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Transcriptional activation of Cor/Lea genes and increase in abiotic stress tolerance through expression of a wheat DREB2 homolog in transgenic tobacco

机译:通过在转基因烟草中表达小麦DREB2同源物,Cor / Lea基因的转录激活和非生物胁迫耐受性的提高

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摘要

Wdreb2, previously isolated as a DREB2 homolog, is expressed in wheat seedlings under abiotic stresses, such as cold, drought, and high salinity, and following treatment with exogenous ABA. In the present study, we generated transgenic tobacco plants expressing Wdreb2 to clarify roles of Wdreb2 in stress tolerance and the direct trans-activation of Cor/Lea genes by WDREB2. Wdreb2 expression significantly improved freezing and osmotic stress tolerance in tobacco plants. Several putative stress- and ABA-responsive cis-elements were found in the 5' upstream regions of four wheat Cor/Lea genes, Wdhn13, Wrab17, Wrab18, and Wrab19. The expression level of a gusA reporter gene under control of Cor/Lea promoter sequences was enhanced by cold, drought and ABA treatment in transgenic tobacco plants. Moreover, the gusA expression level was markedly enhanced by Wdreb2 expression under nonstressful conditions. These results clearly indicate that WDREB2 acts as a transcription factor and positively regulates Wdhn13, Wrab17, Wrab18, and Wrab19 in the development of multiple abiotic stress tolerance in wheat.
机译:Wdreb2以前被分离为DREB2同源物,在非生物胁迫(例如寒冷,干旱和高盐度)下并在用外源ABA处理后在小麦幼苗中表达。在本研究中,我们生成了表达Wdreb2的转基因烟草植物,以阐明Wdreb2在胁迫耐受性和WDREB2对Cor / Lea基因的直接反式激活中的作用。 Wdreb2表达显着改善了烟草植物的抗冻和渗透胁迫能力。在四个小麦Cor / Lea基因Wdhn13,Wrab17,Wrab18和Wrab19的5'上游区域中发现了几个假定的胁迫和ABA反应顺式元件。在转基因烟草植物中,通过寒冷,干旱和ABA处理,可增强Cor / Lea启动子序列控制下的gusA报告基因的表达水平。此外,在非压力条件下,Wdreb2表达显着提高了gusA表达水平。这些结果清楚地表明,WDREB2充当转录因子,并在小麦多重非生物胁迫耐受性发展中正调控Wdhn13,Wrab17,Wrab18和Wrab19。

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