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大麦(Hordeum vulgare L.)Dhn6基因的分子克隆、蛋白质结构预测及其在脱水条件下的表达模式

[Molecular cloning and protein structure prediction of barley (Hordeum vulgare L.) Dhn6 gene and its expression pattern under dehydration conditions].

作者信息

Qian Gang, Ping Jun-Jiao, Zhang Zhen, Luo Su-Yuan, Li Xue-Ying, Yang Ming-Zhen, Zhang Da

机构信息

Department of Cell Biology and Genetics, Zunyi Medical College, and Department of Interventional Radiology, the Affiliated Hospital of Zunyi Medical College, Zunyi 563000, China.

出版信息

Yi Chuan. 2011 Mar;33(3):270-7. doi: 10.3724/sp.j.1005.2011.00270.

DOI:10.3724/sp.j.1005.2011.00270
PMID:21402536
Abstract

Dehydrins (DHNs), proteins with protective functions encoded by the late embryogenesis abundant (LEA), are differentially up-regulated at the transcriptional level under environmental stresses such as water deficit, salinity, and low temperature or in response to ABA. Data involving protein structure and expression of dehydrins could elucidate their functional roles under dehydration conditions in plants. Dhn6 gene of 1767 bp with an intron (92 bp) in six-rowed barley, a member of LEA D11, was cloned into pMD18-T vector in the present study. It shared 93.18% identity with Hordeum vulgare ssp. vulgare (GenBank accession: AF043091), encoding a protein composed of 523 amino acid residues with the predicted molecular weight of 49.68 kDa and the theoretical isoelectric point of 8.04. Analyses of domain and structure indicated that the protein was dominantly composed of 83% hydrophillic amino acid residues, with numerous imperative curls and three loosed helixes. Three-dimensional measurement revealed that the water-soluble lipid-associating protein was attributed to its twisted cable formed by reverse paralleled chains. Moreover, the putative amphipathic α-helices formed by K-segments might play roles in protecting membrane structure in barley. Significantly, relatively high accumulations of Dhn6 gene were detected after 8 h of water deficit by real-time quantitative RT-PCR. These results possibly suggested that the accumulation of Dhn6 gene could be critical for resistant dehydration in plants.

摘要

脱水素(DHNs)是由胚胎后期丰富蛋白(LEA)编码的具有保护功能的蛋白质,在水分亏缺、盐胁迫、低温等环境胁迫下或响应脱落酸时,其转录水平会有不同程度的上调。有关脱水素的蛋白质结构和表达的数据可以阐明它们在植物脱水条件下的功能作用。本研究将六行大麦中1767 bp且含有一个内含子(92 bp)的Dhn6基因(LEA D11成员)克隆到pMD18-T载体中。它与大麦(GenBank登录号:AF043091)的同源性为93.18%,编码一个由523个氨基酸残基组成的蛋白质,预测分子量为49.68 kDa,理论等电点为8.04。结构域和结构分析表明,该蛋白质主要由83%的亲水性氨基酸残基组成,有许多重要的卷曲和三个松散的螺旋。三维测量显示,这种水溶性脂质结合蛋白归因于其由反向平行链形成的扭曲电缆结构。此外,由K片段形成的推定两亲性α螺旋可能在保护大麦膜结构中发挥作用。值得注意的是,通过实时定量RT-PCR在水分亏缺8小时后检测到Dhn6基因有相对较高的积累。这些结果可能表明,Dhn6基因的积累对于植物抗脱水至关重要。

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