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首页> 外文期刊>Deep-Sea Research >Molecular Data Reveal A Highly Diverse Species Flock Within Themunnopsoid Deep-sea Isopod Betamorpha Fusiformis(barnard, 1920) (crustacea: Isopoda: Asellota)in The Southern Ocean
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Molecular Data Reveal A Highly Diverse Species Flock Within Themunnopsoid Deep-sea Isopod Betamorpha Fusiformis(barnard, 1920) (crustacea: Isopoda: Asellota)in The Southern Ocean

机译:分子数据揭示了ununnopsoId深海海拔Betamorpha fusiformis的高度多样化的物种群(Barnard,1920)(甲壳树科:Isopoda:Asellota)在南海

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Based on our current knowledge about population genetics, phylogeography and speciation, we begin to understand that the deep sea harbours more species than suggested in the past. Deep-sea soft-sediment environment in particular hosts a diverse and highly endemic invertebrate fauna. Very little is known about evolutionary processes that generate this remarkable species richness, the genetic variability and spatial distribution of deep-sea animals. In this study, phylogeographic patterns and the genetic variability among eight populations of the abundant and widespread deep-sea isopod morphospecies Betamorpha fusiformis [Barnard, K.H., 1920. Contributions to the crustacean fauna of South Africa. 6. Further additions to the list of marine isopods. Annals of the South African Museum 17, 319-438] were examined. A fragment of the mitochondrial 16S rRNA gene of 50 specimens and the complete nuclear 18S rRNA gene of 7 specimens were sequenced. The molecular data reveal high levels of genetic variability of both genes between populations, giving evidence for distinct monophyletic groups of haplotypes with average p-distances ranging from 0.0470 to 0.1440 (d-distances: 0.0592-0.2850) of the 16S rDNA, and 18S rDNA p-distances ranging between 0.0032 and 0.0174 (d-distances: 0.0033-0.0195). Intermediate values are absent. Our results show that widely distributed benthic deep-sea organisms of a homogeneous phenotype can be differentiated into genetically highly divergent populations. Sympatry of some genotypes indicates the existence of cryptic speciation. Flocks of closely related but genetically distinct species probably exist in other widespread benthic deep-sea asellotes and other Peracarida. Based on existing data we hypothesize that many widespread morphospecies are complexes of cryptic biological species (patchwork hypothesis).
机译:基于我们目前关于人口遗传学,汶开地理和形态的知识,我们开始了解深海港口比过去所建议的更多种。深海软泥沙环境尤其举办多种多样的且具有高度方向的无脊椎动物动物群。非常少的是关于进化过程,产生这种显着物种丰富性,遗传变异性和深海动物的空间分布。在这项研究中,Phylogeache模式和八个群体的八个群体的遗传变异性,其丰富和广泛的深海Isopod的形态胸腔嗜酸酯型β(Barnard,K.h.)。对南非甲壳类动物群的贡献。 6.进一步添加海上海豚的申报表。审查了南非博物馆17,319-438的年份。测序了50个样本的线粒体16s rRNA基因的线粒体16s rRNA基因的片段和7个样本的完整核18s rRNA基因。分子数据显示群体之间的两个基因的高水平遗传可变性,赋予16S rDNA的0.0470至0.0470至0.0470至0.0470至0.0470至0.0470(D-距离)的单倍型单倍型单倍型的证据P距离范围为0.0032和0.0174(D-距离:0.0033-0.0195)。中间值不存在。我们的研究结果表明,广泛分布的均匀表型深海生物可以分化为遗传高度分歧的种群。一些基因型的Sympatry表明存在神秘的形态。与其他普遍的底栖深海Asellotes和其他腓高群岛的群体密切相关但基因截然不同的物种。基于现有数据,我们假设许多广泛的形态学是隐秘生物物种的复杂性(拼凑而成)。

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