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位于1D染色体上的低分子量谷蛋白亚基(LMW-GS)基因特异性引物的开发及面包小麦中Glu-D3复合位点一个基因的分子特征分析

Development of primers specific for LMW-GS genes located on chromosome 1D and molecular characterization of a gene from Glu-D3 complex locus in bread wheat.

作者信息

Zhao Huixian, Wang Ruijuan, Guo Aiguang, Hu Shengwu, Sun Genlou

机构信息

College of Life Sciences, Northwest Sci-Tech University of Agriculture and Forestry, Yangling, Shaanxi, PR China.

出版信息

Hereditas. 2004;141(3):193-8. doi: 10.1111/j.1601-5223.2004.01852.x.

Abstract

Glutenins are multimeric aggregates of high molecular weight (HMW) and low molecular weight (LMW) subunits, which determine the quality in wheat. Development of locus-specific primers is an important step toward cloning specific LMW glutenin subunits (LMW-GS) by PCR method. Based on the publicly available, a pair of primer, namely primer 3 (5' TTGTAGAAACTGCCATCCTT 3') and primer 4 (5' GTCACCGCTGCAT CGACATA 3') was designed and verified to specific for LMW-GS genes located on chromosome 1D in this study. The LMW-GS gene located at the Glu-D3 locus in bread wheat cultivar Xiaoyan 6 was cloned using this pair of primer. The clone designated as XYGluD3-LMWGS1 (AY263369), contains the endosperm-specific-expression promoter and the entire coding region. Nucleotide sequence comparison of the XYGluD3-LMWGS1 with other reported LMW-GS genes located at different Glu-3 loci showed the degree of identity among them ranged from 59.57% to 99.78%. The LMW-GS genes at the same locus showed more similar to each other than to the gene at different locus. Comparison of the deduced amino acid sequence of the XYGluD3-LMWGS1 with the sequences of 12 group LMW-GSs of wheat cultivar Norin 61 showed that the deduced amino acid sequence was nearly the same to LMW-GS group 10 (identity 99.67%). The deduced LMW-GS contains nine cystine residues, which contained one more cystine residue in the C-terminal conserved domain than previous reported. This was the first LMW-GS gene encoding for a LMW-GS with 9 cystine residues that has been discovered so far.

摘要

谷蛋白是高分子量(HMW)和低分子量(LMW)亚基的多聚体聚集体,它们决定了小麦的品质。开发位点特异性引物是通过PCR方法克隆特定低分子量谷蛋白亚基(LMW-GS)的重要一步。基于公开可用的信息,本研究设计了一对引物,即引物3(5' TTGTAGAAACTGCCATCCTT 3')和引物4(5' GTCACCGCTGCAT CGACATA 3'),并验证其对位于1D染色体上的LMW-GS基因具有特异性。利用这对引物克隆了面包小麦品种小偃6中位于Glu-D3位点的LMW-GS基因。该克隆命名为XYGluD3-LMWGS1(AY263369),包含胚乳特异性表达启动子和完整的编码区。XYGluD3-LMWGS1与其他报道的位于不同Glu-3位点的LMW-GS基因的核苷酸序列比较表明,它们之间的同一性程度在59.57%至99.78%之间。同一位点的LMW-GS基因彼此之间比与不同位点的基因更相似。将XYGluD3-LMWGS1推导的氨基酸序列与小麦品种Norin 61的12组LMW-GSs序列进行比较,结果表明推导的氨基酸序列与第10组LMW-GS几乎相同(同一性为99.67%)。推导的LMW-GS包含9个半胱氨酸残基,其C末端保守结构域中的半胱氨酸残基比先前报道的多一个。这是迄今为止发现的第一个编码具有9个半胱氨酸残基的LMW-GS的基因。

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