首页> 外文期刊>ICES Journal of Marine Science >Low allozyme heterozygosity in North Pacific and Bering Sea populations of red king crab (Paralithodes camtschaticus): adaptive specialization, population bottleneck, or metapopulation structure?
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Low allozyme heterozygosity in North Pacific and Bering Sea populations of red king crab (Paralithodes camtschaticus): adaptive specialization, population bottleneck, or metapopulation structure?

机译:在北太平洋和白令海的红帝蟹(Paralithodes camtschaticus)中,同工酶的杂合度低:适应性专业化,种群瓶颈还是种群结构?

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摘要

Populations of red king crab in the North Pacific and Bering Sea have declined in response to ocean-climate shifts and to harvesting. An understanding of how populations are geographically structured is important to the management of these depressed resources. Here, the Mendelian variability at 38 enzyme-encoding loci was surveyed in 27 samples (n = 2427) from 18 general locations. Sample heterozygosities were low, averaging He = 0.015 among samples. Weak genetic structure was detected among three groups of populations, the Bering Sea, central Gulf of Alaska, and Southeast Alaska, but without significant isolation by distance among populations. A sample from Adak Island in the western Aleutians was genetically different from the remaining samples. The lack of differentiation among populations within regions may, in part, be due to post-glacial expansions and a lack of migration-drift equilibrium and to limited statistical power imposed by low levels of polymorphism. Departures from neutrality may reflect the effects of both selective and historical factors. The low allozyme diversity in red king crab may, in part, be attributable to adaptive specialization, background selection, ice-age population bottlenecks, or metapopulation dynamics in a climatically unstable North Pacific.
机译:由于海洋气候的变化和收获,北太平洋和白令海的红帝王蟹数量有所减少。了解人口的地理结构对于管理这些低迷的资源很重要。在这里,在18个一般地点的27个样本(n = 2427)中调查了38个酶编码基因座的孟德尔变异性。样品杂合度很低,平均样品中He = 0.015。在白令海,阿拉斯加中部海湾和阿拉斯加东南部三类种群中检测到弱的遗传结构,但没有根据种群之间的距离进行显着隔离。来自阿留申群岛西部阿达克岛的一个样本与其余样本在遗传上有所不同。区域内人群之间缺乏差异的部分原因可能是由于冰川后的扩张和迁移漂移平衡的缺乏以及低水平多态性所施加的有限统计能力。偏离中立性可能反映了选择性因素和历史因素的影响。红帝王蟹的同工酶多样性低可能部分归因于气候不稳定的北太平洋地区的适应性专业化,背景选择,冰龄人口瓶颈或种群动态。

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