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首页> 外文期刊>Ecology and Evolution >From population connectivity to the art of striping Russian dolls: the lessons from Pocillopora corals
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From population connectivity to the art of striping Russian dolls: the lessons from Pocillopora corals

机译:从人口连通性到俄罗斯娃娃脱衣舞的艺术:Pocillopora珊瑚礁的教训

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摘要

Here, we examined the genetic variability in the coral genus Pocillopora , in particular within the Primary Species Hypothesis PSH09, identified by Gélin, Postaire, Fauvelot and Magalon (2017) using species delimitation methods [also named Pocillopora eydouxi/meandrina complex sensu , Schmidt‐Roach, Miller, Lundgren, & Andreakis (2014)] and which was found to split into three secondary species hypotheses (SSH09a, SSH09b, and SSH09c) according to assignment tests using multi‐locus genotypes (13 microsatellites). From a large sampling (2,507 colonies) achieved in three marine provinces [Western Indian Ocean (WIO), Tropical Southwestern Pacific (TSP), and Southeast Polynesia (SEP)], genetic structuring analysis conducted with two clustering analyses ( Structure and DAPC) using 13 microsatellites revealed that SSH09a was restricted to the WIO while SSH09b and SSH09c were almost exclusively in the TSP and SEP. More surprisingly, each SSH split into two to three genetically differentiated clusters, found in sympatry at the reef scale, leading to a pattern of nested hierarchical levels (PSH??SSH??cluster), each level hiding highly differentiated genetic groups. Thus, rather than structured populations within a single species, these three SSHs, and even the eight clusters, likely represent distinct genetic lineages engaged in a speciation process or real species. The issue is now to understand which hierarchical level (SSH, cluster, or even below) corresponds to the species one. Several hypotheses are discussed on the processes leading to this pattern of mixed clusters in sympatry, evoking formation of reproductive barriers, either by allopatric speciation or habitat selection.
机译:在这里,我们研究了珊瑚属(Pocillopora)的遗传变异性,特别是在初级物种假设PSH09中,该物种由Gélin,Postaire,Fauvelot和Magalon(2017)使用物种定界方法确定[也称为Pocillopora eydouxi / meandrina complex sensu,Schmidt- Roach,Miller,Lundgren和Andreakis(2014)],根据使用多基因位基因型(13个微卫星)的分配测试,发现该假说可分为三个次要物种假设(SSH09a,SSH09b和SSH09c)。从三个海洋省[西印度洋(WIO),热带西南太平洋(TSP)和东南波里尼西亚(SEP)]获得的大量样本(2,507个殖民地)中,使用两个聚类分析(结构和DAPC)进行了遗传结构分析, 13个微卫星显示SSH09a仅限于WIO,而SSH09b和SSH09c几乎仅在TSP和SEP中。更令人惊讶的是,每个SSH分成两个到三个遗传分化的簇,在珊瑚礁规模的共生体中发现,从而导致了一个嵌套的层次级别(PSH→SSH→簇)的模式,每个级别都隐藏着高度分化的遗传群体。因此,这三个SSH,甚至八个集群,而不是单个物种中的结构化种群,可能代表了参与物种形成过程或真实物种的独特遗传谱系。现在的问题是要了解哪个层次级别(SSH,群集,甚至更低)对应于一个物种。讨论了几种假说,这些假说导致了交联中混合簇的这种模式,并通过异源物种形成或生境选择引发了生殖屏障的形成。

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