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大豆热休克蛋白 90(Hsp90)基因家族克隆基因 GmHsp90 的过表达可减轻拟南芥非生物胁迫的损伤。

Overexpression of GmHsp90s, a heat shock protein 90 (Hsp90) gene family cloning from soybean, decrease damage of abiotic stresses in Arabidopsis thaliana.

机构信息

Key Laboratory of Biology and Genetics and Breeding for Soybean/National Key Laboratory of Crop Genetics and Germplasm Enhancement, Ministry of Agriculture/National Center for Soybean Improvement, Nanjing Agricultural University, Nanjing, PR China.

出版信息

PLoS One. 2013 Jul 25;8(7):e69810. doi: 10.1371/journal.pone.0069810. Print 2013.

Abstract

Hsp90 is one of the most conserved and abundant molecular chaperones and is an essential component of the protective stress response; however, its roles in abiotic stress responses in soybean (Glycine max) remain obscure. Here, 12 GmHsp90 genes from soybean were identified and found to be expressed and to function differentially under abiotic stresses. The 12 GmHsp90 genes were isolated and named GmHsp90A1-GmHsp90A6, GmHsp90B1, GmHsp90B2, GmHsp90C1.1, GmHsp90C1.2, GmHsp90C2.1 and GmHsp90C2.2 based on their characteristics and high homology to other Hsp90s according to a new nomenclature system. Quantitative real-time PCR expression data revealed that all the genes exhibited higher transcript levels in leaves and could be strongly induced under heat, osmotic and salt stress but not cold stress. Overexpression of five typical genes (GmHsp90A2, GmHsp90A4, GmHsp90B1, GmHsp90C1.1 and GmHsp90C2.1) in Arabidopsis thaliana provided useful evidences that GmHsp90 genes can decrease damage of abiotic stresses. In addition, an abnormal accumulation of proline was detected in some transgenic Arabidopsis plants suggested overexpressing GmHsp90s may affect the synthesis and response system of proline. Our work represents a systematic determination of soybean genes encoding Hsp90s, and provides useful evidence that GmHsp90 genes function differently in response to abiotic stresses and may affect the synthesis and response system of proline.

摘要

热休克蛋白 90(Hsp90)是最保守和丰富的分子伴侣之一,是保护性应激反应的重要组成部分;然而,其在大豆(Glycine max)非生物胁迫反应中的作用尚不清楚。在这里,从大豆中鉴定出 12 个 GmHsp90 基因,并发现它们在非生物胁迫下表达和功能不同。根据新的命名系统,根据其特征和与其他 Hsp90 的高度同源性,将这 12 个 GmHsp90 基因分别命名为 GmHsp90A1-GmHsp90A6、GmHsp90B1、GmHsp90B2、GmHsp90C1.1、GmHsp90C1.2、GmHsp90C2.1 和 GmHsp90C2.2。定量实时 PCR 表达数据显示,所有基因在叶片中均表现出较高的转录水平,并能强烈诱导热、渗透和盐胁迫,但不能诱导冷胁迫。在拟南芥中过表达 5 个典型基因(GmHsp90A2、GmHsp90A4、GmHsp90B1、GmHsp90C1.1 和 GmHsp90C2.1)提供了有用的证据,表明 GmHsp90 基因可以减少非生物胁迫的损伤。此外,在一些转基因拟南芥植物中检测到脯氨酸的异常积累,表明过表达 GmHsp90s 可能影响脯氨酸的合成和响应系统。我们的工作代表了对大豆编码 Hsp90 基因的系统测定,并提供了有用的证据,表明 GmHsp90 基因在非生物胁迫反应中功能不同,可能影响脯氨酸的合成和响应系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/309a/3723656/0d1d6f456e50/pone.0069810.g001.jpg

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