Institute of Oceanology, Chinese Academy of Sciences, Qingdao, 266071, China.
Sci Rep. 2017 May 16;7(1):1972. doi: 10.1038/s41598-017-02059-7.
Mounting evidence of cryptic species in the marine realm emphasizes the necessity to thoroughly revise our current perceptions of marine biodiversity and species distributions. Here, we used mitochondrial cytochrome oxidase subunit I (mtDNA COI) and nuclear ribosomal internal transcribed spacer (nrDNA ITS) to investigate cryptic diversity and potential hybridization in the Japanese mantis shrimp Oratosquilla oratoria in the Northwestern (NW) Pacific. Both mitochondrial and nuclear gene genealogies revealed two cryptic species in this morphotaxon, which was further confirmed by extensive population-level analyses. One cryptic species is restricted to cold waters with a distribution range corresponding to temperate affinities, while the other dwelled warm waters influenced by the Kuroshio Current. Their divergence was postulated to be attributable to the vicariant event which resulted from the isolation of the Sea of Japan during the middle Pliocene (c. 3.85 Mya, 95% HPD 2.23-6.07 Mya). Allopatric speciation was maintained by limited genetic exchange due to their habitat preferences. Furthermore, the observation of recombinant nrDNA ITS sequence and intra-individual ITS polymorphism suggested recent hybridization event of the two cryptic species occurred in sympatric areas. Our study also illustrated that the Changjiang River outflow might act as an oceanic barrier to gene flow and promoted allopatric diversification in O. oratoria species complex.
海洋领域中越来越多的隐种证据强调了彻底改变我们当前对海洋生物多样性和物种分布的看法的必要性。在这里,我们使用线粒体细胞色素氧化酶亚基 I(mtDNA COI)和核核糖体内部转录间隔区(nrDNA ITS)来研究西北太平洋的日本螳螂虾 Oratosquilla oratoria 中的隐种多样性和潜在杂交。线粒体和核基因系统发育都揭示了这个形态分类单元中的两个隐种,这进一步通过广泛的种群水平分析得到了证实。一个隐种局限于冷水,分布范围与温带有关,而另一个则栖息在受黑潮影响的温暖水域中。它们的分化被假设归因于中新世中期(约 385 万年前,95% HPD 为 2.23-6.07 万年前)日本海隔离导致的分歧事件。由于它们对栖息地的偏好,隔离导致了所有地理物种的形成,并保持了有限的遗传交流。此外,对重组 nrDNA ITS 序列和个体内 ITS 多态性的观察表明,这两个隐种最近在同域地区发生了杂交事件。我们的研究还表明,长江的流出可能起到了海洋屏障的作用,阻碍了基因流动,并促进了 O. oratoria 物种复合体的地理物种形成。