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Developing informative microsatellite makers for non-model species using reference mapping against a model species’ genome

机译:使用针对模型物种基因组的参考图谱为非模型物种开发信息丰富的微卫星制造商

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摘要

Microsatellites have a wide range of applications from behavioral biology, evolution, to agriculture-based breeding programs. The recent progress in the next-generation sequencing technologies and the rapidly increasing number of published genomes may greatly enhance the current applications of microsatellites by turning them from anonymous to informative markers. Here we developed an approach to anchor microsatellite markers of any target species in a genome of a related model species, through which the genomic locations of the markers, along with any functional genes potentially linked to them, can be revealed. We mapped the shotgun sequence reads of a non-model rodent species Apodemus semotus against the genome of a model species, Mus musculus, and presented 24 polymorphic microsatellite markers with detailed background information for A. semotus in this study. The developed markers can be used in other rodent species, especially those that are closely related to A. semotus or M. musculus. Compared to the traditional approaches based on DNA cloning, our approach is likely to yield more loci for the same cost. This study is a timely demonstration of how a research team can efficiently generate informative (neutral or function-associated) microsatellite markers for their study species and unique biological questions.
机译:微卫星具有从行为生物学,进化到基于农业的育种计划的广泛应用。下一代测序技术的最新进展以及已公开发表的基因组数目的迅速增加,可能会将微卫星从匿名标记变为信息标记,从而极大地增强了微卫星的当前应用。在这里,我们开发了一种在相关模型物种的基因组中锚定任何目标物种的微卫星标记的方法,通过该方法可以揭示标记的基因组位置以及可能与它们相关的任何功能基因。我们将非模型啮齿动物物种姬鼠Apodemus semotus的the弹枪序列读数与模型物种Mus musculus的基因组作图,并在这项研究中提供了24种多态性微卫星标记,并提供了关于拟杆菌A. semotus的详细背景信息。所开发的标记物可用于其他啮齿动物物种,尤其是那些与A. semotus或M. musculus密切相关的啮齿动物。与基于DNA克隆的传统方法相比,我们的方法可能以相同的成本产生更多的基因座。这项研究及时地证明了研究团队如何为他们的研究物种和独特的生物学问题有效生成信息性(中性或功能相关的)微卫星标记。

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