Laboratory of Evolutionary Ecology of Hydrobionts, Nature Research Centre, 08412, Vilnius, Lithuania.
Department of Invertebrate Zoology and Hydrobiology, Faculty of Biology and Environmental Protection, University of Lodz, 90-237, Lodz, Poland.
Sci Rep. 2022 Jul 5;12(1):11332. doi: 10.1038/s41598-022-15442-w.
The Ponto-Caspian region is an endemicity hotspot that harbours several crustacean radiations, among which amphipods are the most diverse. These poorly known species are severely threatened in their native range, while at the same time they are invading European inland waters with significant ecological consequences. A proper taxonomic knowledge of this fauna is paramount for its conservation within the native region and monitoring outside of it. Here, we assemble a DNA barcode reference library for nearly 60% of all known Ponto-Caspian amphipod species. We use several methods to define molecular operational taxonomic units (MOTUs), based on two mitochondrial markers (COI and 16S), and assess their congruence with current species-level taxonomy based on morphology. Depending on the method, we find that 54-69% of species had congruent morpho-molecular boundaries. The cases of incongruence resulted from lumping distinct morphospecies into a single MOTU (7-27%), splitting a morphospecies into several MOTUs (4-28%), or both (4-11%). MOTUs defined by distance-based methods without a priori divergence thresholds showed the highest congruence with morphological taxonomy. These results indicate that DNA barcoding is valuable for clarifying the diversity of Ponto-Caspian amphipods, but reveals that extensive work is needed to resolve taxonomic uncertainties. Our study advances the DNA barcode reference library for the European aquatic biota, paving the way towards improved taxonomic knowledge needed to enhance monitoring and conservation efforts.
里海-黑海区域是一个寄生虫热点,拥有多种甲壳类动物辐射,其中端足目是最多样化的。这些鲜为人知的物种在其原生范围内受到严重威胁,同时它们也在入侵欧洲内陆水域,对生态系统产生重大影响。对这些动物群进行适当的分类学知识是保护其在原生地区和监测其在原生地区以外的关键。在这里,我们为近 60%的已知里海-黑海端足目物种建立了 DNA 条码参考文库。我们使用两种线粒体标记物(COI 和 16S),结合几种方法来定义分子操作分类单元(MOTUs),并根据形态学评估它们与当前物种分类学的一致性。根据不同的方法,我们发现 54-69%的物种的形态-分子边界是一致的。不一致的情况是由于将不同的形态种合并为一个 MOTU(7-27%)、将一个形态种分为几个 MOTU(4-28%)或两者兼而有之(4-11%)。没有先验分歧阈值的基于距离的方法定义的 MOTUs 与形态分类学具有最高的一致性。这些结果表明 DNA 条形码对于阐明里海-黑海端足目动物的多样性是有价值的,但也表明需要进行广泛的工作来解决分类学上的不确定性。我们的研究推进了欧洲水生生物 DNA 条码参考文库,为提高监测和保护工作所需的分类学知识铺平了道路。