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首页> 外文期刊>Heredity: An International Journal of Genetics >Three-year monitoring of genetic diversity reveals a micro-connectivity pattern and local recruitment in the broadcast marine species Paracentrotus lividus
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Three-year monitoring of genetic diversity reveals a micro-connectivity pattern and local recruitment in the broadcast marine species Paracentrotus lividus

机译:遗传多样性的为期三年监测揭示了广播海洋物种Paracertrotus Lividus的微连接模式和本地招聘

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摘要

In conservation and management of marine biological resources, a knowledge of connectivity is necessary to understand how local populations are naturally replenished by the arrival of new recruits from source populations. At small geographical scales, species experiencing moderate to long pelagic larval phases are mostly genetically homogeneous, which hinders inferences about local connectivity. Recent studies demonstrated that assessing genetic relatedness and kinship could provide information about local connectivity in populations with high levels of gene flow. Here, we were interested in deciphering the structure and connectivity of populations of the sea urchin Paracentrotus lividus, by monitoring populations at 11 localities distributed along a 225-km coast-line in the south-eastern French Mediterranean Sea. Using 12 microsatellite loci, we found a weak but significant genetic differentiation and observed a transient genetic differentiation among locations within temporal cohorts, without any correlation with the distance between locations, interpreted as unexplainable chaotic genetic patchiness. Among temporal cohorts, the more related individuals were mainly found within locations and the observed local differentiation (FST) correlated with the proportion of kin within locations, suggesting that larvae dispersed cohesively. Specifically, we could also reveal that populations flanking Cape Sicie were influenced by eastern populations and that local recruitment was a frequent occurrence. Overall, our results contribute to the growing number of studies showing that connectivity can be reliably assessed at a fine spatial scale even in genetically homogenous populations.
机译:在保护和管理海洋生物资源中,有必要了解连接的连接,了解当地人群从源人群的新招募的到来自然是如何补充的。在小地理标度下,体验中度至长的古典幼虫阶段的物种主要是遗传均匀,阻碍了局部连接的推论。最近的研究表明,评估遗传相关性和亲属关系可以提供有关具有高水平基因流量的群体的局部连通性的信息。在这里,我们有兴趣通过在沿着东南法国地中海的225公里海岸线分发的11个地方的11个地方监测11个地区的人口来解密海胆帕拉斯特鲁特鲁托鲁托斯群岛的结构和连通性。使用12个微卫星基因座,我们发现弱而显着的遗传分化,观察到时间队列内的位置之间的瞬态遗传分化,没有与位置之间的距离的任何相关性,解释为无法解释的混沌遗传膜。在颞群中,越多的相关人员主要发现在地点内,观察到的局部分化(FST)与位置内的jin比例相关,表明幼虫分散在内。具体而言,我们还可以揭示侧翼佩德西的人口受到东部群体的影响,当地招聘是经常发生的。总体而言,我们的结果有助于越来越多的研究,表明即使在遗传均匀种群中,也可以以精细的空间量表可靠地评估连接。

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