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Using DNA barcodes for assessing diversity in the family Hybotidae (Diptera Empidoidea)

机译:使用DNA条形码评估家庭Hybotidae(DipteraEmpidoidea)的多样性

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摘要

Empidoidea is one of the largest extant lineages of flies, but phylogenetic relationships among species of this group are poorly investigated and global diversity remains scarcely assessed. In this context, one of the most enigmatic empidoid families is Hybotidae. Within the framework of a pilot study, we barcoded 339 specimens of Old World hybotids belonging to 164 species and 22 genera (plus two Empis as outgroups) and attempted to evaluate whether patterns of intra- and interspecific divergences match the current taxonomy. We used a large sampling of diverse Hybotidae. The material came from the Palaearctic (Belgium, France, Portugal and Russian Caucasus), the Afrotropic (Democratic Republic of the Congo) and the Oriental realms (Singapore and Thailand). Thereby, we optimized lab protocols for barcoding hybotids. Although DNA barcodes generally well distinguished recognized taxa, the study also revealed a number of unexpected phenomena: e.g., undescribed taxa found within morphologically very similar or identical specimens, especially when geographic distance was large; some morphologically distinct species showed no genetic divergence; or different pattern of intraspecific divergence between populations or closely related species. Using COI sequences and simple Neighbour-Joining tree reconstructions, the monophyly of many species- and genus-level taxa was well supported, but more inclusive taxonomical levels did not receive significant bootstrap support. We conclude that in hybotids DNA barcoding might be well used to identify species, when two main constraints are considered. First, incomplete barcoding libraries hinder efficient (correct) identification. Therefore, extra efforts are needed to increase the representation of hybotids in these databases. Second, the spatial scale of sampling has to be taken into account, and especially for widespread species or species complexes with unclear taxonomy, an integrative approach has to be used to clarify species boundaries and identities.
机译:Empidoidea是现存的最大的蝇类之一,但该类物种之间的系统发育关系研究不多,而且几乎没有评估全球多样性。在这种情况下,Hybotidae是最令人迷惑的类pid科之一。在一项试点研究的框架内,我们对339种属于164个物种和22个属(加上两个Empis的亚群)的旧世界类肉瘤的标本进行了条形码编码,并尝试评估种内和种间差异的模式是否与当前分类法相符。我们使用了大量的各种Hybotidae。资料来自古埃及(比利时,法国,葡萄牙和俄罗斯高加索地区),非裔(刚果民主共和国)和东方地区(新加坡和泰国)。因此,我们优化了用于编排杂种动物的实验室协议。尽管DNA条形码通常能很好地识别公认的分类单元,但该研究还揭示了许多出乎意料的现象:例如,在形态非常相似或相同的标本中发现未描述的分类单元,尤其是在地理距离较大时;一些形态上不同的物种没有遗传差异;或种群或密切相关物种之间种内差异的不同模式。使用COI序列和简单的Neighbour-Joining树重构,可以很好地支持许多物种级别和属级别的分类单元的单系性,但是更具包容性的分类学级别没有得到明显的引导支持。我们得出的结论是,当考虑到两个主要限制因素时,在杂交虫中,DNA条形码可很好地用于识别物种。首先,不完整的条形码库阻碍了有效(正确)的识别。因此,需要付出额外的努力来增加这些数据库中混合虫的表示。其次,必须考虑采样的空间规模,尤其是对于分类学不清楚的广泛物种或物种复合体,必须采用综合方法来阐明物种的边界和身份。

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