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April 27, 2026Canadian Journal of Fisheries and Aquatic Sciences1 citations

A case for multi-method assessments: Detection probabilities of nearshore fish with eDNA and seine nets vary by functional traits

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LDLia K. DomkeKLKimberly J. LedgerJWJessica M. Whitney

Key Points

  • The study aims to evaluate how sampling methods influence the detection of fish species based on their functional traits.
  • Analyzed 35 sites across southeast Alaska using eDNA metabarcoding and beach seines.
  • Assessed species detection based on functional traits like scale type, schooling behavior, and position-in-water-column.
  • Applied occupancy modeling to estimate detection probabilities for each method.
  • Detection probability with eDNA for species with deciduous scales was 27 times greater than for species with non-deciduous scales.
  • Species with plates had lower detection rates with eDNA but higher odds of detection using beach seines.
  • Found significant interactions between functional traits and detection methods that influence species distribution assessments.

Abstract

Ecological studies aim to understand species distributions, yet the sampling methods affect which species are detected and may be influenced by species traits. Detection of marine fishes based on species traits have been studied using traditional sampling methods, but such studies have generally not extended to environmental DNA (eDNA). Here, we investigated which functional species traits (scale type, schooling behavior, and position-in-water-column) are detected by eDNA metabarcoding and beach seines in nearshore eelgrass, mixed eelgrass, and understory kelp habitats. Using data from 35 sites across southeast Alaska, we applied occupancy modeling to estimate detection of species traits by each method. Detection probability with eDNA was 27 times greater for the species with deciduous scales (Clupea pallasii) compared to species with non-deciduous scales, and lower for species with plates (rather than scales). Conversely, species with plates showed greater odds of detection with beach seines. Given the novelty of eDNA sampling, quantifying interactions between detection and functional traits will be important to accurately characterize species distributions across marine habitats.

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Cite This Study

Domke et al. (2026) studied this question.

synapsesocial.com/papers/69eefdd1fede9185760d49d4https://doi.org/10.1139/cjfas-2025-0425
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