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Emerging Sub-Segments Transforming the Synthetic Biology Market in Agriculture

01-28-2026 12:25 PM CET | Food & Beverage

Press release from: The Business Research Company

Synthetic Biology In Agriculture Market

Synthetic Biology In Agriculture Market

The field of synthetic biology in agriculture is on the brink of remarkable expansion, driven by cutting-edge technologies and increasing demands for sustainable farming. As global challenges such as climate change and food security intensify, this sector is gaining attention for its potential to revolutionize agricultural practices. Here's a detailed overview of the current market landscape, key players, and emerging opportunities set to shape the future.

Projected Growth and Market Size of Synthetic Biology in Agriculture
The synthetic biology in agriculture market is anticipated to experience rapid growth over the next several years. By 2030, the market size is expected to reach $31.13 billion, expanding at an impressive compound annual growth rate (CAGR) of 27.3%. This surge is fueled by several factors, including the increasing demand for climate-resilient crop varieties, broader adoption of genome editing technologies, expanded uses of synthetic microbes, and a growing need for sustainable agricultural inputs. Additionally, the commercialization of cutting-edge biotech products is playing a significant role in propelling this market forward. Notable trends driving this growth include the development of pest-resistant crops, enhanced soil health through synthetic microbes, gene-edited livestock aimed at improved productivity, and the rising use of synthetic biology in creating climate-resilient crops.

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Key Factors Contributing to Market Expansion
The increasing necessity for agriculture systems that can withstand climate variations is a major influence behind this market's growth. Farmers and agribusinesses are seeking innovative methods to enhance crop durability and yield under changing environmental conditions. Synthetic biology provides tools that enable the design of plants and microbes capable of thriving in these challenging settings.
Furthermore, the rising adoption of genome editing technologies is reshaping the agricultural landscape. These precision tools allow for the modification of plant and animal genomes to improve traits such as disease resistance, growth rates, and nutritional value, thereby offering scalable solutions to global food production challenges.

Leading Players Driving the Synthetic Biology in Agriculture Market
The synthetic biology in agriculture sector includes a diverse group of influential companies, such as BASF SE, Bayer AG, Corteva Agriscience LLC, KWS Saat Societas Europaea, Twist Bioscience Corporation, Ginkgo Bioworks Incorporated, Benson Hill Incorporated, Pivot Bio Incorporated, Cibus Incorporated, Inari Agriculture Incorporated, Tropic Biosciences United Kingdom Limited, Pairwise Plants Incorporated, Ansa Biotechnologies Incorporated, Arzeda Corporation, GreenLight Biosciences Incorporated, Evogene Limited, Aromyx Corporation, Arcadia Biosciences Incorporated, AquaBounty Technologies Incorporated, and Yield10 Bioscience Incorporated.
A recent example of strategic growth in this space occurred in December 2023, when Invaio Sciences, a US-based provider of nature-positive agricultural biologicals and precision delivery systems, acquired Peptyde Bio. This acquisition gave Invaio access to Peptyde Bio's advanced peptide discovery platform, intellectual property, and range of peptide candidates focused on crop protection. Peptyde Bio is recognized for its AI-driven antimicrobial peptide design and sustainable disease control solutions, marking an important step toward innovative, environmentally friendly crop protection methods.

View the full synthetic biology in agriculture market report:
https://www.thebusinessresearchcompany.com/report/synthetic-biology-in-agriculture-global-market-report

Emerging Opportunities Illustrating Synthetic Biology's Impact
Many key companies are concentrating on engineered nitrogen-fixing microbes as a promising solution to improve soil fertility, nutrient efficiency, and sustainable crop yields. These microbes, optimized through synthetic biology and microbial engineering, fix atmospheric nitrogen and interact with plant roots to enhance nutrient availability and reduce reliance on synthetic fertilizers.
For instance, in December 2024, BioConsortia, a US-based microbial biotech company, launched Always-N, a seed-applied microbial nitrogen-fixing treatment. Designed to lower synthetic fertilizer use while maintaining or improving yields in crops like corn and wheat, Always-N features a shelf life exceeding two years, on-seed stability, and long-lasting root colonization. This product exemplifies how synthetic biology is delivering practical agricultural innovations focused on sustainability and cost reduction.

Market Segmentation Highlighting Leading Areas in Synthetic Biology Agriculture
This market is segmented across various categories to provide a detailed understanding of its components:
1) By Product Type: Including Crops, Livestock, Microbes, and Other Product Types
2) By Technology: Covering Genome Editing, Pathway Engineering, DNA Synthesis, and other technologies
3) By Application: Encompassing Crop Improvement, Pest and Disease Control, Soil Health Management, Livestock Production, and other uses
4) By End-User: Comprising Agricultural Biotechnology Companies, Research Institutes, Farmers, and other end-users
Further subcategories include:
- Crops: Cereal, Fruit, Vegetable, Oilseed, Fiber, and Forage Crops
- Livestock: Cattle, Poultry, Swine, Sheep, Goats, and Aquaculture Species
- Microbes: Bacteria, Yeast, Fungi, Algae, Cyanobacteria, and Protozoa
- Other Product Types: Insect Cells, Plant Cells, Enzymes, Synthetic Seeds, Biofertilizers, and Biopesticides

This detailed segmentation provides a comprehensive framework for analyzing how synthetic biology technologies are integrated across different agricultural sectors and applications, supporting the market's dynamic growth through 2030.

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