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Good species behaving badly: Non-monophyly of black fly sibling species in the Simulium arcticum complex (Diptera: Simuliidae)

机译:表现欠佳的好物种:白ul(Simulium arcticum)复合体(双翅目:Simuliidae)中的黑蝇兄弟姐妹物种非单性

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Mitochondrial based phylogenetic reconstructions often show deviations from species-level monophyly. We used the Simulium arcticum species complex (Diptera: Simuliidae) as a model system for interpreting non-monophyly in light of chromosomal data supporting species status of siblings. For cytogenetic identification of morphologically indistinguishable black fly sibling species, larvae must be preserved in Carnoy's solution, a fixative known to degrade DNA. Consequently, we reconstructed phylogenetic relationships based on 12S, COII, cyt b, and ITS-1 gene sequences obtained from larvae sampled from presumed taxon-pure localities. As species composition at 'taxon-pure' sites may have changed at the time of sampling, we performed a second study that aimed to: (1) assess phylogenetic relationships among cytologically verified members of the S. arcticum species complex using COI and COII gene sequences; (2) determine whether useable genetic information could be gleaned from Carnoy's fixed specimens; and (3) determine the extent to which Carnoy's fixative degrades DNA over time. We consistently obtained genetic data from material stored in Carnoy's solution for two to three. months. Genetic analysis of samples fixed in Carnoy's solution for up to six. years indicates that larvae preserved for a maximum of five years can provide useable information for molecular analysis. Our preliminary and cytologically confirmed phylogenetic analyses demonstrate that mitochondrial DNA fails to resolve species-level monophyly of chromosomally distinct S. arcticum taxa. As results of analyses based on cytologically verified larvae mirror those of our preliminary study, we rule out imperfect taxonomy as the reason for species-level non-monophyly. Although we cannot confidently reject either inadequate phylogenetic information or incomplete lineage sorting as the cause of non-monophyly, the sharing of alleles between sympatric siblings suggests introgressive hybridization between taxa. We conclude that the patterns present in the S. arcticum phylogeny likely represent the initial stages of chromosome based sibling speciation.
机译:基于线粒体的系统发育重建通常显示出与物种水平的单性背离。我们使用Simulium arcticum物种复合体(Diptera:Simuliidae)作为一个模型系统,根据支持同胞物种状态的染色体数据来解释非单一物种。为了对形态上无法区分的黑蝇兄弟姐妹物种进行细胞遗传学鉴定,必须将幼虫保存在Carnoy溶液中,该溶液是已知会降解DNA的固定剂。因此,我们基于12S,COII,cyt b和ITS-1基因序列重建了系统发育关系,这些基因是从纯分类单元中取样的幼虫获得的。由于“分类纯”位点的物种组成可能在采样时发生了变化,因此我们进行了第二项研究,旨在:(1)使用COI和COII基因评估在北极S. arcticum种复合体中经过细胞学验证的成员之间的系统发生关系顺序; (2)确定是否可以从Carnoy的固定样本中收集有用的遗传信息; (3)确定Carnoy固定剂随时间降解DNA的程度。我们始终从Carnoy解决方案中存储的材料中获得2到3个遗传数据。几个月。在Carnoy溶液中固定的样品的遗传分析最多可进行六个。年表明幼虫最多可以保存五年,可以为分子分析提供有用的信息。我们初步的和细胞学上证实的系统发育分析表明,线粒体DNA无法解析染色体不同的北极链球菌分类群的物种水平单系。由于基于细胞学验证的幼虫的分析结果与我们的初步研究相类似,因此我们排除了分类学上不完善的原因,因为其是物种层面上非专一性的原因。尽管我们不能放心地拒绝系统发育信息不足或谱系排序不完整作为非单亲性的原因,但同胞兄弟姐妹之间等位基因的共享提示了分类群之间的渐进杂交。我们得出的结论是,目前存在于北极链球菌系统发育中的模式可能代表了基于染色体的兄弟姐妹物种形成的初始阶段。

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