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Cryptic Genetic Diversity Is Paramount in Small-Bodied Amphibians of the Genus Euparkerella (Anura: Craugastoridae) Endemic to the Brazilian Atlantic Forest

机译:隐秘的遗传多样性在巴西大西洋森林特有的Euparkerella属小物种两栖动物中极为重要(阿努拉:Craugastoridae)。

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摘要

Morphological similarity associated to restricted distributions and low dispersal abilities make the direct developing Terrarana frogs of the genus Euparkerella a good model for examining diversification processes. We here infer phylogenetic relationships within the genus Euparkerella, using DNA sequence data from one mitochondrial and four nuclear genes coupled with traditional Bayesian phylogenetic reconstruction approaches and more recent coalescent methods of species tree inference. We also used Bayesian clustering analysis and a recent Bayesian coalescent-based approach specifically to infer species delimitation. the analysis of 39 individuals from the four known Euparkerella species uncovered high levels of genetic diversity, especially within the two previously morphologically-defined E. cochranae and E. brasiliensis. Within these species, the gene trees at five independent loci and trees from combined data (concatenated dataset and the species tree) uncovered six deeply diverged and geographically coherent evolutionary units, which may have diverged between the Miocene and the Pleistocene. These six units were also uncovered in the Bayesian clustering analysis, and supported by the Bayesian coalescent-based species delimitation (BPP), and Genealogical Sorting Index (GSI), providing thus strong evidence for underestimation of the current levels of diversity within Euparkerella. the cryptic diversity now uncovered opens new opportunities to examine the origins and maintenance of microendemism in the context of spatial heterogeneity and/or human induced fragmentation of the highly threatened Brazilian Atlantic forest hotspot.
机译:与有限分布和低分散能力相关的形态相似性使Euperperella属的直接发育的Terrarana青蛙成为检查多样化过程的良好模型。我们在这里使用来自一个线粒体和四个核基因的DNA序列数据,结合传统的贝叶斯系统发育重建方法和最新的物种树推断方法,推断Euparkerella属内的系统发育关系。我们还使用贝叶斯聚类分析和最近基于贝叶斯聚结的方法来专门推断物种划界。对来自四种已知的大金藻属物种的39个个体进行的分析发现,遗传多样性水平很高,尤其是在两个先前形态学定义的大肠杆菌(E. cochranae)和巴西大肠杆菌(E. brasiliensis)内。在这些物种中,位于五个独立基因座的基因树和来自组合数据(级联数据集和物种树)的树揭示了六个深度分散且在地理上连贯的进化单元,这些单元可能在中新世和更新世之间分化了。在贝叶斯聚类分析中还发现了这六个单元,并得到了贝叶斯基于聚结的物种定界(BPP)和家谱排序指数(GSI)的支持,因此为低估了Euparkerella当前的多样性水平提供了有力的证据。现在发现的神秘多样性为在高度受威胁的巴西大西洋森林热点地区的空间异质性和/或人类诱发的碎片化背景下检查微地方病的起源和维持提供了新的机会。

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