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首页> 外文期刊>Hydrobiologia >Taxonomic implications for diaptomid copepods based on contrasting patterns of mitochondrial DNA sequence divergences in four morphospecies
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Taxonomic implications for diaptomid copepods based on contrasting patterns of mitochondrial DNA sequence divergences in four morphospecies

机译:基于四种形态学中线粒体DNA序列差异的对比模式,对diaptomid pe足类的分类学意义

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Morphological identification methods do not provide reliable and meaningful species identifications for taxa where morphological differences among distinct species are either absent or overlooked (i.e., cryptic species). For example, due to the minute nature of the morphological characters used to delineate diaptomid copepod species and the apparent potential for copepod speciation to occur with little or no morphological change (i.e., morphological stasis), morphological identifications of diaptomid species may not adequately capture their true species diversity. Here, we present results from a geographic survey of mtDNA sequences from populations across the geographic ranges of four North American diaptomid species-Leptodiaptomus minutus, Skistodiaptomus pallidus, Skistodiaptomus reighardi, and Onychodiaptomus sanguineus. Shallow mitochondrial DNA sequence divergences (maximum of 1.1%) among haplotypes of L. minutus from across its geographic range suggest that current morphological identification techniques reliably identify this species. In contrast, we found large mitochondrial DNA sequence divergences (14-22%) among populations within the currently recognized morphospecies of S. pallidus, S. reighardi, and O. sanguineus. However, pairwise sequence divergences within four distinct S. pallidus clades and within populations of S. reighardi and O. sanguineus were similarly low (maximum of 1.5%) as found within L. minutus as a whole. Thus, the S. pallidus, S. reighardi, and O. sanguineus morphospecies may be considered best as cryptic species complexes. Our study therefore indicates that morphological identifications, while sufficient for some species, likely underestimate the true species diversity of diaptomid copepods. As such, we stress the need for extensive taxonomic revision that integrates genetic, morphological, reproductive, and ecological analyses of this diverse and important group of freshwater zooplankton. Furthermore, we believe an extensive taxonomic revision will shed important insight into major questions regarding the roles of geography, phylogeny, and habitat on the frequency of cryptic species on earth.
机译:形态识别方法不能提供可靠的,有意义的物种识别,以区分或忽略不同物种之间的形态差异(即隐性物种)。例如,由于用于描绘双足类co足类物种的形态特征的微小性质以及在几乎没有形态变化(即形态停滞)的情况下发生co足类物种形成的明显潜力,双足类物种的形态学鉴定可能无法充分捕获它们的形态。真正的物种多样性。在这里,我们呈现了来自四个北美双apapmid种-细小扁豆,苍白的Skistodiaptomus pallidus,Skistodiaptomus reighardi和Onychodiaptomus sanguineus的地理范围内种群的mtDNA序列的地理调查结果。在整个地理范围内,Min。minutus单倍型的线粒体DNA序列差异较小(最大1.1%),这表明当前的形态学鉴定技术可以可靠地鉴定该物种。相比之下,我们发现在当前公认的S. pallidus,S。reighardi和O. sanguineus形态物种中,各族群之间的线粒体DNA序列差异较大(14-22%)。但是,在四个不同的S. pallidus进化枝内以及雷格哈迪链霉菌和桑格链球菌种群中,成对序列差异与整体小min链球菌的相似性很低(最大为1.5%)。因此,S。pallidus,S。reighardi和O. sanguineus形态物种可能被认为是最好的隐性物种复合物。因此,我们的研究表明,形态学鉴定虽然足以用于某些物种,但可能低估了二足mid足类动物的真实物种多样性。因此,我们强调有必要对生物分类学进行广泛的修订,以对这一多样化而重要的淡水浮游动物群进行遗传,形态,繁殖和生态分析。此外,我们认为,广泛的分类学修订将对有关地理,系统发育和栖息地对地球上隐性物种的频率的作用的主要问题提供重要的见解。

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