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Examination of saffron cod Eleginus gracilis (Tilesius 1810) population genetic structure

机译:藏红花Codeginus Gracilis(Tilesius 1810)人口遗传结构

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摘要

Annual ice retreat in the northern Bering and Chukchi seas, which has occurred earlier in the past decades resulting in longer ice-free seasons and warmer ocean temperatures, is producing a cascade of ecological effects, and may open Arctic waters to commercial fishing and oil exploration. Baseline knowledge of population structure of a species is critical to developing strategies for management and conservation. There is little information for the saffron cod (Eleginus gracilis), an abundant forage fish inhabiting the coastlines of the North Pacific and Arctic oceans. We examined saffron cod population genetic structure with data from nine microsatellite loci designed to describe the genetic compositions of and variation among 40 collections of saffron cod from four regions (northwestern Alaska, Gulf of Alaska, western Pacific Ocean, and Gulf of Anadyr). The northwestern Alaska collections (Norton Sound and Chukchi Sea) exhibited little genetic divergence. The Gulf of Anadyr collection differed from other regions but was most similar to those of northwestern Alaska. The collections from the western Pacific Ocean (Sakhalin Island and Hokkaido Island) differed genetically, but not to the extent they did from other regions. Gulf of Alaska collections (Kodiak Island and Prince William Sound) comprised a lineage that was distinct from all of the other areas, including the geographically adjacent northwestern Alaska collections. The absence of genetic structure in northwestern Alaska probably reflects their recent expansion into previously unavailable habitat that became available after the Last Glacial Maximum (similar to 16,000 years ago). Tracking and predicting the likely expansion of the eurythermal saffron cod may have parallels to its postglacial colonization.
机译:在过去几十年里,北部波动和楚科海的一年一度的冰水撤退,导致冰雪季节和温暖的海洋温度较长,正在产生级联的生态影响,并可能为商业捕捞和石油勘探开放北极水域。物种人口结构的基线知识对于制定管理和保护战略至关重要。藏红花鳕鱼(Eleginus Gracilis)几乎没有信息,居住在北太平洋和北冰洋海岸线的丰富的牧草鱼。我们用九个微卫星基因座的数据检查了藏红花鳕鱼群遗传结构,旨在描述来自四个地区的40个藏红花鳕鱼的遗传组成和变化的遗传组成和变异,阿拉斯加州阿拉斯加湾,西太平洋和阿纳迪瓦湾的湾)。阿拉斯加州西北地区收藏(Norton Sound和Chukchi Sea)表现出较少的遗传分歧。 Anadyr系列的海湾与其他地区不同,但与阿拉斯加西北部最相似。西太平洋(Sakhalin Island和Hokkaido Island)的收藏率不同,但不是他们从其他地区所做的范围。阿拉斯加收藏湾(Kodiak Island和威廉王子声音)包括与其他地区不同的血统,包括地理位置相邻的西北地区的阿拉斯加集合。阿拉斯加西北部的遗传结构可能反映了他们最近的扩张进入以前不可用的栖息地,在最后的冰川最大值之后(类似于16,000年前)。跟踪和预测Eurythermal Saffron Cod的可能扩张可能与其后掩抗定植的相似之处。

著录项

  • 来源
    《Polar biology》 |2020年第8期|963-977|共15页
  • 作者单位

    Univ Alaska Fairbanks Coll Fisheries & Ocean Sci 17101 Pt Lena Loop Rd Juneau AK 99821 USA;

    Univ Alaska Fairbanks Coll Fisheries & Ocean Sci 17101 Pt Lena Loop Rd Juneau AK 99821 USA;

    Univ Alaska Fairbanks Coll Fisheries & Ocean Sci 17101 Pt Lena Loop Rd Juneau AK 99821 USA;

    Russian Acad Sci AV Zhirmunsky Inst Marine Biol Vladivostok 69041 Russia;

    Fisheries & Oceans Hakodate Hakodate Cephalopod Res Ctr Benten Cho 20-5 Hakodate Hokkaido 0400051 Japan;

    Univ Alaska Fairbanks Coll Fisheries & Ocean Sci 17101 Pt Lena Loop Rd Juneau AK 99821 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Saffron cod; Population genetics; Microsatellites; Postglacial colonization; Gulf of alaska; Chukchi sea;

    机译:藏红花鳕鱼;人口遗传学;微卫星;后闪烁的殖民化;阿拉斯加湾;Chukchi海;

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