Conservation Genetics of Clinch Dace Chrosomus sp. cf. saylori
Clinch Dace (Chrosomus sp. cf. saylori) is a newly recognized and yet-undescribed species of minnow with a restricted and fragmented distribution in the upper Tennessee River basin in southwestern Virginia, USA. We collected Clinch Dace from seven streams and observed variations at nine selectively...
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Published in | Fishes Vol. 8; no. 7; p. 365 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Abstract | Clinch Dace (Chrosomus sp. cf. saylori) is a newly recognized and yet-undescribed species of minnow with a restricted and fragmented distribution in the upper Tennessee River basin in southwestern Virginia, USA. We collected Clinch Dace from seven streams and observed variations at nine selectively neutral microsatellite DNA loci to infer population genetic processes and identify units for conservation management. Bayesian cluster analysis showed that three of the seven surveyed populations were genetically distinct, while the other four populations showed signs of recent admixture. Estimated effective population sizes and m-ratios were low within most populations, suggesting loss of alleles due to recent genetic drift. Positive FIS values, high average individual inbreeding coefficients, and high degrees of inferred relatedness among individuals suggested that inbreeding is taking place in some populations. FST values were high, and analysis of molecular variance indicated genetic divergence among populations. These indicators suggest that Clinch Dace populations are subject to the genetic processes that are characteristic of small and isolated populations. |
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AbstractList | Clinch Dace (Chrosomus sp. cf. saylori) is a newly recognized and yet-undescribed species of minnow with a restricted and fragmented distribution in the upper Tennessee River basin in southwestern Virginia, USA. We collected Clinch Dace from seven streams and observed variations at nine selectively neutral microsatellite DNA loci to infer population genetic processes and identify units for conservation management. Bayesian cluster analysis showed that three of the seven surveyed populations were genetically distinct, while the other four populations showed signs of recent admixture. Estimated effective population sizes and m-ratios were low within most populations, suggesting loss of alleles due to recent genetic drift. Positive FIS values, high average individual inbreeding coefficients, and high degrees of inferred relatedness among individuals suggested that inbreeding is taking place in some populations. FST values were high, and analysis of molecular variance indicated genetic divergence among populations. These indicators suggest that Clinch Dace populations are subject to the genetic processes that are characteristic of small and isolated populations. |
Author | Orth, Donald J. Bourquin, Rebecca Moore, Michael J. Hallerman, Eric M. |
Author_xml | – sequence: 1 givenname: Rebecca surname: Bourquin fullname: Bourquin, Rebecca – sequence: 2 givenname: Michael J. surname: Moore fullname: Moore, Michael J. – sequence: 3 givenname: Donald J. orcidid: 0000-0002-9236-0147 surname: Orth fullname: Orth, Donald J. – sequence: 4 givenname: Eric M. orcidid: 0000-0002-5839-858X surname: Hallerman fullname: Hallerman, Eric M. |
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SubjectTerms | Alleles Bayesian analysis Bayesian theory Chrosomus Cluster analysis Coefficients Conservation Conservation genetics Creeks & streams DNA effective population size Endangered & extinct species Genetic analysis genetic differentiation Genetic divergence Genetic drift Genetic processes genetic variation Genetics Inbreeding management units Markov analysis microsatellite repeats Microsatellites minnows Population genetics Probability theory River basins Tennessee River variance Virginia watersheds Wildlife conservation |
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Title | Conservation Genetics of Clinch Dace Chrosomus sp. cf. saylori |
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