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首页> 外文期刊>BMC Genomics >Comparative genomic analysis of catfish linkage group 8 reveals two homologous chromosomes in zebrafish and other teleosts with extensive inter-chromosomal rearrangements
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Comparative genomic analysis of catfish linkage group 8 reveals two homologous chromosomes in zebrafish and other teleosts with extensive inter-chromosomal rearrangements

机译:fish鱼连锁群8的比较基因组分析发现斑马鱼和其他硬骨鱼中的两个同源染色体具有广泛的染色体间重排

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Background Comparative genomics is a powerful tool to transfer genomic information from model species to related non-model species. Channel catfish (Ictalurus punctatus) is the primary aquaculture species in the United States. Its existing genome resources such as genomic sequences generated from next generation sequencing, BAC end sequences (BES), physical maps, linkage maps, and integrated linkage and physical maps using BES-associated markers provide a platform for comparative genomic analysis between catfish and other model teleost fish species. This study aimed to gain understanding of genome organizations and similarities among catfish and several sequenced teleost genomes using linkage group 8 (LG8) as a pilot study. Results With existing genome resources, 287 unique genes were identified in LG8. Comparative genome analysis indicated that most of these 287 genes on catfish LG8 are located on two homologous chromosomes of zebrafish, medaka, stickleback, and three chromosomes of green-spotted pufferfish. Large numbers of conserved syntenies were identified. Detailed analysis of the conserved syntenies in relation to chromosome level similarities revealed extensive inter-chromosomal and intra-chromosomal rearrangements during evolution. Of the 287 genes, 35 genes were found to be duplicated in the catfish genome, with the vast majority of the duplications being interchromosomal. Conclusions Comparative genome analysis is a powerful tool even in the absence of a well-assembled whole genome sequence. In spite of sequence stacking due to low resolution of the linkage and physical maps, conserved syntenies can be identified although the exact gene order and orientation are unknown at present. Through chromosome-level comparative analysis, homologous chromosomes among teleosts can be identified. Syntenic analysis should facilitate annotation of the catfish genome, which in turn, should facilitate functional inference of genes based on their orthology.
机译:背景技术比较基因组学是将基因组信息从模型物种转移到相关非模型物种的强大工具。鱼(Ictalurus punctatus)是美国的主要水产养殖种类。其现有的基因组资源,例如从下一代测序产生的基因组序列,BAC末端序列(BES),物理图谱,连锁图谱以及使用BES相关标记的整合连锁图谱和物理图谱,为provide鱼与其他模型之间的比较基因组分析提供了一个平台硬骨鱼类。这项研究的目的是通过使用第8连锁群(LG8)作为先导研究,以了解understanding鱼和几种测序的硬骨鱼基因组之间的基因组组织和相似性。结果利用现有的基因组资源,在LG8中鉴定出287个独特基因。比较基因组分析表明,cat鱼LG8的这287个基因中的大多数位于斑马鱼的两条同源染色体、,、棘背鱼和绿斑河豚的三个染色体上。鉴定到大量保守的同义语。关于染色体水平相似性的保守同义的详细分析揭示了进化过程中广泛的染色体间和染色体内重排。在287个基因中,发现有35个基因在the鱼基因组中重复,其中大部分重复是染色体间的。结论即使没有完整的完整基因组序列,比较基因组分析也是一种强大的工具。尽管由于连接和物理图谱的低分辨率而导致序列堆积,但是尽管目前尚不清楚确切的基因顺序和方向,但仍可以鉴定保守的同义语。通过染色体水平的比较分析,可以鉴定硬骨鱼之间的同源染色体。同步分析应有助于annotation鱼基因组的注释,而annotation鱼基因组又应有助于根据其正交性对基因进行功能推断。

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