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Molecular Cytogenetics and Gene Mapping in Sheep (Ovis aries, 2n=54)

机译:绵羊的分子细胞遗传学和基因定位(Ovis aries,2n = 54)

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The development of a completely annotated sheep genome sequence is a key need for understanding the phylogenetic relationships and genetic diversity among the many different sheep breeds worldwide and for identifying genes controlling economically and physiologically important traits. The ovine genome sequence assembly will be crucial for developing optimized breeding programs based on highly productive, healthy sheep phenotypes that are adapted to modern breeding and production conditions. Scientists and breeders around the globe have been contributing to this goal by generating genomic and cDNA libraries, performing genome-wide and trait-associated analyses of polymorphism, expression analysis, genome sequencing, and by developing virtual and physical comparative maps. The International Sheep Genomics Consortium (ISGC), an informal network of sheep genomics researchers, is playing a major role in coordinating many of these activities. In addition to serving as an essential tool for monitoring chromosome abnormalities in specific sheep populations, ovine molecular cytogenetics provides physical anchors which link and order genome regions, such as sequence contigs, genes and polymorphic DNA markers to ovine chromosomes. Likewise, molecular cytogenetics can contribute to the process of defining evolutionary breakpoints between related species. The selective expansion of the sheep cytogenetic map, using loci to connect maps and identify chromosome bands, can substantially contribute to improving the quality of the annotated sheep genome sequence and will also accelerate its assembly. Furthermore, identifying major morphological chromosome anomalies and micro-rearrangements, such as gene duplications or deletions, that might occur between different sheep breeds and other Ovis species will also be important to understand the diversity of sheep chromosome structure and its implications for cross-breeding. To date, 566 loci have been assigned to specific chromosome regions in sheep and the new cytogenetic map is presented as part of this review. This review will also summarize the current cytogenomic status of the sheep genome, describe current activities in the sheep cytogenomics research sector, and will discuss the cytogenomics data in context with other major sheep genomics projects. Copyright (C) 2009 S. Karger AG, Basel
机译:完整注释绵羊基因组序列的开发是理解全球许多不同绵羊品种之间的系统发生关系和遗传多样性以及鉴定控制经济和生理重要性状的基因的关键需求。绵羊基因组序列的组装对于根据适应现代育种和生产条件的高产,健康的绵羊表型开发优化的育种程序至关重要。全球的科学家和育种者通过生成基因组和cDNA文库,进行多态性,全基因组和性状相关的多态性分析,表达分析,基因组测序以及开发虚拟和物理比较图谱,为实现这一目标做出了贡献。国际绵羊基因组学联盟(ISGC)是绵羊基因组学研究人员的非正式网络,在协调许多此类活动中发挥着重要作用。绵羊分子细胞遗传学除了作为监视特定绵羊种群中染色体异常的重要工具外,还提供物理锚,这些锚将基因组区域(例如序列重叠群,基因和多态性DNA标记)链接和排序到绵羊染色体上。同样,分子细胞遗传学可以有助于定义相关物种之间的进化断点的过程。使用基因座连接图谱并鉴定染色体条带,绵羊细胞遗传图谱的选择性扩增可大大有助于提高带注释的绵羊基因组序列的质量,也将加速其组装。此外,识别可能在不同绵羊品种和其他Ovis物种之间发生的主要形态染色体异常和微观重排,例如基因重复或缺失,对于理解绵羊染色体结构的多样性及其对杂交的影响也很重要。迄今为止,已经将566个基因座分配给绵羊中的特定染色体区域,新的细胞遗传图谱作为本综述的一部分介绍。这篇综述还将总结绵羊基因组的当前细胞基因组状况,描述绵羊细胞基因组学研究领域的当前活动,并将在其他主要绵羊基因组学项目的背景下讨论细胞基因组学数据。版权所有(C)2009 S.Karger AG,巴塞尔

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