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通过单个胁迫诱导转录因子的基因转移提高植物的耐旱、耐盐和耐寒性。

Improving plant drought, salt and freezing tolerance by gene transfer of a single stress-inducible transcription factor.

作者信息

Yamaguchi-Shinozaki K, Shinozaki K

机构信息

Biological Resources Division, Japan International Research Center for Agricultural Sciences (JIRCAS), Ministry of Agriculture, Forestry and Fisheries, 2-1 Ohwashi, Tsukuba, Ibaraki 305-8686.

出版信息

Novartis Found Symp. 2001;236:176-86; discussion 186-9.

Abstract

Plant productivity is greatly affected by environmental stresses such as drought, salt loading and freezing. We reported that a cis-acting promoter element, the dehydration response element (DRE), plays an important role in regulating gene expression in response to these stresses in Arabidopsis. The transcription factor DREB1A specifically interacts with the DRE and induces expression of stress tolerance genes. We show here that overexpression of the cDNA encoding DREB1A in transgenic Arabidopsis plants activated the expression of many of theses stress tolerance genes under normal growing conditions and resulted in improved tolerance to drought, salt loading and freezing. However, use of the strong constitutive 35S cauliflower mosaic virus (CaMV) promoter to drive expression of DREB1A also resulted in severe growth retardation under normal growing conditions. In contrast, expression of DREB1A from the stress-inducible rd29A promoter gave rise to minimal effects on plant growth while providing an even greater tolerance to stress conditions than did expression of the gene from the CaMV promoter. As the DRE-related regulatory element is not limited to Arabidopsis the DREB1A cDNA and the rd29A promoter may be useful for improving the stress tolerance of agriculturally important crops by gene transfer.

摘要

植物生产力受到干旱、盐分胁迫和冰冻等环境压力的极大影响。我们报道了一种顺式作用启动子元件,即脱水响应元件(DRE),在拟南芥中响应这些胁迫调节基因表达方面发挥着重要作用。转录因子DREB1A特异性地与DRE相互作用,并诱导胁迫耐受基因的表达。我们在此表明,在转基因拟南芥植物中过表达编码DREB1A的cDNA,在正常生长条件下激活了许多这些胁迫耐受基因的表达,并导致对干旱、盐分胁迫和冰冻的耐受性提高。然而,使用强组成型35S花椰菜花叶病毒(CaMV)启动子驱动DREB1A的表达,在正常生长条件下也导致严重的生长迟缓。相比之下,从胁迫诱导型rd29A启动子表达DREB1A对植物生长的影响最小,同时比从CaMV启动子表达该基因提供了更强的胁迫条件耐受性。由于与DRE相关的调控元件不限于拟南芥,DREB1A cDNA和rd29A启动子可能通过基因转移用于提高重要农作物的胁迫耐受性。

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