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多起源的杂种冰草 Elymus caninus 揭示了 RPB2、PepC 和 TrnD/T 基因。

Multiple origins of allopolyploid wheatgrass Elymus caninus revealed by RPB2, PepC and TrnD/T genes.

机构信息

Biology Department, Saint Mary's University, 923 Robie Street, Halifax, Nova Scotia, Canada B3H 3C3.

出版信息

Mol Phylogenet Evol. 2012 Sep;64(3):441-51. doi: 10.1016/j.ympev.2012.04.017. Epub 2012 May 19.

Abstract

We examined evolutionary mechanisms in the tetraploid Elymus caninus by comparing the phylogenetic relationships of 21 accessions suggested by sequence data from two single copy nuclear genes, the largest subunit of RNA polymerase II (RPB2) and phosphoenolpyruvate carboxylase (pepC), and one non-coding chloroplast region, TrnD/T. Elymus caninus is known combining two different genomes, an St genome and an H genome. Data from two single copy nuclear genes showed that there are two versions of the St genome in the species, St1 and St2. Most accessions combined one of these versions with an H genome version but two accessions had both versions of the St sequence for RPB2. This suggests that the RPB2gene may have been duplicated without chromosome doubling, possibly induced by transposable element. Our data also indicate that the H genome sequences in E. caninus have multiple origins, and a close phylogenetic relationship between Hordeum bogdanii and H sequences in some accessions of E. caninus. Thus, it is more likely that H. bogdanii is one of the major donors of the H copy in E. caninus. The maternal origin of E. caninus is the St genome species. There was no correlation between the geographic origin of the accessions and their sequence divergence.

摘要

我们通过比较来自两个单拷贝核基因(RNA 聚合酶 II 大亚基(RPB2)和磷酸烯醇丙酮酸羧化酶(pepC)的序列数据以及一个非编码叶绿体区 TrnD/T 提示的 21 个材料的系统发育关系,研究了四倍体狗尾草 Elymus caninus 的进化机制。狗尾草 Elymus caninus 已知由两个不同的基因组,St 基因组和 H 基因组组成。来自两个单拷贝核基因的数据表明,该物种中有两种 St 基因组的版本,St1 和 St2。大多数材料将这些版本之一与 H 基因组版本相结合,但有两个材料具有 RPB2 基因的两种 St 序列版本。这表明 RPB2 基因可能在没有染色体加倍的情况下发生了复制,可能是由转座元件诱导的。我们的数据还表明,E. caninus 中的 H 基因组序列具有多个起源,并且 Hordeum bogdanii 和某些 E. caninus 材料中的 H 序列之间存在密切的系统发育关系。因此,H. bogdanii 更有可能是 E. caninus 中 H 拷贝的主要供体之一。E. caninus 的母本来源是 St 基因组物种。材料的地理起源与其序列差异之间没有相关性。

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