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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Genetic markers in blue crabs (Callinectes sapidus) Ⅰ: Isolation and characterization of microsatellite markers
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Genetic markers in blue crabs (Callinectes sapidus) Ⅰ: Isolation and characterization of microsatellite markers

机译:蓝蟹遗传标记Ⅰ:微卫星标记的分离与鉴定

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Given the commercial and ecological importance of the dwindling Chesapeake Bay blue crab (Callinectes sapidus) fishery, there is a surprising scarcity of information concerning the molecular ecology of this species. The few studies published to date are based on allozyme data and indicate a single, panmictic population along the Atlantic coast. To address this shortcoming, we have initiated the development of genetic markers from both the nuclear and mitochondrial genomes of the blue crab. To this end, we performed two separate screenings of the blue crab nuclear genome using both dinucleotide and tetranucleotide repeat oligonucleotide probes and the highly efficient "FIASCO" (Fast Isolation by AFLP of Sequences Containing repeats) methodology. Our screenings produced 34 microsatellite loci. Genotyping of a captive-mated pair of blue crabs and 30 of their offspring at 10 of our isolated loci shows that eight loci are inherited in true Mendelian fashion, with two loci being monomorphic. Additionally, we genotyped 102 blue crab DNA samples collected from different parts of the Chesapeake Bay with the same 10 loci. The results of these screenings, including heterozygosities ranging between 0.26 and 0.97, indicate that a majority of the loci isolated in our screen will ultimately be useful markers for population genetic studies. The molecular tools described in this paper will be used, in tandem with differences in the blue crab mitochondrial genome [Place, A.R., Feng, X., Steven, C.R., Fourcade, H.M., Boore, J.L., 2005. Genetic markers in blue crabs (Callinectes sapidus) Ⅱ: Complete mitochondrial DNA sequence and characterization of variation. J. Exp. Mar. Biol. Ecol. 319, 15-27], to investigate potential genetic substructure within the Chesapeake Bay and across the entire Atlantic Coast/Gulf Coast range of the blue crab, as well as monitor the results of restocking hatchery-reared crabs into the Bay.
机译:考虑到切萨皮克湾青蟹(Callinectes sapidus)渔业的商业和生态重要性,有关该物种分子生态学的信息令人惊讶地稀缺。迄今发表的几项研究是基于同工酶数据的,表明大西洋沿岸有一个单一的恐慌种群。为了解决这个缺点,我们从蓝蟹的核和线粒体基因组中启动了遗传标记的开发。为此,我们使用二核苷酸和四核苷酸重复寡核苷酸探针以及高效的“ FIASCO”(通过AFLP快速分离包含重复序列的序列)方法对蓝蟹核基因组进行了两次单独的筛选。我们的筛选产生了34个微卫星基因座。在我们孤立的10个位点上,一对圈养的蓝蟹及其后代中的30个的基因分型显示,八个位点以真正的孟德尔方式遗传,其中两个位点是单态的。此外,我们对从切萨皮克湾不同地区收集的102个蓝蟹DNA样本进行了基因分型,并带有相同的10个基因座。这些筛选的结果(包括0.26至0.97之间的杂合性)表明,我们筛选中分离出的大多数基因座最终将成为群体遗传研究的有用标记。本文中描述的分子工具将与蓝蟹线粒体基因组中的差异配合使用[Place,AR,Feng,X.,Steven,CR,Fourcade,HM,Boore,JL,2005。蓝蟹的遗传标记sa(Callinectes sapidus)Ⅱ:线粒体DNA的完整序列及其变异特征。 J. Exp。 Mar. Biol。 Ecol。 319,15-27],以调查切萨皮克湾内以及整个蓝蟹在大西洋海岸/墨西哥湾沿岸范围内的潜在遗传亚结构,并监测将孵化场饲养的螃蟹放回海湾的结果。

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