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巴尔比尼环基因中重复单元的快速协同进化。

Rapid and concerted evolution of repeat units in a balbiani ring gene.

机构信息

Department of Molecular Genetics, Medical Nobel Institute, Karolinska Institutet, S-104 01 Stockholm, Sweden.

出版信息

Genetics. 1987 Sep;117(1):43-9. doi: 10.1093/genetics/117.1.43.

Abstract

The Balbiani ring (BR) genes in the midge Chironomus, a genus belonging to Diptera, code for large secretory proteins, used to construct the larval tube. The 15-23-kb long core block in each gene consists of an array of tandemly arranged approximately 200-bp long repeat units, where a single repeat unit is composed of a constant and a subrepeat region. In order to investigate the evolutionary fate of highly repetitive coding DNA, the BR1gamma core block in Chironomus pallidivittatus was characterized and compared to the orthologous core block in the sibling species Chironomus tentans. We find that the 75-100 repeat units in the BR1gamma core block have evolved in an unusual fashion. In all repeat units the constant regions display an expected high degree of homology between the two species, 94% at the nucleotide level. In contrast, the subrepeat regions in all repeat units have diverged concertedly, both as to length, number and sequence of the subrepeats. The observed changes in all repeat units of the core block probably have occurred after speciation of C. pallidivittatus and C. tentans. These findings demonstrate that a tandemly reiterated coding sequence can rapidly and concertedly convert into a related sequence, much in the same way as has been described for satellite DNA.

摘要

摇蚊属(Chironomus)中的巴尔比安尼环(BR)基因属于双翅目昆虫,这些基因编码的是用于构建幼虫管的大型分泌蛋白。每个基因中长 15-23kb 的核心块由一系列串联排列的约 200bp 长的重复单元组成,其中单个重复单元由一个恒定区和一个亚重复区组成。为了研究高度重复编码 DNA 的进化命运,我们对摇蚊属(Chironomus)的 Pallidivittatus 中的 BR1gamma 核心块进行了特征描述,并与亲缘种 Chironomus tentans 的同源核心块进行了比较。我们发现,BR1gamma 核心块中的 75-100 个重复单元以一种不寻常的方式进化。在所有重复单元中,两个物种的恒定区显示出预期的高度同源性,核苷酸水平为 94%。相比之下,所有重复单元中亚重复区的长度、数量和亚重复序列都协同地发生了分歧。核心块中所有重复单元的观察到的变化可能发生在 Pallidivittatus 和 C. tentans 物种形成之后。这些发现表明,串联重复的编码序列可以快速协同地转化为相关序列,这与卫星 DNA 的描述非常相似。

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