El fenotipado de plantas se refiere al proceso de medición y análisis de las propiedades físicas y bioquímicas de las plantas para comprender sus respuestas a las condiciones ambientales, la genética y las prácticas de manejo. Esto incluye el estudio de las características de las plantas, como la morfología, la fisiología, el crecimiento, el desarrollo y el metabolismo, mediante diversas técnicas y herramientas. Los datos obtenidos del fenotipado de plantas pueden ayudar en los programas de mejoramiento, la mejora de los cultivos y la comprensión de las interacciones entre las plantas y su entorno.
El fenotipado de plantas puede proporcionar información valiosa sobre el rendimiento de los cultivos en diferentes condiciones ambientales, como la temperatura, la humedad y la disponibilidad de nutrientes. Puede ayudar a los agricultores e investigadores a optimizar sus prácticas de gestión de cultivos, como la densidad de plantación, la fertilización y el riego, y a desarrollar nuevas variedades de cultivos con características deseables, como la resistencia a plagas y enfermedades, o la tolerancia al estrés ambiental. Al recopilar datos sobre una amplia gama de características de las plantas, como la acumulación de biomasa, el área foliar, la eficiencia fotosintética y la arquitectura de las raíces, los investigadores y los agricultores pueden obtener información valiosa sobre el rendimiento de los cultivos en diferentes condiciones ambientales.
| ATRIBUTO | DETALLES |
| Periodo de estudio | 2023-2029 |
| Año base | 2021 |
| Año estimado | 2022 |
| Año pronosticado | 2023-2029 |
| Periodo histórico | 2018-2020 |
| Unidad | Valor (millones de USD) |
| Segmentación | Por producto, servicio, tipo de aplicación, usuario final, región. |
| Por producto |
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| Por servicio |
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| Por tipo de aplicación |
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| Por uso final |
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| Por región |
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El crecimiento del mercado de fenotipado de plantas está siendo impulsado por varios factores clave. En primer lugar, existe una tendencia creciente de expansiones e inversiones en este campo en las regiones desarrolladas, lo que está contribuyendo a la expansión del mercado. En segundo lugar, ha habido avances significativos en sensores de imágenes, lo que resulta en una mayor automatización y recopilación de datos de alto rendimiento, lo que ha impulsado el crecimiento del mercado. Además, la creciente incidencia de enfermedades transmitidas por semillas es otro factor que impulsa el mercado de fenotipado de plantas. Además, el uso de herramientas de teledetección para el fenotipado en el campo está creando nuevas oportunidades, al igual que el desarrollo de asociaciones de investigación en las economías emergentes. Se espera que estos factores, entre otros, impulsen el crecimiento del mercado de fenotipado de plantas en el período de pronóstico.
The Plant Phenotyping market size had crossed USD 187 Million in 2020 and will observe a CAGR of more than 12.9% up to 2029
Based on product, service, application type, end-user, the plant phenotyping market report's divisions are broken down
The global plant phenotyping market registered a CAGR of 12.9% from 2022 to 2029. The industry segment was the highest revenue contributor to the market.
Key players profiled in the report include Agri-EPI Centre Ltd, BioVox, CropDesign, Delta-T Devices, Heinz Walz, Hiphen, KeyGene, LemnaTec, Pheno-Inspect GmbH, Phenomix, Phenospex, Photon System Republic, Plant-DiTech LTD, Quibit Phenomics, Rothamstad Research Limited and others.
Europe is the largest regional market for plant phenotyping market.
The global plant phenotyping market is segmented into product, service, application type, end-user and Region.
The plant phenotyping market is categorized into different product segments, including equipment, software, and sensors. Equipment is further divided into several sub-segments, such as site, platform/carrier, level of automation, analysis system, and application. Software is also segmented into various categories, such as data acquisition, image analysis, system control, data management, schedule assistant, experiment design, and database configuration. Additionally, sensors are divided into image sensors, normalized difference vegetation index (NDVI) sensors, temperature sensors, humidity sensors, and ultrasonic distance sensors. The equipment segment is expected to dominate the plant phenotyping market, while the sensors segment is expected to have the highest growth rate. The rise in accessibility and affordability of imaging equipment has led to an increasing number of plant breeders and researchers using this technology for plant phenotyping, while the demand for more accurate and efficient data collection is driving the growth of the sensors segment.
On the basis of service, the plant phenotyping market is segmented into Data Acquisition, Analysis, and others. Data Acquisition services typically involve the collection of data on plant growth and development using various sensors and imaging technologies. This data is then processed and analyzed to extract relevant information about plant traits and characteristics. Analysis services, on the other hand, involve the interpretation and analysis of plant phenotyping data to extract meaningful insights and draw conclusions. This can involve the use of advanced software tools and algorithms to identify patterns and relationships within the data. Other service category, involves consulting and training services, custom software development, and technical support services. These services can help to support the development, deployment, and use of plant phenotyping technologies in a wide range of applications, such as crop breeding, plant research, and product development.
Based on application type, the plant phenotyping market is segmented high-Throughput Screening, Trait Identification, Photosynthetic, Performance, Morphology, and others. In recent years, there has been a growing interest in high-throughput screening as a means of rapidly and efficiently identifying plants with desirable traits. This suggests that the high-throughput screening segment may be gaining momentum in the plant phenotyping market. Trait identification involves the use of plant phenotyping technology to identify specific traits, such as root length, leaf area, and biomass, that are important for crop performance. Photosynthetic performance is another important application of plant phenotyping, as it provides information on the efficiency of photosynthesis in plants, which is crucial for plant growth and development. Morphology is another important application of plant phenotyping that involves the measurement and analysis of plant structure, such as stem diameter, leaf angle, and plant height.
Based on end-users, the plant phenotyping market is segmented into greenhouse, laboratory and field. The greenhouse segment is expected to be the largest and grow at the fastest CAGR during the forecast period. Greenhouse phenotyping involves conducting experiments in a controlled environment that mimics natural conditions. This provides researchers with precise control over environmental factors such as temperature, humidity, light intensity, and CO2 concentration. Laboratories are another important end-user segment of the plant phenotyping market. Laboratory-based plant phenotyping involves the use of controlled environments and advanced imaging and analytical tools to study plant growth and development. This can be particularly useful for studying plant responses to specific environmental stimuli, such as temperature, light, and nutrient availability. Field-based plant phenotyping is another important end-user segment of the market, as it involves the study of plant growth and development in natural environments, such as farms and fields. This can provide valuable insights into the performance of crops under different environmental conditions and can help farmers to optimize their crop management practices.
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PlantThe major players operating in the global Plant Phenotyping industry include Agri-EPI Centre Ltd, BioVox, CropDesign, Delta-T Devices, Heinz Walz, Hiphen, KeyGene, LemnaTec, Pheno-Inspect GmbH, Phenomix, Phenospex, Photon System Republic, Plant-DiTech LTD, Quibit Phenomics, Rothamstad Research Limited and others.
November 22, 2022: BGI-Sanya and KeyGene started its collaboration on spatial transcriptomics for fast identification of lead genes associated with important crop traits. March 3, 2022: Royal Van Zanten and KeyGene started their partnership to accelerate the breeding of ornamental crops.Geographically, the Plant Phenotyping market is segmented into North America, South America, Europe, APAC and MEA.
Europe currently leads the world in plant phenotyping production, with European products exported globally. Europe held around 30% market share in the global plant phenotyping market. The industry offers a diverse range of products, from native to modified services, that can be applied as functional ingredients in various industries including food, non-food, and feed. While no particular end-use application industry dominates, the food industry is expected to experience the highest growth due to the emergence of newer plant phenotyping variations, products, and applications.
Additionally, Europe's plant phenotyping industry has been driven by the increasing demand for high-quality and sustainable agricultural practices. The adoption of precision agriculture and the development of novel phenotyping technologies have also contributed to the growth of the European plant phenotyping market.
Furthermore, there are many countries and regions around the world that are actively engaged in plant phenotyping research and development, including the United States, Australia, China, and several countries in Africa and South America. These regions have also made significant contributions to the field of plant phenotyping and have many companies and research institutions engaged in the production of plant phenotyping technologies.
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