首页> 美国卫生研究院文献>Ecology and Evolution >Comparative population structure of two dominant species Shinkaia crosnieri (Munidopsidae: Shinkaia) and Bathymodiolus platifrons (Mytilidae: Bathymodiolus) inhabiting both deep‐sea vent and cold seep inferred from mitochondrial multi‐genes
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Comparative population structure of two dominant species Shinkaia crosnieri (Munidopsidae: Shinkaia) and Bathymodiolus platifrons (Mytilidae: Bathymodiolus) inhabiting both deep‐sea vent and cold seep inferred from mitochondrial multi‐genes

机译:两种优势种的比较种群结构分别是克氏菌新天蛾(Shinkaia crosnieri)(鼠疫科:Shinkaia)和巴斯德氏菌(Bathymodiolus platifrons)(Mytilidae:Bathymodiolus)它们都生活在由线粒体多基因推断出的深海喷口和冷渗中。

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摘要

Deep‐sea hydrothermal vents and cold seeps, limited environments without sunlight, are two types of extreme habitat for marine organisms. The differences between vents and cold seeps may facilitate genetic isolation and produce population heterogeneity. However, information on such chemosynthetic fauna taxa is rare, especially regarding the population diversity of species inhabiting both vents and cold seeps. In this study, three mitochondrial DNA fragments (the cytochrome c oxidase submit I (COI), cytochrome b gene (Cytb), and 16S) were concatenated as a mitochondrial concatenated dataset (MCD) to examine the genetic diversity, population structure, and demographic history of Shinkaia crosnieri and Bathymodiolus platifrons. The genetic diversity differences between vent and seep populations were statistically significant for S. crosnieri but not for B. platifrons. S. crosnieri showed less gene flow and higher levels of genetic differentiation between the vent and seep populations than B. platifrons. In addition, the results suggest that all the B. platifrons populations, but only the S. crosnieri vent populations, passed through a recent expansion or bottleneck. Therefore, different population distribution patterns for the two dominant species were detected; a pattern of population differentiation for S. crosnieri and a homogeneity pattern for B. platifrons. These different population distribution patterns were related to both extrinsic restrictive factors and intrinsic factors. Based on the fact that the two species were collected in almost identical or adjacent sampling sites, we speculated that the primary factors underlying the differences in the population distribution patterns were intrinsic. The historical demographics, dispersal ability, and the tolerance level of environmental heterogeneity are most likely responsible for the different distribution patterns.
机译:深海热液喷口和冷渗漏,无阳光的有限环境,是海洋生物的两种极端栖息地。通风孔和冷渗漏之间的差异可能有助于遗传隔离并产生种群异质性。但是,关于这种化学合成动物类群的信息很少,特别是关于居住在通风口和冷渗漏中的物种的种群多样性。在这项研究中,将三个线粒体DNA片段(细胞色素C氧化酶呈递I(COI),细胞色素b基因(Cytb)和16S)串联起来,作为线粒体串联数据集(MCD),以检查遗传多样性,种群结构和人口统计学克氏菌和巴氏梭菌的历史。 Crosnieri链霉菌的通风孔和渗水种群之间的遗传多样性差异具有统计学意义,而B.platifrons差异不显着。 S.crosnieri与B.platifrons相比,泄殖孔和渗水种群之间的基因流更少,遗传分化水平更高。此外,结果表明,所有的B.platifrons种群,但只有S.crosnieri vent种群,都经历了最近的扩张或瓶颈。因此,发现了两种优势种的不同种群分布模式。 crosnieri的种群分化模式和B.platifrons的同质性模式。这些不同的人口分布模式与外部限制因素和内在因素都相关。基于两个物种是在几乎相同或相邻的采样点收集的事实,我们推测构成种群分布模式差异的主要因素是内在的。历史人口统计学,分散能力和环境异质性的容忍度很可能是造成不同分布模式的原因。

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