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首页> 外文期刊>The Plant Cell >Transcript Profiling Provides Evidence of Functional Divergence and Expression Networks among Ribosomal Protein Gene Paralogs in Brassica napus.
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Transcript Profiling Provides Evidence of Functional Divergence and Expression Networks among Ribosomal Protein Gene Paralogs in Brassica napus.

机译:成绩单分析提供了甘蓝型油菜核糖体蛋白基因旁系同源物之间功能差异和表达网络的证据。

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The plant ribosome is composed of 80 distinct ribosomal (r)-proteins. In Arabidopsis thaliana, each r-protein is encoded by two or more highly similar paralogous genes, although only one copy of each r-protein is incorporated into the ribosome. Brassica napus is especially suited to the comparative study of r-protein gene paralogs due to its documented history of genome duplication as well as the recent availability of large EST data sets. We have identified 996 putative r-protein genes spanning 79 distinct r-proteins in B. napus using EST data from 16 tissue collections. A total of 23,408 tissue-specific r-protein ESTs are associated with this gene set. Comparative analysis of the transcript levels for these unigenes reveals that a large fraction of r-protein genes are differentially expressed and that the number of paralogs expressed for each r-protein varies extensively with tissue type in B. napus. In addition, in many cases the paralogous genes for a specific r-protein are not transcribed in concert and have highly contrasting expression patterns among tissues. Thus, each tissue examined has a novel r-protein transcript population. Furthermore, hierarchical clustering reveals that particular paralogs for nonhomologous r-protein genes cluster together, suggesting that r-protein paralog combinations are associated with specific tissues in B. napus and, thus, may contribute to tissue differentiation and/or specialization. Altogether, the data suggest that duplicated r-protein genes undergo functional divergence into highly specialized paralogs and coexpression networks and that, similar to recent reports for yeast, these are likely actively involved in differentiation, development, and/or tissue-specific processes.
机译:植物核糖体由80种不同的核糖体(r)蛋白组成。在拟南芥中,每个r蛋白由两个或多个高度相似的旁系同源基因编码,尽管每个r蛋白只有一个拷贝掺入了核糖体中。甘蓝型油菜由于其记录的基因组复制历史以及最近可获得的大量EST数据集,特别适合于r蛋白基因旁系同源物的比较研究。我们已经使用来自16个组织集合的EST数据,鉴定了996个推定的r蛋白基因,这些基因跨越甘蓝型油菜中的79种不同的r蛋白。总共23,408个组织特异性r蛋白EST与该基因组相关。这些单基因的转录水平的比较分析表明,大部分的r蛋白基因差异表达,并且每种油蛋白表达的旁系同源物的数量随油菜的组织类型而变化很大。另外,在许多情况下,特定r蛋白的旁系同源基因不能一起转录,并且在组织之间具有高度对比的表达模式。因此,每个检查的组织都有一个新的r蛋白转录子群体。此外,分层聚类揭示了非同源r-蛋白基因的特定旁系同源物聚在一起,这表明r-蛋白旁系同源物组合与甘蓝型油菜中的特定组织有关,因此可能有助于组织分化和/或专业化。总之,数据表明重复的r蛋白基因在功能上分化为高度专业化的旁系同源物和共表达网络,并且与最近关于酵母的报道相似,它们可能积极参与分化,发育和/或组织特异性过程。

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