Molecular Breeding Market Surges With DNA Editing And Sequencing Tools
Molecular Breeding market growth from 2026–2030 is driven by advances in high-throughput sequencing, CRISPR, and other gene-editing technologies.
According to a recent report by TechSci Research titled “Molecular Breeding Market – Global Industry Size, Share, Trends, Competition Forecast & Opportunities, 2030F”, the Global Molecular Breeding Market was valued at USD 7.21 billion in 2024 and is projected to grow at a compound annual growth rate (CAGR) of 7.63% during the forecast period through 2030.
The global agricultural sector is undergoing a transformative shift, and molecular breeding is at the forefront of this evolution. As consumer preferences evolve toward higher-quality, more nutritious, and sustainably produced food, molecular breeding has emerged as a key technology enabling the precise development of improved crop varieties. Consumers are becoming increasingly aware of the food they consume—not just in terms of taste and nutrition, but also in terms of how sustainably and ethically it is produced. This shift in demand is driving the rapid adoption of molecular breeding technologies across the globe.
Molecular breeding allows for the manipulation of plant genomes with pinpoint accuracy, enabling the development of crops with specific desirable traits such as enhanced nutritional content, improved flavor, and extended shelf life. This precision breeding technique is not only revolutionizing agricultural productivity but is also aligning with the broader goals of sustainable and environmentally conscious farming practices.
One of the most significant advantages of molecular breeding is its ability to develop crops that are resistant to pests and diseases, reducing the dependency on chemical pesticides and fertilizers. This contributes to a lower environmental footprint and supports more sustainable farming models. As consumers become more informed about the benefits of genetically enhanced crops, their expectations are evolving accordingly. This growing awareness is prompting food producers and agricultural stakeholders to invest more heavily in molecular breeding technologies to meet the rising standards of modern-day consumers.
In addition to shifting consumer preferences, the integration of bioinformatics is playing a crucial role in driving the expansion of the molecular breeding market. Bioinformatics—the interdisciplinary field that combines biological data with computational tools—has become indispensable in modern breeding programs. By leveraging bioinformatics, researchers and breeders can manage, analyze, and interpret massive datasets generated through genomic studies with increased accuracy and efficiency.
Bioinformatics enables the identification of genes responsible for traits such as yield improvement, drought tolerance, and disease resistance. This precision is achieved through Marker-Assisted Selection (MAS), a technique that allows breeders to select plants with the desired genetic traits using molecular markers. Among these markers, Single Nucleotide Polymorphism (SNP) markers have become particularly significant.
SNP markers represent the most common type of genetic variation found in living organisms. Their ability to be identified and processed rapidly, combined with their cost-effectiveness, makes them an essential tool in modern breeding efforts. With advancements in high-throughput sequencing technologies, the adoption of SNP markers is accelerating, enabling faster development of superior crop varieties. This has led to an increase in efficiency, significantly reducing the time and resources required for traditional breeding methods.
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The growing demand for high-performance markers like SNPs highlights the technological sophistication driving this market. These developments not only enhance crop performance but also offer more consistent results, giving stakeholders confidence in the outcomes of molecular breeding initiatives.
Regionally, the European market is emerging as a significant growth area for molecular breeding. The region's focus on sustainability, stringent agricultural standards, and progressive biotechnology policies has created an ecosystem conducive to innovation. European countries are investing heavily in research and development to promote advanced agricultural practices, including genetic improvement techniques. The European Union has taken proactive measures to encourage responsible use of genetic technologies while maintaining safety and quality standards. This balanced approach has allowed molecular breeding technologies to flourish within a supportive regulatory framework.
Furthermore, Europe’s commitment to climate change mitigation and environmental protection aligns closely with the benefits that molecular breeding offers. Crops developed using molecular breeding are often better equipped to withstand environmental stressors such as drought, heat, and pest invasions—issues that are becoming increasingly critical due to global climate shifts. As precision agriculture gains traction across the continent, molecular breeding is expected to play an instrumental role in helping farmers produce higher yields with fewer resources, all while maintaining environmental integrity.
The global molecular breeding market is segmented by marker type, application, breeding process, region, and company. Within these segments, the use of advanced tools and technology continues to shape the market landscape, with SNP markers and bioinformatics integration setting the pace for innovation. The market is also witnessing increasing collaborations between biotechnology firms, agricultural research institutes, and government bodies to expand the reach and impact of molecular breeding solutions.
Looking ahead, the molecular breeding market is poised for sustained growth. Rising consumer awareness, environmental concerns, and the demand for food security will continue to fuel investments and advancements in this sector. With cutting-edge technologies at the helm, molecular breeding is reshaping global agriculture, delivering benefits to producers, consumers, and the planet alike.
Major companies operating in Global Molecular Breeding Market are:
- Eurofins Scientific SE
- GC Group
- Illumina
- SGS SA
- Thermo-Fisher Scientific Inc.
- Intertek Group plc
- LemnaTec GmbH
- Charles River Laboratories.
- Bayer AG
- Slipstream Automation
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“The integration of multi-omics approaches, encompassing genomics, transcriptomics, proteomics, and metabolomics, is a significant recent development. This holistic approach provides a comprehensive understanding of the molecular processes within plants, enabling breeders to make informed decisions in crop improvement. By analyzing the entire molecular profile of crops, multi-omics approaches enhance the identification of key genes and pathways associated with desirable traits”, said Mr. Karan Chechi, Research Director of TechSci Research, a research-based management consulting firm.
“Molecular Breeding Market – Global Industry Size, Share, Trends, Opportunity, & Forecast 2018-2028F Segmented By Marker (Simple Sequence Repeat, Single Nucleotide Polymorphism, Expressed Sequence Tags, Others), By Application (Plant, Livestock), By Process (Marker Assisted Selection, QTL Mapping, Marker assisted back crossing), By Region and Competition, 2020-2030F”, has evaluated the future growth potential of Global Molecular Breeding Market and provides statistics & information on market size, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in Global Molecular Breeding Market.
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