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首页> 外文期刊>Freshwater Biology >The signal crayfish is not a single species: cryptic diversity and invasions in the Pacific Northwest range of Pacifastacus leniusculus.
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The signal crayfish is not a single species: cryptic diversity and invasions in the Pacific Northwest range of Pacifastacus leniusculus.

机译:信号小龙虾不是一个单一的物种:隐匿的多样性和入侵在太平洋西北地区的细角Pacifastacus leniusculus。

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We used historical sources, morphology-based taxonomy and mtDNA sequence data to address questions about the signal crayfish Pacifastacus leniusculus. These included evaluating unrecognised cryptic diversity and investigating the extent to which P. leniusculus may have been introduced within its presumed native range in the Pacific Northwest region of North America. Our study builds and expands on Pacific Northwest phylogeographic knowledge, particularly related to patterns of glacial refugia for freshwater species. Extensive collections (824 specimens) from British Columbia (Canada), Idaho, Nevada, Oregon and Washington (United States) were used to characterise P. leniusculus at the mitochondrial 16 S rRNA gene. Genetic groups within the species were elucidated by phylogenetics and AMOVA; evolutionary relationships within the most common and diverse group were investigated using a statistical parsimony haplotype network, a nested AMOVA, and tests of isolation by distance. Morphological measurements were used to relate findings of molecular analyses to three historically recognised P. leniusculus subspecies and characterise cryptic diversity by morphology. We found substantial cryptic diversity, with three groups highly distinct from P. leniusculus in discrete geographic regions: the Chehalis River glacial refugium, Central Oregon and the Okanagan Plateau. Disjunct distributions of P. leniusculus relative to these cryptic groups and known patterns of Pleistocene glaciation and landscape evolution cast doubt on whether P. leniusculus is native to some areas such as coastal drainages of northern Washington and southern British Columbia. Morphological traits previously used to characterise P. leniusculus subspecies still persist but may be incapable of distinguishing P. leniusculus from newly discovered cryptic groups. Cryptic diversity found within P. leniusculus highlights the pressing need for a thorough investigation of the genus Pacifastacus using data based on more extensive gene and taxon sampling. It also warrants conservation attention, as introductions of P. leniusculus within the Pacific Northwest may carry risks of hybridisation and introgression for cryptic groups. Owing to high genetic diversity and limited dispersal capacity relative to more vagile organisms like freshwater fish, crayfish of the genus Pacifastacus offer powerful potential insights into the geological history and phylogeography of the Pacific Northwest region. Finally, by shedding light on the long-neglected native range of P. leniusculus, our results should also better inform our understanding of potential source populations for, and the ecology of, this important invasive species in regions including Europe, Japan and elsewhere in North America.
机译:我们使用历史资料,基于形态学的分类学和mtDNA序列数据来解决有关信号小龙虾Pacifastacus leniusculus的问题。这些措施包括评估无法识别的隐秘多样性,并研究在美国北美洲西北太平洋地区假定的本地范围内引入角斑假单胞菌的程度。我们的研究建立和扩展了西北太平洋的植物地理学知识,特别是与淡水物种的冰川避难所有关的模式。来自不列颠哥伦比亚省(加拿大),爱达荷州,内华达州,俄勒冈州和华盛顿州(美国)的大量样本(824个标本)被用来表征线粒体16 S rRNA基因上的角斑假单胞菌。通过系统进化和AMOVA阐明了物种内的遗传群体。使用统计简约单倍型网络,嵌套的AMOVA和按距离隔离测试,研究了最常见和最多样化的群体内的进化关系。形态学测量被用于将分子分析的发现与三个历史上公认的假单胞菌亚种相关联,并通过形态学表征隐性多样性。我们发现了显着的神秘多样性,在不连续的地理区域中,有三个与斑节天牛高度不同的群体:Chehalis河冰川避难所,俄勒冈州中部和Okanagan高原。与这些隐性群体有关的分离的斑节菜和更新世冰川形成和景观演化的已知模式使人们怀疑斑节菜是否原产于某些地区,例如华盛顿北部和不列颠哥伦比亚省南部的沿海排水系统。以前用于表征斑节对虾亚种的形态学特征仍然存在,但可能无法将斑节对虾与新发现的隐性群体区分开。在斑节对虾中发现的隐性多样性凸显了迫切需要使用基于更广泛的基因和分类群采样的数据来彻底调查Pacifastacus属。它也值得保护,因为在西北太平洋地区引入的假单胞菌可能会带来杂交和隐性群体渗入的风险。由于较高的遗传多样性和相对于诸如淡水鱼等易变生物的分散能力有限,Pacifastacus属的小龙虾为西北太平洋地区的地质历史和系统地理学提供了强大的潜在见解。最后,通过阐明长期被忽视的小叶青冈的本地范围,我们的结果还应该更好地帮助我们了解该重要入侵物种在欧洲,日本和北部其他地区的潜在来源种群及其生态。美国。

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