Product Code: GVR-4-68040-544-4
DNA Barcoding Services Market Growth & Trends:
The global DNA barcoding services market size is expected to reach USD 357.5 million by 2030 and is projected to grow at 11.47% CAGR from 2025 to 2030, according to a new report by Grand View Research, Inc. The market has experienced considerable growth due to its increasing application across various industries such as agriculture, food safety, environmental conservation, and pharmaceuticals.
One of the key drivers for this market is the rising demand for precise species identification in food safety and quality control. As consumers demand more transparency in food sourcing, especially in seafood and herbal products, DNA barcoding has become an essential tool for detecting food fraud, ensuring authenticity, and preventing contamination. This trend is further amplified by the increasing regulatory pressure to maintain stringent food safety standards, which drives the adoption of DNA barcoding services across global food industries.
The impact of COVID-19 on the DNA barcoding services industry has been multifaceted. During the pandemic, there was a surge in demand for accurate diagnostic tools and research on viral pathogens. DNA barcoding services became increasingly valuable in the identification of novel pathogens and the monitoring of emerging infectious diseases. In addition, with the rise of remote work and research, many institutions and businesses began relying more on bioinformatics platforms and online DNA sequencing services, further driving the adoption of DNA barcoding. Despite initial disruptions to research activities, the pandemic highlighted the importance of genomic technologies in both health and environmental sectors, fueling continued investment in DNA barcoding services.
The growing importance of environmental monitoring and biodiversity conservation has also significantly contributed to the demand for DNA barcoding services. Governments and conservation organizations are increasingly using DNA barcoding for ecological studies and species tracking, particularly in biodiversity hotspots. These services enable researchers to monitor endangered species and identify invasive species with greater accuracy, supporting conservation efforts. The ability to track genetic diversity in various ecosystems using DNA barcoding is crucial in understanding the impacts of climate change and human activities on global biodiversity, making it an essential tool for environmental protection.
In addition, the ongoing advancements in sequencing technologies have bolstered the growth of the market. New methods, such as next-generation sequencing (NGS) and high-throughput sequencing, have significantly improved the accuracy, efficiency, and affordability of DNA barcoding. These technological advancements have allowed for large-scale biodiversity studies, better pathogen detection, and more precise tracking of agricultural pests and diseases. The combination of cutting-edge technologies and a growing need for genomic data in various industries ensures that DNA barcoding services remain integral to research and commercial applications, positioning the market for continued expansion in the post-pandemic era.
DNA Barcoding Services Market Report Highlights:
- By type, the microbial DNA barcoding services segment accounted for the largest revenue share of 43.99%. The market is driven by increasing demand for accurate microbial identification in various sectors such as healthcare, agriculture, and environmental research.
- By method, the long-read sequencing segment is expected to register the fastest CAGR during the forecast period. The integration of long-read sequencing with AI-driven analysis tools is improving data interpretation accelerating discoveries in ecological research, food safety, and forensic applications.
- By application, the product authentication and quality control segment is expected to register the fastestCAGR during the forecast period. The market is driven by the rising demand for traceability solutions in global trade, boosting the adoption of DNA barcoding to authenticate high-value goods such as seafood, meat products, and luxury items growth.
- By end use, the pharmaceutical & biotechnology companies segment dominated the market and accounted for the largest revenue share in 2024. The market is driven by continuous advancements in sequencing technologies and bioinformatics tools have enhanced the speed, accuracy, and cost-efficiency of DNA barcoding services, making them increasingly attractive to pharmaceutical and biotech firms.
- North America held the largest revenue share globally at 42.75% in 2024. The growing interest in biodiversity conservation and environmental monitoring also contributes to market growth as researchers utilize DNA barcoding for ecosystem studies. In addition, advancements in genomic technologies and regulatory pressure to maintain high standards in agriculture and pharmaceuticals are key factors. The COVID-19 pandemic further accelerated the adoption of DNA barcoding in pathogen detection and diagnostics, reinforcing its value in public health.
Table of Contents
Chapter 1. Methodology and Scope
- 1.1. Market Segmentation & Scope
- 1.2. Segment Definitions
- 1.2.1. Type
- 1.2.2. Method
- 1.2.3. Application
- 1.2.4. End Use
- 1.3. Research Methodology
- 1.4. Information Procurement
- 1.5. Information or Data Analysis
- 1.5.1. Data analysis models
- 1.6. Market Formulation & Validation
- 1.7. List of Secondary Sources
- 1.8. List of Primary Sources
- 1.9. Objectives
Chapter 2. Executive Summary
- 2.1. Market Outlook
- 2.2. Segment Outlook
- 2.3. Competitive Insights
Chapter 3. DNA Barcoding Services Market Variables, Trends & Scope
- 3.1. Market Lineage Outlook
- 3.1.1. Parent market outlook
- 3.1.2. Related/ancillary market outlook
- 3.2. Market Dynamics
- 3.2.1. Market driver analysis
- 3.2.1.1. Rising Demand for Food Safety and Authentication
- 3.2.1.2. Advancements in Sequencing Technologies
- 3.2.2. Market restraint analysis
- 3.2.2.1. High Cost of DNA Barcoding Services
- 3.2.2.2. Data Interpretation Challenges
- 3.3. DNA Barcoding Services Market Analysis Tools
- 3.3.1. Industry Analysis - Porter's
- 3.3.2. PESTEL Analysis
- 3.3.3. COVID-19 Impact Analysis
Chapter 4. DNA Barcoding Services Market: Type Estimates & Trend Analysis
- 4.1. Type Segment Dashboard
- 4.2. Global DNA Barcoding Services Market Type Movement Analysis
- 4.3. Global DNA Barcoding Services Market Size & Trend Analysis, by Type, 2018 to 2030 (USD Million)
- 4.4. Plant DNA Barcoding Services
- 4.4.1. Plant DNA Barcoding Services Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 4.5. Animal DNA Barcoding Services
- 4.5.1. Animal DNA Barcoding Services Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 4.6. Microbial DNA Barcoding Services
- 4.6.1. Microbial DNA Barcoding Services Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
Chapter 5. DNA Barcoding Services Market: Method Estimates & Trend Analysis
- 5.1. Method Segment Dashboard
- 5.2. Global DNA Barcoding Services Market Method Movement Analysis
- 5.3. Global DNA Barcoding Services Market Size & Trend Analysis, by Method, 2018 to 2030 (USD Million)
- 5.4. Sanger Sequencing
- 5.4.1. Sanger Sequencing Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 5.5. Short Read Sequencing
- 5.5.1. Short Read Sequencing Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 5.6. Long Read Sequencing
- 5.6.1. Long Read Sequencing Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
Chapter 6. DNA Barcoding Services Market: Application Estimates & Trend Analysis
- 6.1. Application Segment Dashboard
- 6.2. Global DNA Barcoding Services Market Application Movement Analysis
- 6.3. Global DNA Barcoding Services Market Size & Trend Analysis, by Application, 2018 to 2030 (USD Million)
- 6.4. Pathogen Identification and Monitoring
- 6.4.1. Pathogen Identification and Monitoring Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 6.5. Product Authentication and Quality Control
- 6.5.1. Product Authentication and Quality Control Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 6.6. Biodiversity and Conservation Monitoring
- 6.6.1. Biodiversity and Conservation Monitoring Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 6.7. Forensic and Legal Investigations
- 6.7.1. Forensic and Legal Investigations Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
- 6.8. Others
- 6.8.1. Others Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD Million)
Chapter 7. DNA Barcoding Services Market: End Use Estimates & Trend Analysis
- 7.1. End Use Segment Dashboard
- 7.2. Global DNA Barcoding Services Market End Use Movement Analysis
- 7.3. Global DNA Barcoding Services Market Size & Trend Analysis, by End Use, 2018 to 2030 (USD Million)
- 7.4. Pharmaceutical & Biotechnology Companies
- 7.4.1. Pharmaceutical & Biotechnology Companies Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD million)
- 7.5. Agriculture and Food Industry
- 7.5.1. Agriculture and Food Industry Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD million)
- 7.6. Academic & Research Institutes
- 7.6.1. Academic & Research Institutes Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD million)
- 7.7. Others
- 7.7.1. Others Market Size & Forecasts and Trend Analyses, 2018 to 2030 (USD million)
Chapter 8. DNA Barcoding Services Market: Regional Estimates & Trend Analysis
- 8.1. Regional Market Share Analysis, 2024 & 2030
- 8.2. Regional Market Dashboard
- 8.3. North America
- 8.3.1. U.S.
- 8.3.1.1. Key country dynamics
- 8.3.1.2. Regulatory framework
- 8.3.1.3. Competitive scenario
- 8.3.1.4. U.S. market estimates and forecasts 2018 to 2030 (USD Million)
- 8.3.2. Canada
- 8.3.2.1. Key country dynamics
- 8.3.2.2. Regulatory framework
- 8.3.2.3. Competitive scenario
- 8.3.2.4. Canada market estimates and forecasts 2018 to 2030 (USD Million)
- 8.3.3. Mexico
- 8.3.3.1. Key country dynamics
- 8.3.3.2. Regulatory framework
- 8.3.3.3. Competitive scenario
- 8.3.3.4. Mexico market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4. Europe
- 8.4.1. UK
- 8.4.1.1. Key country dynamics
- 8.4.1.2. Regulatory framework
- 8.4.1.3. Competitive scenario
- 8.4.1.4. UK market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.2. Germany
- 8.4.2.1. Key country dynamics
- 8.4.2.2. Regulatory framework
- 8.4.2.3. Competitive scenario
- 8.4.2.4. Germany market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.3. France
- 8.4.3.1. Key country dynamics
- 8.4.3.2. Regulatory framework
- 8.4.3.3. Competitive scenario
- 8.4.3.4. France market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.4. Italy
- 8.4.4.1. Key country dynamics
- 8.4.4.2. Regulatory framework
- 8.4.4.3. Competitive scenario
- 8.4.4.4. Italy market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.5. Spain
- 8.4.5.1. Key country dynamics
- 8.4.5.2. Regulatory framework
- 8.4.5.3. Competitive scenario
- 8.4.5.4. Spain market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.6. Norway
- 8.4.6.1. Key country dynamics
- 8.4.6.2. Regulatory framework
- 8.4.6.3. Competitive scenario
- 8.4.6.4. Norway market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.7. Sweden
- 8.4.7.1. Key country dynamics
- 8.4.7.2. Regulatory framework
- 8.4.7.3. Competitive scenario
- 8.4.7.4. Sweden market estimates and forecasts 2018 to 2030 (USD Million)
- 8.4.8. Denmark
- 8.4.8.1. Key country dynamics
- 8.4.8.2. Regulatory framework
- 8.4.8.3. Competitive scenario
- 8.4.8.4. Denmark market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5. Asia Pacific
- 8.5.1. Japan
- 8.5.1.1. Key country dynamics
- 8.5.1.2. Regulatory framework
- 8.5.1.3. Competitive scenario
- 8.5.1.4. Japan market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5.2. China
- 8.5.2.1. Key country dynamics
- 8.5.2.2. Regulatory framework
- 8.5.2.3. Competitive scenario
- 8.5.2.4. China market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5.3. India
- 8.5.3.1. Key country dynamics
- 8.5.3.2. Regulatory framework
- 8.5.3.3. Competitive scenario
- 8.5.3.4. India market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5.4. Australia
- 8.5.4.1. Key country dynamics
- 8.5.4.2. Regulatory framework
- 8.5.4.3. Competitive scenario
- 8.5.4.4. Australia market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5.5. South Korea
- 8.5.5.1. Key country dynamics
- 8.5.5.2. Regulatory framework
- 8.5.5.3. Competitive scenario
- 8.5.5.4. South Korea market estimates and forecasts 2018 to 2030 (USD Million)
- 8.5.6. Thailand
- 8.5.6.1. Key country dynamics
- 8.5.6.2. Regulatory framework
- 8.5.6.3. Competitive scenario
- 8.5.6.4. Thailand market estimates and forecasts 2018 to 2030 (USD Million)
- 8.6. Latin America
- 8.6.1. Brazil
- 8.6.1.1. Key country dynamics
- 8.6.1.2. Regulatory framework
- 8.6.1.3. Competitive scenario
- 8.6.1.4. Brazil market estimates and forecasts 2018 to 2030 (USD Million)
- 8.6.2. Argentina
- 8.6.2.1. Key country dynamics
- 8.6.2.2. Regulatory framework
- 8.6.2.3. Competitive scenario
- 8.6.2.4. Argentina market estimates and forecasts 2018 to 2030 (USD Million)
- 8.7. MEA
- 8.7.1. South Africa
- 8.7.1.1. Key country dynamics
- 8.7.1.2. Regulatory framework
- 8.7.1.3. Competitive scenario
- 8.7.1.4. South Africa market estimates and forecasts 2018 to 2030 (USD Million)
- 8.7.2. Saudi Arabia
- 8.7.2.1. Key country dynamics
- 8.7.2.2. Regulatory framework
- 8.7.2.3. Competitive scenario
- 8.7.2.4. Saudi Arabia market estimates and forecasts 2018 to 2030 (USD Million)
- 8.7.3. UAE
- 8.7.3.1. Key country dynamics
- 8.7.3.2. Regulatory framework
- 8.7.3.3. Competitive scenario
- 8.7.3.4. UAE market estimates and forecasts 2018 to 2030 (USD Million)
- 8.7.4. Kuwait
- 8.7.4.1. Key country dynamics
- 8.7.4.2. Regulatory framework
- 8.7.4.3. Competitive scenario
- 8.7.4.4. Kuwait market estimates and forecasts 2018 to 2030 (USD Million)
Chapter 9. Competitive Landscape
- 9.1. Company/Competition Categorization
- 9.2. Strategy Mapping
- 9.3. Company Market Position Analysis, 2024
- 9.4. Company Profiles/Listing
- 9.4.1. Eurofins Genomics
- 9.4.1.1. Company overview
- 9.4.1.2. Financial performance
- 9.4.1.3. Product benchmarking
- 9.4.1.4. Strategic initiatives
- 9.4.2. CD Genomics
- 9.4.2.1. Company overview
- 9.4.2.2. Financial performance
- 9.4.2.3. Product benchmarking
- 9.4.2.4. Strategic initiatives
- 9.4.3. BIOSERVE
- 9.4.3.1. Company overview
- 9.4.3.2. Financial performance
- 9.4.3.3. Product benchmarking
- 9.4.3.4. Strategic initiatives
- 9.4.4. Illumina, Inc.
- 9.4.4.1. Company overview
- 9.4.4.2. Financial performance
- 9.4.4.3. Product benchmarking
- 9.4.4.4. Strategic initiatives
- 9.4.5. PacBio
- 9.4.5.1. Company overview
- 9.4.5.2. Financial performance
- 9.4.5.3. Product benchmarking
- 9.4.5.4. Strategic initiatives
- 9.4.6. Oxford Nanopore Technologies
- 9.4.6.1. Company overview
- 9.4.6.2. Financial performance
- 9.4.6.3. Product benchmarking
- 9.4.6.4. Strategic initiatives
- 9.4.7. AllGenetics & Biology SL
- 9.4.7.1. Company overview
- 9.4.7.2. Financial performance
- 9.4.7.3. Product benchmarking
- 9.4.7.4. Strategic initiatives
- 9.4.8. 1st BASE
- 9.4.8.1. Company overview
- 9.4.8.2. Financial performance
- 9.4.8.3. Product benchmarking
- 9.4.8.4. Strategic initiatives
- 9.4.9. Bento Bioworks Ltd
- 9.4.9.1. Company overview
- 9.4.9.2. Financial performance
- 9.4.9.3. Product benchmarking
- 9.4.9.4. Strategic initiatives
- 9.4.10. Genetika Science
- 9.4.10.1. Company overview
- 9.4.10.2. Financial performance
- 9.4.10.3. Product benchmarking
- 9.4.10.4. Strategic initiatives