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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Population genetic structure in the redefined vermilion rockfish (Sebastes miniatus) indicates limited larval dispersal and reveals natural management units
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Population genetic structure in the redefined vermilion rockfish (Sebastes miniatus) indicates limited larval dispersal and reveals natural management units

机译:重新定义的朱红色石鱼(Sebastes miniatus)中的种群遗传结构表明幼虫扩散有限,并揭示了自然管理单位

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Recent studies have revealed that the vermilion rockfish Sebastes miniatus is a cryptic species pair. The splitting of this species impacts stock size estimates and draws attention to the unintended consequences of current management policies. Differences in exploitation level between the species necessitated an evaluation of population structure and connectivity among regional management segments of the fishery. Analysis of gene flow and calculations of larval dispersal values were accomplished using 782 bp of DNA sequence data from the mitochondrial cytochrome b gene of 684 vermilion rockfish sampled from 16 sites between Kyuquot Sound, Canada, and San Quintin, Mexico. Significant genetic heterogeneity was found among sample sites (Phi(ST) = 0.0742, p < 0.001 and F-ST = 0.0899, p < 0.001). Isolation by distance analysis produced a significant correlation, suggesting low average larval dispersal distance. Analysis of molecular variance showed significant partitioning of genetic variance across the biogeographic boundary at Point Conception (Phi(CT) = 0.0923, p < 0.001 and F-CT = 0.0135, p < 0.001) with additional genetic barriers found at Cape Mendocino, Punta Colnett, Santa Monica Bay, and along the coast of Washington. These genetic barriers conform to oceanographic compartments previously proposed for the California Current Ecological Province and suggest natural management units for this species.
机译:最近的研究表明,朱红色的石鱼小鲈鱼(Sebastes miniatus)是一种神秘物种。该物种的分裂会影响种群规模估计,并引起人们对当前管理政策意外后果的关注。由于物种之间的开发水平不同,因此需要对种群结构和渔业区域管理部门之间的连通性进行评估。使用来自加拿大Kyuquot Sound和墨西哥San Quintin之间16个地点的684个朱红色石鱼的线粒体细胞色素b基因的782 bp DNA序列数据,完成了基因流的分析和幼虫扩散值的计算。在样本位点之间发现显着的遗传异质性(Phi(ST)= 0.0742,p <0.001和F-ST = 0.0899,p <0.001)。通过距离分析隔离产生显着相关性,表明平均幼虫扩散距离较低。分子方差分析表明,在点构想点上跨生物地理边界的遗传方差有明显划分(Phi(CT)= 0.0923,p <0.001和F-CT = 0.0135,p <0.001),在蓬塔·科尔内特的门多西诺角发现了其他遗传障碍,圣莫尼卡湾和华盛顿海岸。这些遗传障碍符合先前为加利福尼亚当前生态省提议的海洋区划,并建议了该物种的自然管理单位。

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