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由反向重复序列移动导致的小豆叶绿体DNA中一个大型操纵子的进化重组。

Evolutionary re-organisation of a large operon in adzuki bean chloroplast DNA caused by inverted repeat movement.

作者信息

Perry Antoinette S, Brennan Sinéad, Murphy David J, Kavanagh Tony A, Wolfe Kenneth H

机构信息

Department of Genetics, Smurfit Institute, University of Dublin, Trinity College, Dublin 2, Ireland.

出版信息

DNA Res. 2002 Oct 31;9(5):157-62. doi: 10.1093/dnares/9.5.157.

Abstract

We have sequenced two sections of chloroplast DNA from adzuki bean (Vigna angularis), containing the junctions between the inverted repeat (IR) and large single copy (LSC) regions of the genome. The gene order at both junctions is different from that described for other members of the legume family, such as Lotus japonicus and soybean. These differences have been attributed to an apparent 78-kb inversion that spans nearly the entire LSC region and which is present in adzuki and its close relative, the common bean. This 78-kb rearrangement broke the large S10 operon of ribosomal proteins into two smaller operons, one at each end of the LSC, without affecting the gene content of the genome. It disrupted the physical and transcriptional relationship between the six-gene rpl23-rpl14 cluster and the four-gene rps8-rpoA cluster that is conserved in most land plants. Analysis of the endpoints of the rearrangement indicates that it probably occurred by means of a two-step process of expansion and contraction of the IR and not by a 78-kb inversion.

摘要

我们对小豆(Vigna angularis)叶绿体DNA的两个区段进行了测序,这两个区段包含基因组中反向重复序列(IR)和大单拷贝(LSC)区域之间的交界。两个交界处的基因顺序与豆科家族其他成员(如百脉根和大豆)所描述的不同。这些差异归因于一个明显的78kb倒位,该倒位几乎跨越了整个LSC区域,并且存在于小豆及其近缘种菜豆中。这个78kb的重排将核糖体蛋白的大S10操纵子分成了两个较小的操纵子,分别位于LSC的两端,而不影响基因组的基因含量。它破坏了大多数陆地植物中保守的六基因rpl23 - rpl14簇和四基因rps8 - rpoA簇之间的物理和转录关系。对重排端点的分析表明,它可能是通过IR的两步扩张和收缩过程发生的,而不是通过78kb的倒位。

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