The North America Environmental DNA Market was valued at $457.4 Million in 2026 and projected to reach to $902.9 Million by 2031, representing a compound annual growth rate of 14.6%. North America's Environmental DNA market is positioned for sustained expansion, growing from $457.4 million in 2026 to $902.9 million by 2031 at a 14.6% CAGR.
| Market Size in | USD 26.32 MN |
| Market Forecast in | |
| CAGR | |
| Forecast Period | |
| Units Considered | Value (USD MN) |
North America's stringent food safety regulations, including FDA and CFIA standards, are driving adoption of Environmental DNA testing as a verification tool for product authenticity and contamination detection across the F&B supply chain.
The United States commands 75.8% of North America's Environmental DNA market at $691.4 million in 2026, reflecting strong investment in biotechnology infrastructure and consumer demand for transparent food sourcing.
North America's robust biotech ecosystem, concentrated in regions like California and Ontario, is accelerating innovation in Environmental DNA detection technologies and creating competitive advantages in food traceability solutions.
Rising North American consumer awareness regarding food fraud, species mislabeling, and supply chain transparency is fueling demand for Environmental DNA testing in seafood, meat, and specialty food products.
| Report Metric | Details |
|---|---|
| Base Year | 2026 |
| Fastest Growing Segment | CLIMATE CHANGE IMPACT ASSESSMENT (Application) |
| Forecast Period | 2026–2031 |
| Growth Rate | CAGR of 14.9% from 2026 to 2031 |
| Largest Segment | WATER (Sample Type) |
| Market Size Base Year (Billions) | ~USD 1.52 (2026) |
| Revenue Forecast (Billions) | ~USD 3.04 (2031) |
| Segments Covered | Application, Detection Method, Sample Type, Type Of Solution, Service, Product, Instrument & Hardware, Consumable & Reagent |
8 segment dimensions are covered across the global market.
| Company | HQ | Ownership | Strongest segments |
|---|---|---|---|
| THERMO FISHER SCIENTIFIC INC. | United States | Public Company | Life Sciences Solutions,Analytical Instruments,Specialty Diagnostics, |
| ILLUMINA, INC. | United States | Public Company | Sequencing instruments,Sequencing consumables (reagents, flow cells, library prep, WGS and targeted kits),Array-based instruments and consumables, |
| QIAGEN | Netherlands | Public Company | Sample technology consumables and instruments,PCR and enzymes (research and clinical),Immune response and infectious disease assays, |
| SGS SOCIéTé GéNéRALE DE SURVEILLANCE SA | Switzerland | Public Company | Testing & Inspection,Certification and Assurance (incl. consulting, digital trust, sustainability), |
| EUROFINS SCIENTIFIC | Luxembourg | Public Company | Food and Feed Testing,Environment Testing,Biopharma Services, |
| STANTEC | Canada | Public Company | Transportation & Civil Infrastructure (roads, transit, utilities),Water (resources, treatment, distribution, wastewater),Buildings (architecture, interiors, MEP, fire, sustainability), |
| TAKARA BIO INC. | Japan | Private Company | Genetic and cellular research reagents,PCR instruments and cellular analysis devices,In vitro diagnostics (including COVID-19 testing), |
| APPLIED GENOMICS | United States | Private Company | Mammostrat breast cancer prognostic test,Pulmotype NSCLC classification IHC panel,Pulmostrat early-stage lung cancer prognostic test, |
Thermo Fisher Scientific Inc. is a United States-based public company founded in 1956 that employs 125,000 people. The company operates as a major provider of life sciences products and services.
Illumina, Inc. is a United States-based public company founded in 1998 with 8,625 employees. The company specializes in DNA sequencing and genetic analysis technologies.
QIAGEN is a Netherlands-based public company founded in 1984 with 5,500 employees. The company provides molecular diagnostics and life sciences products and services.
SGS Société Générale de Surveillance SA is a Switzerland-based public company founded in 1878 with 83,000 employees. The company operates as a leading provider of inspection, verification, testing, and certification services.
Eurofins Scientific is a Luxembourg-based public company founded in 1987 with 65,694 employees. The company provides laboratory testing and scientific analysis services across multiple industries.
Stantec is a Canada-based public company founded in 1954 with 34,000 employees. The company provides professional design and consulting services in engineering, architecture, and environmental sectors.
Takara Bio Inc. is a Japan-based private company founded in 2002 with 1,779 employees. The company provides biotechnology products and services for life sciences research.
Applied Genomics is a United States-based private company founded in 2000. The company operates in the genomics and genetic analysis sector.
| Country | 2025 size (native) |
|---|---|
| US | USD 691.4 Million |
| Canada | USD 148.1 Million |
| Mexico | USD 63.4 Million |
The Environmental DNA market in North America is valued at $457.4 million in 2026 and is expected to grow to $902.9 million by 2031.
North America's Environmental DNA market is growing at a compound annual growth rate (CAGR) of 14.6% from 2026 to 2031.
Growth in North America is driven by stringent food safety regulations, increasing consumer demand for product authenticity, advanced biotechnology infrastructure, and supply chain transparency requirements.
North America's food and beverage companies use environmental DNA testing to detect contaminants, verify species composition, ensure supply chain integrity, and meet regulatory compliance standards.
North America's Environmental DNA market is projected to reach $902.9 million by 2031, representing a doubling of market value from 2026 levels.
The study employed two primary approaches to estimate the current size of the environmental DNA market. Exhaustive secondary research was conducted to gather information on the market, peer markets, and parent markets. The next step was to validate these findings, assumptions, and sizing with industry experts across the value chain through primary research. Both top-down and bottom-up approaches were employed to estimate the complete market size. After that, market breakdown and data triangulation were used to estimate the market size of segments and subsegments.
This research study involved the extensive use of secondary sources—directories and databases such as Web of Science, Scopus, PubMed, GenBank, EMBL-EBI, and GBIF—to identify and collect information useful for a technical, market-oriented, and commercial study of the market. In the secondary research process, various sources such as annual reports, press releases & investor presentations of companies, white papers, food journals, certified publications, articles from recognized authors, directories, and databases were referred to to identify and collect information. Secondary research was mainly used to obtain key information about the industry’s supply chain, the total pool of key players, and market classification and segmentation as per the industry trends to the bottom-most level, regional markets, and key developments from both market- and technology-oriented perspectives.
Extensive primary research was conducted after obtaining information regarding the environmental DNA market scenario through secondary research. Several primary interviews were conducted with market experts from both the demand and supply sides across major countries of North America, Europe, Asia Pacific, South America, and RoW. Primary data was collected through questionnaires, emails, and telephonic interviews. The primary sources from the supply side included various industry experts, such as CXOs, VPs, directors from business development, marketing, research, and development teams, and key opinion leaders. Primary interviews were conducted to gather insights such as market statistics, data on revenue collected from the products and services, market breakdowns, market size estimations, market forecasting, and data triangulation. Primary research also helped in understanding the various trends related to eDNA sample type, type of solution, detection methods, and application. Stakeholders from the demand side, such as research institutions and universities, and third-party vendors, were interviewed to understand the users’ perspective on the service, and their current usage of eDNA and the outlook of their business, which will affect the overall market.

Note: The tiers of the companies are defined based on their total revenues in 2024 or 2025, as per the availability of financial data: Tier 1: Revenue >USD 1 billion; Tier 2: USD 100 million ≤ Revenue ≤ USD 1 billion; Tier 3: Revenue <USD 100 million.
|
COMPANY |
DESIGNATION |
|
Thermo Fisher |
R&D Expert |
|
EnviroDNA |
Sales Manager |
|
Illumina, Inc. |
Manager |
|
NatureMetrics |
Sales Manager |
|
Eurofins Scientific |
Marketing Manager |
To know about the assumptions considered for the study, download the pdf brochure
Both the top-down and bottom-up approaches were used to estimate and validate the total size of the environmental DNA market. These approaches were also used extensively to determine the size of various subsegments in the market. The research methodology used to estimate the market size includes the following details:

After arriving at the overall market size from the estimation process explained above, the total market was split into several segments and subsegments. The data triangulation and market breakdown procedures were employed, wherever applicable, to estimate the overall environmental DNA market and arrive at the exact statistics for all segments and subsegments. The data was triangulated by studying various factors and trends from the demand and supply sides. The market size was also validated using both the top-down and bottom-up approaches.
The environmental DNA market comprises products and services used to collect, analyze, and interpret genetic material obtained from environmental samples such as water, soil, sediment, and air.
According to the European Commission Joint Research Center, environmental DNA refers to genetic material extracted directly from environmental samples without the need to capture or observe organisms, enabling the detection and monitoring of species and ecosystems.
Similarly, the International Organization for Standardization recognizes environmental DNA-based methods as molecular approaches for biodiversity assessment and environmental monitoring, supporting standardized and reproducible detection of species from environmental samples.
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