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首页> 外文期刊>Zoologica Scripta: An International Journal of Evolutionary Zoology >Entangled Aeglidae (Decapoda, Anomura): Additional evidence for cryptic species
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Entangled Aeglidae (Decapoda, Anomura): Additional evidence for cryptic species

机译:纠缠aleglidae(黛比达,anomura):隐秘物种的额外证据

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摘要

Cryptic species are a major challenge for morphologically based species identification. Molecular approaches to species delimitation can be a valuable tool to provide preliminary taxonomic hypotheses and significantly complements morphological taxonomy. In South America, the freshwater crabs of the genus Aegla have sparked much interest as they are key species in the often-endangered freshwater ecosystems and themselves are often considered endangered species. Morphological similarity among Aegla species is not always positively correlated with genetic relatedness and growing evidence suggests that several putative single taxa are actually assemblages of cryptic species. We coupled broad geographically sampling (Argentina, Brazil and Uruguay) with multilocus (COI, 16S and ANT) phylogenies to investigate the diversity of Aegla uruguayana. Our species delimitation analyses suggested that 19 aeglid populations form a well-supported clade, although individuals from 10 populations possibly represent a complex of cryptic species. The significant amount of cryptic diversity found in aeglids seem to rely on several factors, including habitat fragmentation, life history features, morphological stasis, convergent evolution and recent divergence. The search for new diagnostic characters and the description of the cryptic species that remain unnamed will probably be the next challenge for this unique group of crustaceans.
机译:隐蔽物种是基于形态学的物种识别的一个主要挑战。物种划分的分子方法是提供初步分类学假设的有价值的工具,并对形态学分类学进行了重要补充。在南美洲,Aegla属淡水蟹引起了人们的极大兴趣,因为它们是经常濒临灭绝的淡水生态系统中的关键物种,而且它们本身也经常被认为是濒危物种。Aegla物种之间的形态相似性并不总是与遗传相关性呈正相关,越来越多的证据表明,几个假定的单一分类群实际上是隐蔽物种的集合。我们将广泛的地理取样(阿根廷、巴西和乌拉圭)与多位点(COI、16S和蚂蚁)系统发育相结合,以调查乌拉圭埃格拉的多样性。我们的物种划分分析表明,19个aeglid种群形成了一个支持良好的分支,尽管10个种群的个体可能代表了一个复杂的隐蔽物种。在aeglids中发现的大量隐蔽多样性似乎取决于几个因素,包括栖息地破碎化、生活史特征、形态停滞、趋同进化和最近的分化。对于这一独特的甲壳类动物群来说,寻找新的诊断特征和描述尚未命名的神秘物种可能将是下一个挑战。

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