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首页> 外文期刊>Aquaculture >Characterization, polymorphism assessment, and database construction for microsatellites from BAC end sequences of channel catfish (Ictalurus punctatus): a resource for integration of linkage and physical maps
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Characterization, polymorphism assessment, and database construction for microsatellites from BAC end sequences of channel catfish (Ictalurus punctatus): a resource for integration of linkage and physical maps

机译:通道cat鱼BAC末端序列的微卫星的表征,多态性评估和数据库构建:整合链接和物理图谱的资源

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摘要

To apply genome-based technologies for genetic improvements using marker-assisted selection, genome research involving genetic linkage mapping and physical mapping is required, and integration of genetic and linkage maps would significantly enhance the capacities for genome research. In catfish, the major aquaculture species in the United States, linkage and physical maps have been constructed. However, integration of genetic linkage and physical maps demands large-scale, genome-wide hybridizations, or genetic mapping of polymorphic markers derived from bacterial artificial chromosome (BAC) clones whose locations are known from the physical map. In this work, we identified a large number of microsatellites from BAC end sequences of channel catfish, characterized the microsatellites, tested their utility for linkage mapping in a resource family used for genetic mapping, and constructed a web-searchable database for BAC end sequences, their linked microsatellites, microsatellite primers, PCR conditions, and polymorphic information. A total of 3652 microsatellites in 2744 distinct BACs were identified. Of these, 1100 had sufficient and complex flanking sequences for PCR primer design. We have tested 500 primer pairs and found 211 (42.2%) were polymorphic and segregating in the resource family used for genetic mapping. These microsatellites represent a major fraction of co-dominant polymorphic markers identified to date in catfish, and should be a valuable resource for genetic mapping to increase linkage map resolution, and for integration of genetic linkage and physical maps.
机译:为了应用基于基因组的技术通过标记辅助选择进行遗传改良,需要进行涉及遗传连锁图谱和物理作图的基因组研究,而遗传图谱和连锁图谱的整合将大大提高基因组研究的能力。在美国主要的水产养殖种类cat鱼中,已经建立了联系和物理图谱。但是,遗传连锁和物理图谱的整合需要大规模的全基因组杂交,或对从细菌人工染色体(BAC)克隆(其位置从物理图谱中得知)衍生的多态性标记进行遗传图谱分析。在这项工作中,我们从channel鱼的BAC末端序列中鉴定出大量微卫星,对这些微卫星进行了表征,测试了它们在遗传图谱资源家族中用于连锁作图的效用,并为BAC末端序列构建了可在网络上搜索的数据库,它们链接的微卫星,微卫星引物,PCR条件和多态信息。在2744个不同的BAC中,总共鉴定出3652个微卫星。其中,1100个具有足够复杂的侧翼序列用于PCR引物设计。我们测试了500个引物对,发现211个(42.2%)是多态性的,并且在用于遗传作图的资源家族中是隔离的。这些微卫星代表了迄今为止在date鱼中鉴定的共显性多态性标记的主要部分,并且应该是进行遗传作图以提高连锁图分辨率和遗传连锁与物理图谱整合的宝贵资源。

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