4.1 Article

Atlantic sturgeon (Acipenser oxyrinchus oxyrinchus Mitchill, 1815) early life stage consumption evidenced by high-throughput DNA sequencing

期刊

JOURNAL OF APPLIED ICHTHYOLOGY
卷 37, 期 1, 页码 12-19

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HINDAWI LTD
DOI: 10.1111/jai.14153

关键词

Chesapeake Bay distinct population segment; metabarcoding; mitochondrial cytochrome c oxidase I; next generation sequencing; nuclear 18S ribosomal RNA gene; predation

资金

  1. Virginia Department of Wildlife Resources through Federal Aid Sport Fish Restoration Grant from the U.S. Fish and Wildlife Service [F-111-R]

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Predation on early life stages of Atlantic Sturgeon may hinder species recovery. DNA-based analysis revealed that ATS DNA was detected in multiple native and nonnative tidal-fresh fishes, with Common Carp and Striped Bass being the primary consumers.
Predation on early life stages of Atlantic Sturgeon Acipenser oxyrinchus oxyrinchus (ATS) may be a constraint to species recovery. Due to the difficulty in assessing consumption of early life stages with traditional diet analysis methods, we pursued an alternative DNA-based approach. We extracted total gut content from gastrointestinal tracts of 23 fish species (593 samples) within the tidal-fresh Pamunkey River fish assemblage collected from known ATS spawning grounds during prime spawning periods (September-October) in 2016. High-throughput DNA sequencing was used to amplify two markers for each sample: mitochondrial cytochrome c oxidase I (COI) and nuclear 18S ribosomal RNA gene. DNA sequences were compared to custom, SILVA 132, and NCBI databases. Results showed presence of ATS DNA in 22 samples (4%) across multiple native and nonnative tidal-fresh fishes. The highest percentage of consumption occurred in samples from Common Carp Cyprinus carpio (11.5) and Striped Bass Morone saxatilis (12.5). Six percent of Blue Catfish Ictalurus furcatus samples had target DNA. Considering there were no bony structures or tissue resembling ATS during morphological evaluation, DNA detections were likely from partially-fully digested eggs or early developing days-old larvae. High-throughput sequencing is capable of detecting consumption of ATS.

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