首页> 外文期刊>The Plant Cell >Arabidopsis GROWTH-REGULATING FACTOR7 functions as a transcriptional repressor of abscisic acid- and osmotic stress-responsive genes, including DREB2A.
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Arabidopsis GROWTH-REGULATING FACTOR7 functions as a transcriptional repressor of abscisic acid- and osmotic stress-responsive genes, including DREB2A.

机译:拟南芥生长调节因子7充当脱落酸和渗透胁迫响应基因(包括DREB2A)的转录阻遏物。

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摘要

Arabidopsis thaliana DEHYDRATION-RESPONSIVE ELEMENT BINDING PROTEIN2A (DREB2A) functions as a transcriptional activator that increases tolerance to osmotic and heat stresses; however, its expression also leads to growth retardation and reduced reproduction. To avoid these adverse effects, the expression of DREB2A is predicted to be tightly regulated. We identified a short promoter region of DREB2A that represses its expression under nonstress conditions. Yeast one-hybrid screening for interacting factors identified GROWTH-REGULATING FACTOR7 (GRF7). GRF7 bound to the DREB2A promoter and repressed its expression. In both artificial miRNA-silenced lines and a T-DNA insertion line of GRF7, DREB2A transcription was increased compared with the wild type under nonstress conditions. A previously undiscovered cis-element, GRF7-targeting cis-element (TGTCAGG), was identified as a target sequence of GRF7 in the short promoter region of DREB2A via electrophoretic mobility shift assays. Microarray analysis of GRF7 knockout plants showed that a large number of the upregulated genes in the mutant plants were also responsive to osmotic stress and/or abscisic acid. These results suggest that GRF7 functions as a repressor of a broad range of osmotic stress-responsive genes to prevent growth inhibition under normal conditions.
机译:拟南芥脱水反应元件结合蛋白2A(DREB2A)发挥转录激活剂的作用,增加了对渗透压和热胁迫的耐受性。然而,它的表达也导致生长迟缓和繁殖减少。为了避免这些不利影响,预计DREB2A的表达受到严格调节。我们鉴定了DREB2A的短启动子区域,可在非胁迫条件下抑制其表达。酵母单杂交筛选的相互作用因素确定了生长调节因子7(GRF7)。 GRF7绑定到DREB2A启动子,并抑制其表达。在非应激条件下,在野生型miRNA沉默株系和GRF7的T-DNA插入株系中,DREB2A转录均比野生型增加。通过电泳迁移率变动分析,先前未发现的顺式元件,靶向GRF7的顺式元件(TGTCAGG)被确定为DREB2A短启动子区域中GRF7的靶序列。 GRF7基因敲除植物的微阵列分析表明,突变植物中的大量上调基因也对渗透胁迫和/或脱落酸有反应。这些结果表明,GRF7可作为多种渗透性应激反应基因的阻遏物,以防止正常条件下的生长抑制。

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