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大豆(Glycine max L.)中DRE结合转录因子基因GmDREB3的冷诱导调控及功能分析

Cold-induced modulation and functional analyses of the DRE-binding transcription factor gene, GmDREB3, in soybean (Glycine max L.).

作者信息

Chen Ming, Xu Zhaoshi, Xia Lanqin, Li Liancheng, Cheng Xianguo, Dong Jianhui, Wang Qiaoyan, Ma Youzhi

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement (NKFCRI)/Key Laboratory of Crop Genetics and Breeding, Ministry of Agriculture, Institute of Crop Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing, PR China.

出版信息

J Exp Bot. 2009;60(1):121-35. doi: 10.1093/jxb/ern269. Epub 2008 Nov 6.

Abstract

DREB (dehydration-responsive element-binding protein) transcription factors have important roles in the stress-related regulation network in plants. A DREB orthologue, GmDREB3, belonging to the A-5 subgroup of the DREB subfamily, was isolated from soybean using the RACE (rapid amplification of cDNA ends) method. Northern blot analysis showed that expression of GmDREB3 in soybean seedlings was induced following cold stress treatment for 0.5 h and was not detected after 3 h. However, it was not induced by drought and high salt stresses or by abscisic acid (ABA) treatment. This response was similar to those of members in the A-1 subgroup and different from those of other members in the A-5 subgroup, suggesting that the GmDREB3 gene was involved in an ABA-independent cold stress-responsive signal pathway. Furthermore, analysis of the GmDREB3 promoter elucidated its cold-induced modulation. A promoter fragment containing bases -1058 to -664 was involved in response to cold stress, and its effect was detected for 1 h after treatment, but a transcriptional repressor appeared to impair this response by binding to a cis-element in the region -1403 to -1058 at 24 h after the beginning of cold stress. Moreover, the GmDREB3 protein could specifically bind to the DRE element in vitro, and activated expression of downstream reporter genes in yeast cells. In addition, overexpression of GmDREB3 enhanced tolerance to cold, drought, and high salt stresses in transgenic Arabidopsis. Physiological analyses indicated that the fresh weight and osmolality of GmDREB3 transgenic Arabidopsis under cold stress were higher than those of wild-type controls. GmDREB3 transgenic tobacco accumulated higher levels of free proline under drought stress and retained higher leaf chlorophyll levels under high salt stress than wild-type tobacco. In addition, constitutive expression of GmDREB3 in transgenic Arabidopsis caused growth retardation, whereas its expression under control of the stress-inducible Rd29A promoter minimized negative effects on plant growth under normal growth conditions, indicating that a combination of the Rd29A promoter and GmDREB3 might be useful for improving tolerance to environmental stresses in crop plants.

摘要

脱水响应元件结合蛋白(DREB)转录因子在植物与胁迫相关的调控网络中发挥着重要作用。利用cDNA末端快速扩增(RACE)方法,从大豆中分离出一个属于DREB亚家族A-5亚组的DREB同源基因GmDREB3。Northern杂交分析表明,大豆幼苗中GmDREB3的表达在冷胁迫处理0.5小时后被诱导,3小时后未检测到。然而,它不受干旱、高盐胁迫或脱落酸(ABA)处理的诱导。这种反应与A-1亚组成员的反应相似,与A-5亚组的其他成员不同,这表明GmDREB3基因参与了一条不依赖ABA的冷胁迫响应信号通路。此外,对GmDREB3启动子的分析阐明了其冷诱导调控。一个包含-1058至-664碱基的启动子片段参与了对冷胁迫的响应,处理后1小时可检测到其效应,但在冷胁迫开始24小时后,一个转录抑制因子似乎通过与-1403至-1058区域的顺式元件结合而损害了这种响应。此外,GmDREB3蛋白在体外可特异性结合DRE元件,并激活酵母细胞中下游报告基因的表达。此外,GmDREB3的过表达增强了转基因拟南芥对冷、干旱和高盐胁迫的耐受性。生理分析表明,冷胁迫下GmDREB3转基因拟南芥的鲜重和渗透压高于野生型对照。与野生型烟草相比,GmDREB3转基因烟草在干旱胁迫下积累了更高水平的游离脯氨酸,在高盐胁迫下保持了更高的叶片叶绿素水平。此外,GmDREB3在转基因拟南芥中的组成型表达导致生长迟缓,而其在胁迫诱导型Rd29A启动子控制下的表达在正常生长条件下对植物生长的负面影响最小,这表明Rd29A启动子和GmDREB3的组合可能有助于提高作物对环境胁迫的耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3635/3071762/2310518e0f21/jexbotern269f01_lw.jpg

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