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The hypervariable domain of the mitochondrial control region in Atlantic spiny lobsters and its potential as a marker for investigating phylogeographic structuring

机译:大西洋刺龙虾中线粒体控制区的高变域及其作为研究地理结构的标志物的潜力

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摘要

Atlantic spiny lobsters support major fisheries in northeastern Brazilian waters and in the Caribbean Sea. To avoid reduction in diversity and elimination of distinct stocks, understanding their population dynamics, including structuring of populations and genetic diversity, is critical. We here explore the potential of using the hypervariable domain in the control region of the mitochondrial DNA as a genetic marker to characterize population subdivision in spiny lobsters, using Panulirus argus as the species model. The primers designed on the neighboring conserved genes have amplified the entire control region (approx. 780 bases) of P. argus and other closely related species. Average nucleotide and haplotype diversity within P. argus were found to be high, and population structuring was hypothesized. The data suggest a division of P. argus into genetically different phylogeographic groups. The hypervariable domain seems to be useful for determining genetic differentiation of geographically distinct stocks of P. argus and other Atlantic spiny lobsters.
机译:大西洋多刺龙虾为巴西东北部水域和加勒比海的主要渔业提供了支持。为了避免减少多样性和消除独特种群,了解其种群动态,包括种群结构和遗传多样性,至关重要。我们在这里探索使用线粒体阿古斯作为物种模型,利用线粒体DNA控制区域中的高变域作为遗传标记来表征刺龙虾种群细分的潜力。在邻近的保守基因上设计的引物已扩增了阿氏假单胞菌和其他密切相关物种的整个控制区(约780个碱基)。发现阿氏假单胞菌的平均核苷酸和单倍型多样性较高,并推测了种群结构。数据表明,阿古斯丁杆菌可分为遗传上不同的系统地理学组。高变域似乎对确定地理上不同的阿古斯。和其他大西洋刺龙虾种群的遗传分化很有用。

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