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DNA barcoding uncovers cryptic diversity in 50% of deep-sea Antarctic polychaetes

机译:DNA条码揭示了50%的深海南极多毛鱼类的隐秘多样性

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The Antarctic marine environment is a diverse ecosystem currently experiencing some of the fastest rates of climatic change. The documentation and management of these changes requires accurate estimates of species diversity. Recently, there has been an increased recognition of the abundance and importance of cryptic species, i.e. those that are morphologically identical but genetically distinct. This article presents the largest genetic investigation into the prevalence of cryptic polychaete species within the deep Antarctic benthos to date. We uncover cryptic diversity in 50% of the 15 morphospecies targeted through the comparison of mitochondrial DNA sequences, as well as 10 previously overlooked morphospecies, increasing the total species richness in the sample by 233%. Our ability to describe universal rules for the detection of cryptic species within polychaetes, or normalization to expected number of species based on genetic data is prevented by taxon-specific differences in phylogenetic outputs and genetic variation between and within potential cryptic species. These data provide the foundation for biogeographic and functional analysis that will provide insight into the drivers of species diversity and its role in ecosystem function.
机译:南极海洋环境是一个多样化的生态系统,目前正在经历一些最快的气候变化速度。这些变化的记录和管理要求对物种多样性进行准确的估算。最近,人们越来越认识到隐性物种的丰富性和重要性,即形态上相同但遗传上不同的隐性物种。本文介绍了迄今为止对南极深层底栖动物中隐性多毛类物种流行情况的最大遗传调查。通过比较线粒体DNA序列和15个先前被忽略的形态物种,我们发现了针对的15种形态物种中有50%的隐秘多样性,使样品中的总物种丰富度增加了233%。我们无法描述检测多毛cha内隐性物种的通用规则,或基于遗传数据将物种归一化为预期数量的能力,是由于潜在隐性物种之间和内部的系统发生输出和遗传变异的分类单元特异性差异所致。这些数据为生物地理和功能分析提供了基础,这些分析将提供对物种多样性驱动因素及其在生态系统功能中的作用的洞察力。

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