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Syntenic gene analysis between Brassica rapa and other Brassicaceae species

机译:甘蓝型油菜与其他十字花科物种之间的同源基因分析

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摘要

Chromosomal synteny analysis is important in genome comparison to reveal genomic evolution of related species. Shared synteny describes genomic fragments from different species that originated from an identical ancestor. Syntenic genes are orthologs located in these syntenic fragments, so they often share similar functions. Syntenic gene analysis is very important in Brassicaceae species to share gene annotations and investigate genome evolution. Here we designed and developed a direct and efficient tool, SynOrths, to identify pairwise syntenic genes between genomes of Brassicaceae species. SynOrths determines whether two genes are a conserved syntenic pair based not only on their sequence similarity, but also by the support of homologous flanking genes. Syntenic genes between Arabidopsis thaliana and Brassica rapa, Arabidopsis lyrata and B. rapa, and Thellungiella parvula and B. rapa were then identified using SynOrths. The occurrence of genome triplication in B. rapa was clearly observed, many genes that were evenly distributed in the genomes of A. thaliana, A. lyrata, and T. parvula had three syntenic copies in B. rapa. Additionally, there were many B. rapa genes that had no syntenic orthologs in A. thaliana, but some of these had syntenic orthologs in A. lyrata or T. parvula. Only 5,851 genes in B. rapa had no syntenic counterparts in any of the other three species. These 5,851 genes could have originated after B. rapa diverged from these species. A tool for syntenic gene analysis between species of Brassicaceae was developed, SynOrths, which could be used to accurately identify syntenic genes in differentiated but closely-related genomes. With this tool, we identified syntenic gene sets between B. rapa and each of A. thaliana, A. lyrata, T. parvula. Syntenic gene analysis is important for not only the gene annotation of newly sequenced Brassicaceae genomes by bridging them to model plant A. thaliana, but also the study of genome evolution in these species.
机译:染色体同义分析在基因组比较中很重要,可以揭示相关物种的基因组进化。共有同义词描述了源自同一祖先的不同物种的基因组片段。同源基因是位于这些同源片段中的直向同源物,因此它们通常具有相似的功能。同源基因分析在十字花科物种中非常重要,可以共享基因注释并研究基因组进化。在这里,我们设计并开发了一种直接有效的工具SynOrths,用于识别十字花科物种基因组之间的成对同步基因。 SynOrths不仅基于两个序列的相似性,还通过同源侧翼基因的支持来确定两个基因是否为保守的同义对。然后使用SynOrths鉴定拟南芥和芸苔,拟南芥和B. rapa,以及小鳞蛾和B. rapa之间的同源基因。清楚地观察到了R. rapa中基因组三倍体的发生,许多基因均匀地分布在拟南芥,lyrata和T. parvula的基因组中,在B. rapa中具有三个同义拷贝。此外,许多拟南芥中没有拟南芥的同系直系同源基因,但其中一些在拟南芥或小拟南芥中有同系直系同源基因。在其他三个物种中,仅B. rapa中的5851个基因就没有同语对应。这5851个基因可能起源于 B之后。 rapa 与这些物种背道而驰。开发了一种用于十字花科物种间同位基因分析的工具SynOrths,该工具可用于准确识别分化但密切相关的基因组中的同位基因。使用此工具,我们确定了 B之间的同义基因集。 rapa 和每个 A。拟南芥 A。 lyrata T。 parvula 。通过对它们进行桥接,同义基因分析不仅对新测序的十字花科基因组的基因注释具有重要意义,还可以将它们桥接到植物 A的模型中。拟南芥,但也研究了这些物种的基因组进化。

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