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形态学、核单核苷酸多态性和配偶选择表明,细胞色素氧化酶亚基I(COI)条形码技术将一种地中海淡水端足类动物的物种多样性高估了一个数量级。

Morphology, nuclear SNPs and mate selection reveal that COI barcoding overestimates species diversity in a Mediterranean freshwater amphipod by an order of magnitude.

作者信息

Hupało Kamil, Copilaș-Ciocianu Denis, Leese Florian, Weiss Martina

机构信息

Aquatic Ecosystem Research, Faculty of Biology, University of Duisburg-Essen, Universitätsstr. 5, Essen, 45141, Germany.

Nature Research Centre, Laboratory of Evolutionary Ecology of Hydrobionts, Akademijos 2, Vilnius, 08412, Lithuania.

出版信息

Cladistics. 2023 Apr;39(2):129-143. doi: 10.1111/cla.12520. Epub 2022 Dec 28.

Abstract

DNA sequence information has revealed many morphologically cryptic species worldwide. For animals, DNA-based assessments of species diversity usually rely on the mitochondrial cytochrome c oxidase subunit I (COI) gene. However, a growing amount of evidence indicate that mitochondrial markers alone can lead to misleading species diversity estimates due to mito-nuclear discordance. Therefore, reports of putative species based solely on mitochondrial DNA should be verified by other methods, especially in cases where COI sequences are identical for different morphospecies or where divergence within the same morphospecies is high. Freshwater amphipods are particularly interesting in this context because numerous putative cryptic species have been reported. Here, we investigated the species status of the numerous mitochondrial molecular operational taxonomic units (MOTUs) found within Echinogammarus sicilianus. We used an integrative approach combining DNA barcoding with mate selection observations, detailed morphometrics and genome-wide double digest restriction site-associated DNA sequencing (ddRAD-seq). Within a relatively small sampling area, we detected twelve COI MOTUs (divergence = 1.8-20.3%), co-occurring in syntopy at two-thirds of the investigated sites. We found that pair formation was random and there was extensive nuclear gene flow among the ten MOTUs co-occurring within the same river stretch. The four most common MOTUs were also indistinguishable with respect to functional morphology. Therefore, the evidence best fits the hypothesis of a single, yet genetically diverse, species within the main river system. The only two MOTUs sampled outside the focal area were genetically distinct at the nuclear level and may represent distinct species. Our study reveals that COI-based species delimitation can significantly overestimate species diversity, highlighting the importance of integrative taxonomy for species validation, especially in hyperdiverse complexes with syntopically occurring mitochondrial MOTUs.

摘要

DNA序列信息已揭示了全球许多形态学上难以区分的物种。对于动物而言,基于DNA的物种多样性评估通常依赖于线粒体细胞色素c氧化酶亚基I(COI)基因。然而,越来越多的证据表明,仅靠线粒体标记可能会因线粒体-核不一致而导致对物种多样性的估计产生误导。因此,仅基于线粒体DNA的假定物种报告应用其他方法进行验证,特别是在不同形态物种的COI序列相同或同一形态物种内差异很大的情况下。在这种背景下,淡水端足类动物特别有趣,因为已有大量假定的隐存物种被报道。在此,我们研究了在西西里海螯虾中发现的众多线粒体分子操作分类单元(MOTU)的物种状态。我们采用了一种综合方法,将DNA条形码与配偶选择观察、详细的形态测量学以及全基因组双酶切限制性位点关联DNA测序(ddRAD-seq)相结合。在一个相对较小的采样区域内,我们检测到12个COI MOTU(差异=1.8-20.3%),在三分之二的调查地点同域共存。我们发现配对形成是随机的,并且在同一条河流段内共存的10个MOTU之间存在广泛的核基因流动。就功能形态而言,四个最常见的MOTU也无法区分。因此,现有证据最符合主要河流系统内单一但遗传多样的物种这一假设。在重点区域之外采样的仅有的两个MOTU在核水平上具有遗传差异,可能代表不同的物种。我们的研究表明,基于COI的物种界定可能会显著高估物种多样性,突出了综合分类学在物种验证中的重要性,特别是在具有同域出现的线粒体MOTU的高度多样化复合体中。

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