Global Plant Phenotyping Market
市场规模(十亿美元)
CAGR :
%

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2025 –2032 |
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USD 292.98 Million |
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USD 672.74 Million |
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Global Plant Phenotyping Market Segmentation, By Software (Image Analysis, Data Acquisition, and Others), Sensors (Image Sensors, Temperature Sensors, and Others), End-User (Greenhouse, Laboratory, and Others), Products (Equipment, Software, and Sensors), Application Type (High-Throughput Screening, Trait Identification, Photosynthetic Performance, Morphology, and Others), Business Type (Original Equipment Manufacturer (OEM), Service Provider, and Others) – Industry Trends and Forecast to 2032
Plant Phenotyping Market Analysis
The plant phenotyping market is witnessing significant advancements, particularly in automation and high-throughput technologies. One of the latest methods is the integration of artificial intelligence (AI) and machine learning (ML) with imaging techniques. This allows for the analysis of large-scale plant traits with high precision. Hyperspectral imaging system, for instance, is now widely used to assess plant health, stress response, and nutrient content by capturing data across multiple wavelengths of light. Drones and robotic systems are also playing a pivotal role in the automation of data collection, reducing the need for manual intervention.
In addition, advancements in sensor technology, such as the development of next-generation phenotyping platforms, enable real-time monitoring of plant growth under various environmental conditions. These systems allow for more accurate, reproducible, and faster data collection compared to traditional methods.
The growth of the plant phenotyping market is fueled by the increasing demand for crop optimization in agriculture. This includes improving yields, resistance to diseases, and adapting to climate change. AI, ML, and automation are central to this growth, driving innovation and expanding market opportunities.
Plant Phenotyping Market Size
The global plant phenotyping market size was valued at USD 292.98 million in 2024 and is projected to reach USD 672.74 million by 2032, with a CAGR of 10.95% during the forecast period of 2025 to 2032. In addition to the insights on market scenarios such as market value, growth rate, segmentation, geographical coverage, and major players, the market reports curated by the Data Bridge Market Research also include in-depth expert analysis, geographically represented company-wise production and capacity, network layouts of distributors and partners, detailed and updated price trend analysis and deficit analysis of supply chain and demand.
Plant Phenotyping Market Trends
“Advancement in High-Throughput Phenotyping Systems”
植物表型分析市场的一个重要趋势是采用高通量表型分析系统,这推动了该市场的增长。这些系统可以快速详细地分析植物的特性,例如生长率、抗病性和产量潜力。通过利用成像、传感器和无人机等技术,研究人员可以高效地收集大量数据。例如,LemnaTec 等公司已经开发出自动化平台,可以对植物进行高通量筛选,从而帮助进行农业研究和作物改良。这一趋势正在加速植物育种、改善粮食安全并增强农业的可持续性,最终有助于扩大植物表型分析市场。
报告范围和植物表型分析市场细分
属性 |
植物表型分析关键市场洞察 |
涵盖的领域 |
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覆盖国家 |
北美洲的美国、加拿大和墨西哥、德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区 (APAC) 的其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲 (MEA) 的其他地区、巴西、阿根廷和南美洲其他地区 |
主要市场参与者 |
BASF SE(德国)、Heinz Walz GmbH(德国)、PSI (Photon Systems Instruments) spol. s ro(捷克共和国)、Qubit Biology Inc.(美国)、Keygene NV(荷兰)、Delta-T Devices Ltd(英国)、PHENOSPEX(荷兰)、WPS(荷兰)、WIWAM(比利时)、Rothamsted Research(美国)、Phenomix Corp.(美国)、VIB(比利时)、SMO bv(荷兰)、Vienna BioCenter(奥地利)、LemnaTec GmbH(德国) |
市场机会 |
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增值数据信息集 |
除了对市场价值、增长率、细分、地理覆盖范围和主要参与者等市场情景的见解之外,Data Bridge Market Research 策划的市场报告还包括深入的专家分析、按地理位置表示的公司生产和产能、分销商和合作伙伴的网络布局、详细和更新的价格趋势分析以及供应链和需求的赤字分析。 |
植物表型分析市场定义
植物表型分析是测量和分析植物可观察性状或特征的过程,例如生长、发育、形态和应激反应。这对于了解植物行为、遗传变异以及植物如何与环境相互作用至关重要。现代表型分析涉及高通量技术,例如成像系统、传感器和遗传工具,以收集大量数据。这有助于研究人员确定作物改良、育种和农业实践的关键性状。从植物表型分析中获得的见解有助于提高作物的生产力、抗病性和环境适应性,最终支持可持续农业和粮食安全。
植物表型分析市场动态
驱动程序
- 气候变化日益受关注
随着气候变化的加速,干旱、洪水和气温变化等极端天气模式对农作物产量的影响越来越大。植物表型分析在识别能够帮助农作物忍受这些恶劣条件的植物特性方面起着至关重要的作用。例如,2021 年 10 月,美国农业部 (USDA) 向可持续农业研究项目投资了超过 1.46 亿美元。该计划的重点是通过解决劳动力短缺、促进负责任的土地使用和减轻气候变化影响等关键问题来提高粮食和农业系统的复原力,从而提高农业的整体可持续性。
- 粮食安全需求不断增长
预计到 2050 年,全球人口将达到近 100 亿,这加剧了对高产、抗病作物的需求,以确保粮食安全。植物表型分析在开发此类作物方面发挥着关键作用,它可以识别出所需的特性,例如耐旱性、抗虫性和改善营养成分。例如,表型分析技术正用于开发耐旱玉米和水稻等转基因作物,这些作物可以承受极端环境条件并产生更好的结果。随着研究人员和农业公司专注于应对全球人口增长带来的挑战,对更具弹性的作物的需求正在推动植物表型分析市场的发展。
机会
- 精准农业的增长
精准农业的发展为植物表型分析市场创造了巨大的机遇。遥感、无人机和人工智能等技术使农作物监测更加高效和准确,提供有关植物健康、生长和环境条件的实时数据。这增强了农作物管理的决策能力,允许采取量身定制的干预措施,例如优化灌溉、施肥和病虫害防治。随着精准农业的不断发展,植物表型分析与人工智能和数据分析的结合将进一步推动农作物育种的进步,提高产量和可持续性。这为市场参与者提供了机会,可以提供支持可持续农业实践和满足日益增长的粮食安全需求的创新解决方案。
- 专注于作物育种
基因组选择和育种计划的兴起与植物表型分析相结合,为植物表型分析市场创造了巨大的机遇。通过将基因组数据与详细的表型分析相结合,研究人员可以加速开发具有高产、高营养含量和高抗病性等理想特性的作物品种。这种协同作用可以更快、更准确地做出育种决策,从而减少开发新作物的时间和成本。随着全球农业需求的增长,培育更具弹性和高性能植物的能力至关重要,从而推动了研究和育种计划中采用先进的表型分析工具和技术。
限制/挑战
- 数据管理和分析的复杂性
植物表型分析市场的数据管理和分析复杂性严重阻碍了其增长。植物表型分析会产生大量数据,包括图像、测量值和环境变量,需要复杂的软件和算法才能进行正确分析。这些数据的庞大数量,加上植物特征的复杂性(如生长模式和生理反应),使得准确解释变得困难。对高计算能力的需求以及各种数据源之间缺乏无缝集成进一步加剧了这一挑战。这种复杂性导致更长的处理时间、潜在的不准确性和增加的成本,最终限制了市场的可扩展性和可访问性,尤其是对于较小的研究机构或农场而言。
- 初期投资高
植物表型分析技术高昂的初始投资是市场发展的主要制约因素。精确表型分析所需的先进成像系统、传感器和专用设备需要大量资本支出。这种前期成本对于小规模农户、研究机构和预算有限的组织来说尤其具有挑战性。需要广泛的基础设施来支持数据收集、存储和分析,这进一步加剧了财务负担。因此,植物表型分析技术的采用仅限于大型企业或资金充足的研究项目,阻碍了该技术的广泛实施。规模较小的农业参与者可能难以获得表型分析的好处,从而影响市场的整体增长和可扩展性。
本市场报告详细介绍了最新发展、贸易法规、进出口分析、生产分析、价值链优化、市场份额、国内和本地市场参与者的影响,分析了新兴收入领域的机会、市场法规的变化、战略市场增长分析、市场规模、类别市场增长、应用领域和主导地位、产品批准、产品发布、地域扩展、市场技术创新。如需获取更多市场信息,请联系 Data Bridge Market Research 获取分析师简报,我们的团队将帮助您做出明智的市场决策,实现市场增长。
植物表型分析市场范围
市场根据软件、传感器、最终用户、应用类型、业务类型和产品进行细分。这些细分市场之间的增长情况将帮助您分析行业中增长缓慢的细分市场,并为用户提供有价值的市场概览和市场洞察,帮助他们做出战略决策,确定核心市场应用。
软件
- 图像分析
- 数据采集
- 其他的
传感器
- 图像传感器
- 温度传感器
- 其他的
终端用户
- 温室
- 实验室
- 其他的
产品
- 设备
- 地点
- 实验室
- 温室
- 场地
- 平台/载体
- 基于传送带/模块化的系统
- 基于工作台的系统
- 手持/便携系统
- 无人机
- 自动化程度
- 全自动
- 半自动化
- 手动的
- 分析系统
- 图像分析系统
- 多光谱科学相机
- 冠层分析系统
- 荧光计
- 3D 扫描仪
- 气孔计
- 筛查系统
- 浮游植物和光合作用分析仪
- 红外气体分析仪
- 激光扫描仪
- 发芽系统
- 根表型系统
- 重量分析系统
- 地点
- 应用
- 软件
- 数据采集
- 图像分析
- 系统控制
- 数据管理
- 日程助理
- 实验设计
- 数据库配置
- 传感器
- 图像传感器
- 归一化差异植被指数 (NDVI) 传感器
- 温度传感器
- 湿度传感器
- 超声波距离传感器
应用类型
- 高通量筛选
- 性状识别
- 光合作用性能
- 形态学
- 其他的
业务类型
- 原始设备制造商 (OEM)
- 服务提供商
- 其他的
植物表型分析市场区域分析
The market is analyzed and market size insights and trends are provided by software, sensors, end-user, application type, business type, and products as referenced above.
The countries covered in the market report are U.S., Canada, Mexico in North America, Germany, Sweden, Poland, Denmark, Italy, U.K., France, Spain, Netherland, Belgium, Switzerland, Turkey, Russia, Rest of Europe in Europe, Japan, China, India, South Korea, New Zealand, Vietnam, Australia, Singapore, Malaysia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in Asia-Pacific (APAC), Brazil, Argentina, Rest of South America as a part of South America, U.A.E, Saudi Arabia, Oman, Qatar, Kuwait, South Africa, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA).
North America is expected to dominate the plant phenotyping market due to the increasing initiatives from both government and private players to advance technologies in the region. Investment in research and development, along with the adoption of cutting-edge technologies such as AI, machine learning, and robotics, has accelerated market growth. Furthermore, the presence of key players and academic institutions focusing on agriculture innovation further strengthens North America's position as a market leader.
Europe is expected to show significant growth in the plant phenotyping market due to increasing automation and the adoption of advanced technologies. The region is leading the way in the application of imaging sensors for high-throughput data collection, enhancing the accuracy and speed of plant analysis. These advancements are fostering research and innovation, especially in agricultural science, contributing to improved crop management, disease detection, and yield predictions, thereby driving market expansion in Europe.
The country section of the report also provides individual market impacting factors and changes in market regulation that impact the current and future trends of the market. Data points such as down-stream and upstream value chain analysis, technical trends and porter's five forces analysis, case studies are some of the pointers used to forecast the market scenario for individual countries. Also, the presence and availability of global brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of domestic tariffs and trade routes are considered while providing forecast analysis of the country data.
Plant Phenotyping Market Share
The market competitive landscape provides details by competitor. Details included are company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, global presence, production sites and facilities, production capacities, company strengths and weaknesses, product launch, product width and breadth, application dominance. The above data points provided are only related to the companies' focus related to market.
Plant Phenotyping Market Leaders Operating in the Market Are:
- BASF SE (Germany)
- Heinz Walz GmbH (Germany)
- PSI (Photon Systems Instruments) spol. s r.o. (Czech Republic)
- Qubit Biology Inc. (U.S.)
- Keygene N.V. (Netherlands)
- Delta-T Devices Ltd (U.K.)
- PHENOSPEX (Netherlands)
- WPS (Netherlands)
- WIWAM (Belgium)
- Rothamsted Research (U.S.)
- Phenomix Corp. (U.S.)
- VIB (Belgium)
- SMO bv (Netherlands)
- Vienna BioCenter (Austria)
- LemnaTec GmbH (Germany)
Latest Developments in Plant Phenotyping Market
- In July 2024, Heinz Walz GmbH partnered with Plant Science Brasil Ltda to form a distribution alliance in Brazil. This collaboration targets researchers and clients working in plant physiology, soil physics, and environmental monitoring. By combining expertise, they aim to advance scientific knowledge and technology in these areas, enhancing research capabilities across Brazil
- In 2023, Delta-T Devices introduced the Delta-T FieldSpec X5 portable phenotyping system, an upgraded version of the FieldSpec X4 model. The new system features a thermal camera and an expanded array of sensors. Designed for field-based applications, it provides enhanced data collection for agricultural research, enabling more accurate environmental and plant condition assessments
- In September 2023, Crystal Crop Protection Limited and KeyGene signed a multi-year Memorandum of Understanding to expand their research partnership. This collaboration focuses on utilizing KeyGene's advanced breeding technologies to accelerate crop improvement. The partnership aims to enhance agricultural productivity by leveraging innovative genetic research, helping farmers access improved crops for various environmental conditions
- In September 2022, Royal Van Zanten (RVZ) entered into a strategic partnership with Interplant, a renowned spray rose breeder, to support East African growers. The partnership provides access to RVZ's diverse range of floriculture varieties, including Alstroemeria and Statice. With Interplant's testing facilities in Kenya, RVZ blooms will undergo local trials to ensure optimal performance in the region
- In October 2021, The U.S. Department of Agriculture (USDA) invested over USD 146 million in sustainable agricultural research projects. The initiative focuses on improving the resilience of the food and farming systems by addressing critical issues such as labor shortages, promoting responsible land use, and mitigating climate change effects, thus enhancing the overall sustainability of agriculture
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研究方法
数据收集和基准年分析是使用具有大样本量的数据收集模块完成的。该阶段包括通过各种来源和策略获取市场信息或相关数据。它包括提前检查和规划从过去获得的所有数据。它同样包括检查不同信息源中出现的信息不一致。使用市场统计和连贯模型分析和估计市场数据。此外,市场份额分析和关键趋势分析是市场报告中的主要成功因素。要了解更多信息,请请求分析师致电或下拉您的询问。
DBMR 研究团队使用的关键研究方法是数据三角测量,其中包括数据挖掘、数据变量对市场影响的分析和主要(行业专家)验证。数据模型包括供应商定位网格、市场时间线分析、市场概览和指南、公司定位网格、专利分析、定价分析、公司市场份额分析、测量标准、全球与区域和供应商份额分析。要了解有关研究方法的更多信息,请向我们的行业专家咨询。
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