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首页> 外文期刊>Molecular ecology resources >Microsatellite loci for dreissenid mussels (Mollusca: Bivalvia: Dreissenidae) and relatives: Markers for assessing exotic and native populations
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Microsatellite loci for dreissenid mussels (Mollusca: Bivalvia: Dreissenidae) and relatives: Markers for assessing exotic and native populations

机译:纤毛贻贝(软体动物:双壳纲:Dreissenidae)和亲戚的微卫星基因座:评估外来和本地种群的标记

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摘要

We developed and tested 14 new polymorphic microsatellite loci for dreissenid mussels, including the two species that have invaded many freshwater habitats in Eurasia and North America, where they cause serious industrial fouling damage and ecological alterations. These new loci will aid our understanding of their genetic patterns in invasive populations as well as throughout their native Ponto-Caspian distributions. Eight new loci for the zebra mussel Dreissena polymorpha polymorpha and six for the quagga mussel D. rostriformis bugensis were compared with new results from six previously published loci to generate a robust molecular toolkit for dreissenid mussels and their relatives. Taxa tested include D. p. polymorpha, D. r. bugensis, D. r. grimmi, D. presbensis, the 'living fossil'Congeria kusceri, and the dark false mussel Mytilopsis leucophaeata (the latter also is invasive). Overall, most of the 24 zebra mussel (N=583) and 13 quagga mussel (N=269) population samples conformed to Hardy-Weinberg equilibrium expectations for the new loci following sequential Bonferroni correction. The 11 loci (eight new, three previously published) evaluated for D. p. polymorpha averaged 35.1 alleles and 0.72 mean observed heterozygosity per locus, and 25.3 and 0.75 for the nine loci (six new, three previously published) developed for D. r. bugensis. All but three of these loci successfully amplified the other species of Dreissena, and all but one also amplified Congeria and Mytilopsis. All species and populations tested were significantly divergent using the microsatellite data, with neighbour-joining trees reflecting their evolutionary relationships; our results reveal broad utility for resolving their biogeographic, evolutionary, population and ecological patterns.
机译:我们开发并测试了14个新的多态微卫星基因座,用于类青苔贻贝,其中包括两个已经入侵欧亚大陆和北美许多淡水生境的物种,它们在这里造成了严重的工业污损和生态变化。这些新的基因座将有助于我们了解其在入侵种群中的遗传模式,以及他们在本-里海地区的整个分布。比较了斑马贻贝Dreissena polymorpha polymorpha的八个新位点和斑马贻贝D. rostriformis bugensis的六个新位点,与先前出版的六个位点的新结果进行了比较,从而生成了一种强大的分子分析工具,用于研究苔藓类贻贝及其亲属。测试的分类单元包括D。多形体布吉斯河grimmi,D。presbensis,“活化石” Congeria kusceri和深色假贻贝Mytilopsis leucophaeata(后者也是侵入性的)。总体而言,在连续Bonferroni校正之后,大多数24斑马贻贝(N = 583)和13夸格贻贝(N = 269)种群样本符合新位点的Hardy-Weinberg平衡期望。对11个位点(八个新位点,三个以前发表的位点)进行了D.p.评估。多形体平均每个位点有35.1个等位基因和0.72个平均观察到的杂合度,为D. r。开发的9个基因座(6个新基因,以前有3个)平均25.3和0.75。虫虫。除三个位点外,所有位点均成功扩增了德氏菌的其他物种,除一个位点外,其余均扩增了弓形虫和Mytilopsis。使用微卫星数据测试的所有物种和种群都存在明显差异,相邻的树木反映了它们的进化关系;我们的结果揭示了解决其生物地理,进化,种群和生态格局的广泛用途。

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