AI Article Synopsis

  • Round goby is an invasive fish affecting the Great Lakes, while Johnny darter is a native species that coexists with it, and both are studied for genomic variation in Lower Michigan.
  • Researchers analyzed mitochondrial gene ND2 across 17 localities to see if populations of these species differed between the eastern and western basins of the Great Lakes.
  • Findings showed that round goby populations were genetically homogenous and lacked significant historical structure, while Johnny darter populations displayed recent differentiation, indicating that local factors influence genetic variation more than historical ones.

Article Abstract

Round goby () is an invasive fish present in all five Great Lakes and is becoming increasingly common in their tributaries. Johnny darter () is a native species that often coexists with . In this work, historic factors are addressed as a source of genomic variation in study populations of these species. To do this, patterns of variation in the mitochondrial gene NADH dehydrogenase subunit 2 (ND2) were characterized for both species throughout Lower Michigan. Populations of and were sampled from 17 localities representing both eastern and western basins of Lower Michigan to test the hypothesis that populations differ between the eastern and western basins of the Great Lakes. populations were largely homogenous with no significant differences detected among populations or between the eastern and western basins. Additionally, exhibited no evidence of overarching historical genetic structure, consistent with the recent invasion and rapid expansion of this species. exhibited significant differentiation among local populations; however, similarity among mtDNA haplotypes indicated that differences among populations are recent, suggesting that local forces are a more important factor in shaping patterns of variation than historical factors. Contrary to predictions, there were no significant differences detected between the eastern and western basins of the Great Lakes; however, construction of a neighbor-joining tree with estimates revealed clustering of populations by basin with some anomalies. These anomalies may be the result of recent stream capture events facilitating gene flow between the two basins.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11525069PMC
http://dx.doi.org/10.1002/ece3.70232DOI Listing

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