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Plant Genomics Market to Reach USD 20,614.14 million by 2032 | CAGR 8.6% | North America Leads with 35% Share | Key Players: Illumina, Agilent Technologies, BGI Genomics, Neogen Corporation

01-23-2026 10:11 AM CET | Energy & Environment

Press release from: DataM intelligence 4 Market Research LLP

Plant Genomics

Plant Genomics

Market Overview

The Global Plant Genomics Market reached USD 10,654.34 million in 2024 and is expected to reach USD 20,614.14 million by 2032, growing at a CAGR of 8.60% during the forecast period 2025-2032. The market growth is driven by the increasing need for higher agricultural productivity, sustainable crop development, and advancements in molecular breeding and genetic engineering.

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Plant genomics plays a vital role in enhancing crop protection, improving yield, and developing stress-tolerant varieties capable of withstanding extreme environmental conditions. It also helps reduce mycotoxin contamination and enables plants to adapt to higher temperatures, ensuring food security under changing climate conditions.

According to the United Nations Convention to Combat Desertification (UNCCD), nearly 20-30% of the Earth's vegetated surface is experiencing degradation due to the loss of vegetative cover. This environmental challenge has intensified the demand for advanced scientific approaches to restore and enhance vegetation, making plant genomics a critical component in global agricultural innovation.

Recent Developments:

✅ January 2026 - United States: Corteva Agriscience launched a new genome-editing platform utilizing CRISPR-Cas12a technology to accelerate the development of drought-resistant and pest-tolerant crop varieties.

✅ November 2025 - Germany: Bayer AG introduced a next-generation molecular breeding program integrating AI-driven genomic selection for hybrid seed development, improving yield stability and genetic diversity.

✅ September 2025 - China: BGI Genomics announced a major research collaboration with the Chinese Academy of Agricultural Sciences to sequence and map the genomes of major grain crops for climate resilience research.

✅ July 2025 - United Kingdom: Syngenta Group opened a plant genomics innovation hub focusing on predictive analytics and trait mapping to enhance disease resistance in cereal and oilseed crops.

✅ May 2025 - India: ICAR (Indian Council of Agricultural Research) launched a national genomics initiative to develop region-specific rice and wheat varieties with improved nutrient profiles and higher yield potential.

✅ March 2025 - Japan: Mitsui & Co., Ltd. partnered with a local biotechnology firm to co-develop genome-edited vegetables designed for enhanced shelf life and nutritional value.

✅ January 2025 - Brazil: Embrapa (Brazilian Agricultural Research Corporation) completed the genome sequencing of tropical maize varieties to improve breeding efficiency and pest resistance.

Mergers & Acquisitions:

✅ December 2025 - United States: Corteva Agriscience acquired a plant genetics startup specializing in AI-based gene sequencing and molecular trait prediction, strengthening its precision breeding and genome-editing capabilities.

✅ October 2025 - Switzerland: Syngenta Group completed the acquisition of a European agri-biotech company focused on crop genome analytics to accelerate R&D in hybrid seed genetics and crop protection innovation.

✅ August 2025 - Germany: Bayer CropScience acquired a biotech research firm specializing in RNA-interference (RNAi) technology for improving plant resistance and stress tolerance.

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Key Players:

• Agilent Technologies Inc. - Holds a 12.5% share, offering advanced genomics instrumentation, sequencing platforms, and bioinformatics solutions for crop research and molecular breeding.

• BGI Genomics - Holds a 10.8% share, leading in high-throughput sequencing and large-scale crop genome mapping projects for climate-resilient agriculture.

• Eurofins Scientific SE - Holds a 9.7% share, providing comprehensive plant DNA testing, genomic analysis, and biotechnology services for seed producers and agricultural researchers.

• Florogenex Inc. - Holds a 7.9% share, specializing in next-generation sequencing (NGS) and genome reduction technologies tailored for plant genotyping and trait discovery.

• GENEWIZ Inc. - Holds an 8.6% share, focusing on custom sequencing, gene synthesis, and genome editing services for agricultural biotechnology and plant R&D.

• Illumina Inc. - Holds a 14.2% share, dominating the sequencing market with powerful genomics platforms supporting molecular breeding, genome annotation, and trait discovery.

• KeyGene N.V. - Holds a 9.0% share, pioneering molecular breeding, crop trait discovery, and genomics-based innovation for vegetable and field crop improvement.

• Neogen Corporation - Holds a 10.1% share, offering agricultural genomics solutions for seed quality, trait identification, and genetic purity testing across crop species.

• L.C. Sciences - Holds a 8.2% share, providing microarray-based genomics tools, RNA sequencing, and bioinformatics services for plant genomics research.

• Novogene Co. Ltd. - Holds a 9.0% share, offering large-scale plant genome sequencing and multi-omics data analysis solutions for agricultural innovation and crop improvement.

Market Segmentation:

By Type
The Genotyping segment dominates the plant genomics market, holding approximately 35% of the total share. It plays a crucial role in identifying genetic variations and enhancing plant breeding efficiency. DNA Sequencing follows with around 28%, driven by the growing use of next-generation sequencing (NGS) for genome mapping and trait analysis. Gene Expression Analysis accounts for 18%, primarily used for understanding plant responses to environmental stress and pathogens. Meanwhile, Marker-Assisted Selection (MAS) represents 12%, widely applied in accelerating crop improvement programs. The remaining 7% is attributed to Bioinformatics and Other Technologies, supporting data interpretation and integration in genomics research.

By Trait
The Disease Resistance trait leads the market with about 30% share, as plant breeders focus on developing crops resistant to fungi, bacteria, and viral pathogens. Herbicide Tolerance holds 22%, driven by the increasing demand for efficient weed management and higher yield stability. Drought Resistance contributes 20%, supported by the global emphasis on developing climate-resilient crops amid rising temperatures and water scarcity. Yield Improvement accounts for 18%, while Nutritional Enhancement and Other Traits together represent the remaining 10%, focusing on improving crop quality and nutritional value.

By Application
Cereals and Grains dominate the application segment with 40% market share, as genomics plays a key role in improving rice, wheat, and maize yield and resistance. Oilseeds and Pulses follow with 25%, driven by genomic innovations in soybean and sunflower to enhance oil content and stress tolerance. Fruits and Vegetables contribute 20%, benefiting from advancements in flavor optimization, shelf-life enhancement, and disease resistance. The remaining 15% is held by Other Crops, including fiber, forage, and ornamental plants, where genomics applications are expanding steadily.

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Regional Insights:

North America holds the dominant position in the global plant genomics market, accounting for approximately 35% of total revenue. The region's growth is fueled by strong investments in agricultural biotechnology, advanced research infrastructure, and the presence of major genomics companies such as Illumina, Agilent Technologies, and Neogen Corporation. The U.S. continues to lead with extensive adoption of molecular breeding, gene editing, and CRISPR-based crop improvement programs aimed at enhancing productivity and disease resistance.

Europe follows closely, contributing around 27% of the market share. The region benefits from supportive regulatory frameworks promoting sustainable agriculture and genetic innovation. Countries such as Germany, the Netherlands, and France are investing heavily in genomics-driven crop research, focusing on climate-resilient and high-nutrition crops. The European Union's emphasis on reducing pesticide dependence and promoting bio-based agriculture further boosts genomics adoption.

Asia-Pacific is the fastest-growing region, holding about 28% of the global market share. Rapid agricultural modernization, rising food security concerns, and government-led genomics initiatives in countries like China, India, and Japan are key growth drivers. China's large-scale genome mapping projects and India's investments in rice and wheat genomics are propelling regional advancement.

Market Dynamics:

The Increasing Application of Genomics in Plant Breeding Drives Market Growth
The growing application of genomics in plant breeding is one of the primary factors driving the global plant genomics market. The availability of advanced genomic tools and resources has revolutionized plant breeding by enabling the detailed study of genotypes and their relationships with phenotypes particularly for complex traits such as yield, disease resistance, and stress tolerance. Next-generation sequencing (NGS) technologies facilitate large-scale genomic and transcriptome sequencing, generating extensive data for genetic analysis.

Advancements in bioinformatics allow for efficient NGS data analysis, enabling the identification of novel genes, regulatory sequences, and molecular markers essential for crop improvement. Marker-Assisted Breeding (MAB) and genomic mapping have become key tools for improving comparative genomics, accelerating trait selection, and developing superior crop varieties. These innovations collectively enhance breeding efficiency and contribute to the ongoing expansion of the global plant genomics market.

Increasing Demand for Genetically Modified Crops Fueling Market Expansion
The rising demand for genetically modified (GM) crops is significantly contributing to the growth of the plant genomics market. GM crops are engineered to possess beneficial traits such as insect resistance, herbicide tolerance, and enhanced nutritional content. These traits help farmers reduce pesticide use, control weeds more effectively, and achieve higher productivity. Technologies such as proteomics and metabolomics play a crucial role in optimizing crop profitability and resilience.

Moreover, GM crops are being developed to provide direct consumer benefits such as improved nutritional value or healthier oil profiles. For instance, genetically modified soybeans have been engineered to produce oil with better fatty acid composition, offering both health and sustainability advantages. As global food demand rises, GM crops supported by plant genomics research are helping ensure greater accessibility and affordability of food.

High Costs and Environmental Concerns Restraining Market Growth
Despite strong technological progress, high costs associated with plant genomics research and sequencing continue to restrain market growth. Genomic sequencing, data analysis, and large-scale field trials are capital-intensive, often representing a significant portion up to 80% of the gross margin for biotechnology firms. These high costs can limit accessibility, particularly

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