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从六倍体面包小麦的 A、B 基因组中鉴定和比较高分子量谷蛋白基因。

The characterization and comparative analysis of high-molecular-weight glutenin genes from genomes A and B of a hexaploid bread wheat.

机构信息

USDA, ARS, Western Regional Research Center, 800 Buchanan Street, 94710, Albany, CA, USA.

出版信息

Theor Appl Genet. 1989 May;77(5):689-700. doi: 10.1007/BF00261246.

Abstract

Two high-molecular-weight subunit (HMWS) glutenin genes from the A and B genomes of the hexaploid bread wheat Triticum aestivum L. cv Cheyenne have been isolated and sequenced. Both of these genes are of the high Mr class (x-type) of HMW glutenins, and have not been previously reported. The entire set of six HMW genes from cultivar Cheyenne have now been isolated and characterized. An analysis of the Ax and Bx sequences shows that the Ax sequence is similar to the homoeologous gene from the D genome, while the Bx repeat structure is significantly different. The repetitive region of these proteins can be modelled as a series of interspersed copies of repeat modifs of 6, 9, and 15 amino acid residues. The evolution of these genes includes single-base substitutions over the entire coding region, plus insertion/deletions of single or blocks of repeats in the central repetitive domain.

摘要

已从六倍体面包小麦(Triticum aestivum L. cv Cheyenne)的 A 和 B 基因组中分离并测序了两个高分子量亚基(HMWS)谷蛋白基因。这两个基因都属于 HMW 谷蛋白的高分子量(x 型)类别,以前尚未报道过。现在已经从 Cheyenne 品种中分离并表征了整套六个 HMW 基因。对 Ax 和 Bx 序列的分析表明,Ax 序列与 D 基因组的同源基因相似,而 Bx 重复结构则有很大的不同。这些蛋白质的重复区域可以模拟为一系列散布的重复修饰物的重复副本,重复修饰物的长度分别为 6、9 和 15 个氨基酸残基。这些基因的进化包括整个编码区的单个碱基取代,以及在中央重复结构域中重复单元的单个或多个重复的插入/缺失。

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