A Genomic Tool to Tackle Cryptic Diversity Demonstrates the Potential for Off‐Target Use of GT ‐Seq Panels

ABSTRACT A comprehensive understanding of life history is vital to successful species conservation and management. When different life history stages are accompanied by considerable morphological or cryptic variation, such as the egg and larval phases exhibited by most fishes, genomic tools are essential for identifying species so that early‐life ecology questions can be studied. Genotyping‐in‐thousands by sequencing (GT‐seq) has recently emerged as a targeted and efficient approach for species identification. We leveraged existing genomic and transcriptomic data to develop a GT‐seq panel capable of differentiating the members of the Coregonus artedi complex, a radiation of salmonids in the Laurentian Great Lakes whose members are indistinguishable with mitochondrial DNA barcoding loci and are the focus of bi‐national conservation initiatives. Our panel of 494 loci was able to assign fishes in the C. artedi complex to species and lake. We examined cross‐amplification in other coregonines with overlapping distributions and found that congeneric Lake Whitefish ( C. clupeaformis ) cross‐amplified at 94% of loci and confamilial Round and Pygmy Whitefish ( Prosopium spp.) cross‐amplified at 42% and 38% of loci, respectively. We adapted bioinformatic probes to account for Prosopium ‐specific variants including 22 new SNPs and developed a whitelist of 428 SNPs capable of distinguishing these whitefishes. Finally, we demonstrated performance by identifying 3066 coregonine larvae and juveniles collected in spring 2019–2021 from Lake Superior. These results hold promise for future insights into the species‐specific ecology of early life coregonines and demonstrate the flexibility of GT‐seq panels, which may cross‐amplify hundreds of informative genome‐wide loci in related taxa.

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Publication Details

Journal
Molecular Ecology Resources
Published
2026-09-24
DOI
https://doi.org/10.1111/1755-0998.70203
Primary Topic
Environmental DNA in Biodiversity Studies
Type
article
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article

A Genomic Tool to Tackle Cryptic Diversity Demonstrates the Potential for Off‐Target Use of GT ‐Seq Panels

Wendylee Stott, Amanda S. Ackiss, Wesley A. Larson, Kristen M. Gruenthal et al.
Molecular Ecology Resources
Environmental DNA in Biodiversity Studies
article

A Genomic Tool to Tackle Cryptic Diversity Demonstrates the Potential for Off‐Target Use of GT ‐Seq Panels

Wendylee Stott, Amanda S. Ackiss, Wesley A. Larson, Kristen M. Gruenthal, Mark R. Vinson, Daniel L. Yule, Trevor J. Krabbenhoft, Ann J. Ropp, Joseph V. Siegel
article en

Abstract

ABSTRACT A comprehensive understanding of life history is vital to successful species conservation and management. When different life history stages are accompanied by considerable morphological or cryptic variation, such as the egg and larval phases exhibited by most fishes, genomic tools are essential for identifying species so that early‐life ecology questions can be studied. Genotyping‐in‐thousands by sequencing (GT‐seq) has recently emerged as a targeted and efficient approach for species identification. We leveraged existing genomic and transcriptomic data to develop a GT‐seq panel capable of differentiating the members of the Coregonus artedi complex, a radiation of salmonids in the Laurentian Great Lakes whose members are indistinguishable with mitochondrial DNA barcoding loci and are the focus of bi‐national conservation initiatives. Our panel of 494 loci was able to assign fishes in the C. artedi complex to species and lake. We examined cross‐amplification in other coregonines with overlapping distributions and found that congeneric Lake Whitefish ( C. clupeaformis ) cross‐amplified at 94% of loci and confamilial Round and Pygmy Whitefish ( Prosopium spp.) cross‐amplified at 42% and 38% of loci, respectively. We adapted bioinformatic probes to account for Prosopium ‐specific variants including 22 new SNPs and developed a whitelist of 428 SNPs capable of distinguishing these whitefishes. Finally, we demonstrated performance by identifying 3066 coregonine larvae and juveniles collected in spring 2019–2021 from Lake Superior. These results hold promise for future insights into the species‐specific ecology of early life coregonines and demonstrate the flexibility of GT‐seq panels, which may cross‐amplify hundreds of informative genome‐wide loci in related taxa.

Molecular Ecology ResourcesVol. 26(7)
Alaska Department of Fish and Game (US), NOAA National Marine Fisheries Service (US), United States Geological Survey (US), Fisheries and Oceans Canada (CA), University of Wisconsin–Stevens Point (US), Great Lakes Science Center (US), NOAA National Marine Fisheries Service Alaska Fisheries Science Center (US), State University of New York at Oswego (US), University at Buffalo, State University of New York (US)
Life in Land
Openalex Percentile: Top 11%
Environmental DNA in Biodiversity Studies
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