companies Mentioned

  • 1. BASF SE
  • 2. Controlled Environments Limited
  • 3. Delta-T Devices Ltd
  • 4. EarthSense, Inc.
  • 5. Heinz Walz GmbH
  • 6. Hiphen
  • 7. Keygene N.V.
  • 8. LemnaTec GmbH
  • 9. Phenospex B. V.
  • 10. Qubit Systems Inc.
  • 11. Rothamsted Research Limited
  • 12. Saga Robotics AS
  • 13. WPS B.V.
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