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长穗偃麦草中的低分子量谷蛋白亚基基因及其在小麦育种中的潜在价值。

LMW-GS genes in Agropyron elongatum and their potential value in wheat breeding.

作者信息

Luo Zhen, Chen Fanguo, Feng Deshun, Xia Guangmin

机构信息

School of Life Sciences, Shandong University, Jinan, PR China.

出版信息

Theor Appl Genet. 2005 Jul;111(2):272-80. doi: 10.1007/s00122-005-2021-9. Epub 2005 May 31.

Abstract

To study the usefulness of low-molecular-weight glutenin subunits (LMW-GS) of Agropyron elongatum (Host) Nevski to wheat (Triticum aestivum L.) quality improvement, we characterized LMW-GS genes of A. elongatum. Nine LMW-GS genes of A. elongatum, which were named AeL1 to AeL9, were cloned by genomic PCR. After sequencing, we obtained complete open reading frames from AeL2 to AeL8 and partial genes of AeL1 and AeL9. All nine sequences are homoeologous to those of wheat and related grasses. Comparison of the deduced amino acid sequences with those of published LMW-GS suggests that the basic structures of all the subunits are very similar. However, except for AeL4 and AeL5, which contain the identical N-terminal sequence with LMW-m, other LMW-GS sequences separated from A. elongatum cannot be classified according to previous criteria for the three types: LMW-m (methionine), LMW-s (serine), and LMW-i (isoleucine), and then 12 groups. In addition, there are some characters in the LMW-GS sequences of A. elongatum: AeL2, AeL3, and AeL6 involve a Cys residue in the signal peptide respectively, which is absent in most of LMW-GS; AeL3, AeL6, AeL8, and AeL9 start their first Cys residues in the N-terminal repetitive domains, respectively; both AeL2 and AeL5 have nine Cys residues, with an extra Cys residue in the N-terminal repetitive domain and the repetitive and glutamine-rich domain; AeL2, AeL3, AeL6, and AeL9 comprise long repetitive domains. Phylogenetic analysis indicates that there is a relatively weak sequence identity between the LMW-GS genes from A. elongatum cloned in this study and those reported from other plants. Three LMW-GS sequences, AeL2, AeL3, and AeL6, are clustered to Glu-A3 from wheat than to those from other plants. The possible use of these genes in relation to the high quality of hybrid wheat is discussed.

摘要

为研究长穗偃麦草(Agropyron elongatum (Host) Nevski)低分子量谷蛋白亚基(LMW-GS)对小麦(Triticum aestivum L.)品质改良的作用,我们对长穗偃麦草的LMW-GS基因进行了特征分析。通过基因组PCR克隆了长穗偃麦草的9个LMW-GS基因,命名为AeL1至AeL9。测序后,我们获得了AeL2至AeL8的完整开放阅读框以及AeL1和AeL9的部分基因。所有9个序列均与小麦及相关禾本科植物的序列同源。将推导的氨基酸序列与已发表的LMW-GS序列进行比较表明,所有亚基的基本结构非常相似。然而,除了AeL4和AeL5与LMW-m具有相同的N端序列外,从长穗偃麦草分离出的其他LMW-GS序列无法按照先前的标准分为三种类型:LMW-m(甲硫氨酸型)、LMW-s(丝氨酸型)和LMW-i(异亮氨酸型),进而分为12组。此外,长穗偃麦草的LMW-GS序列还有一些特点:AeL2、AeL3和AeL6的信号肽中分别含有一个半胱氨酸残基,这在大多数LMW-GS中不存在;AeL3、AeL6、AeL8和AeL9分别在N端重复结构域开始其第一个半胱氨酸残基;AeL2和AeL5都有9个半胱氨酸残基,在N端重复结构域以及重复和富含谷氨酰胺的结构域中有一个额外的半胱氨酸残基;AeL2、AeL3、AeL6和AeL9包含长重复结构域。系统发育分析表明,本研究克隆的长穗偃麦草LMW-GS基因与其他植物报道的基因之间的序列同一性相对较弱。三个LMW-GS序列,AeL2、AeL3和AeL6,与小麦的Glu-A3聚类,而不是与其他植物的聚类。讨论了这些基因在杂交小麦高品质方面的可能用途。

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