Integrating Environmental DNA ( eDNA ) Approaches to Enhance Fisheries Advisories Through Marine Food Web Reconstruction: Opportunities and Challenges

ABSTRACT Environmental DNA (eDNA) transforms marine ecological research through non‐invasive assessment of ecosystem structure with higher taxonomic resolution. This study explores the potential of eDNA metabarcoding to enhance fisheries advisories through food web reconstruction, bridging ecological insights with ecosystem‐based fisheries management. This review elucidates the concepts of eDNA and explores its applications in food web studies and Potential Fishing Zone (PFZ) dynamics. Additionally, the review presents a bibliometric analysis of global publications related to eDNA, food web, and marine fishes, scrutinizing the co‐occurrence of these keywords in publications, highlighting the need to integrate eDNA studies to accurately derive insights into trophic structure and fisheries potential. The review identifies key gaps, challenges, and future opportunities of this technology toward the blue economy. Despite the considerable potential identified, key limitations include DNA degradation and dilution in the marine environment, along with uncertainties in long‐term predictions, posing challenges to its application in fisheries advisories. However, continued advances in sampling techniques and high‐frequency, spatiotemporally resolved observations are expected to help overcome these limitations and facilitate the effective integration of eDNA into fisheries advisory research.

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Publication Details

Journal
Fisheries Management and Ecology
Published
2026-09-28
DOI
https://doi.org/10.1111/fme.70114
Primary Topic
Environmental DNA in Biodiversity Studies
Type
article
Field-Weighted Citation Impact
0.00
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article

Integrating Environmental DNA ( eDNA ) Approaches to Enhance Fisheries Advisories Through Marine Food Web Reconstruction: Opportunities and Challenges

Sudheer Joseph, Sneha Jha, Bhagyashree Dash, T. M. Balakrishnan Nair et al.
Fisheries Management and Ecology
Environmental DNA in Biodiversity Studies
article

Integrating Environmental DNA ( eDNA ) Approaches to Enhance Fisheries Advisories Through Marine Food Web Reconstruction: Opportunities and Challenges

Sudheer Joseph, Sneha Jha, Bhagyashree Dash, T. M. Balakrishnan Nair, Dhanya M. Lal, Punmoth Kalyadan Vrinda
article en

Abstract

ABSTRACT Environmental DNA (eDNA) transforms marine ecological research through non‐invasive assessment of ecosystem structure with higher taxonomic resolution. This study explores the potential of eDNA metabarcoding to enhance fisheries advisories through food web reconstruction, bridging ecological insights with ecosystem‐based fisheries management. This review elucidates the concepts of eDNA and explores its applications in food web studies and Potential Fishing Zone (PFZ) dynamics. Additionally, the review presents a bibliometric analysis of global publications related to eDNA, food web, and marine fishes, scrutinizing the co‐occurrence of these keywords in publications, highlighting the need to integrate eDNA studies to accurately derive insights into trophic structure and fisheries potential. The review identifies key gaps, challenges, and future opportunities of this technology toward the blue economy. Despite the considerable potential identified, key limitations include DNA degradation and dilution in the marine environment, along with uncertainties in long‐term predictions, posing challenges to its application in fisheries advisories. However, continued advances in sampling techniques and high‐frequency, spatiotemporally resolved observations are expected to help overcome these limitations and facilitate the effective integration of eDNA into fisheries advisory research.

Fisheries Management and Ecology
Indian National Centre for Ocean Information Services (IN), Kerala University of Fisheries and Ocean Studies (IN), Government of India (IN), Ministry of Earth Sciences (IN)
Life below water
Openalex Percentile: Top 11%
Environmental DNA in Biodiversity Studies
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Integrating Environmental DNA ( eDNA ) Approaches to Enhance Fisheries Advisories Through Marine Food Web Reconstruction: Opportunities and Challenges — Sudheer Joseph, Sneha Jha, et al. · Fisheries Management and Ecology (2026) | TGRS Research Map | TGRS