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利用冷诱导启动子优化转基因大麦中 TaDREB3 基因的表达。

Optimization of TaDREB3 gene expression in transgenic barley using cold-inducible promoters.

机构信息

Australian Centre for Plant Functional Genomics, University of Adelaide, Adelaide, SA, Australia.

出版信息

Plant Biotechnol J. 2013 Aug;11(6):659-70. doi: 10.1111/pbi.12056. Epub 2013 Mar 16.

Abstract

Constitutive over-expression of the TaDREB3 gene in barley improved frost tolerance of transgenic plants at the vegetative stage of plant development, but leads to stunted phenotypes and 3- to 6-week delays in flowering compared to control plants. In this work, two cold-inducible promoters with contrasting properties, the WRKY71 gene promoter from rice and the Cor39 gene promoter from durum wheat, were applied to optimize expression of TaDREB3. The aim of the work was to increase plant frost tolerance and to decrease or prevent negative developmental phenotypes observed during constitutive expression of TaDREB3. The OsWRKY71 and TdCor39 promoters had low-to-moderate basal activity and were activated by cold treatment in leaves, stems and developing spikes of transgenic barley and rice. Expression of the TaDREB3 gene, driven by either of the tested promoters, led to a significant improvement in frost tolerance. The presence of the functional TaDREB3 protein in transgenic plants was confirmed by the detection of strong up-regulation of cold-responsive target genes. The OsWRKY71 promoter-driven TaDREB3 provides stronger activation of the same target genes than the TdCor39 promoter. Analysis of the development of transgenic plants in the absence of stress revealed small or no differences in plant characteristics and grain yield compared with wild-type plants. The WRKY71-TaDREB3 promoter-transgene combination appears to be a promising tool for the enhancement of cold and frost tolerance in crop plants but field evaluation will be needed to confirm that negative development phenotypes have been controlled.

摘要

TaDREB3 基因的组成型过表达提高了转基因植物在植物发育的营养阶段的抗寒性,但与对照植物相比,导致植株矮小和开花延迟 3 到 6 周。在这项工作中,应用了两个具有不同特性的冷诱导启动子,即来自水稻的 WRKY71 基因启动子和来自硬质小麦的 Cor39 基因启动子,以优化 TaDREB3 的表达。这项工作的目的是提高植物的抗寒性,并减少或防止 TaDREB3 组成型表达时观察到的负发育表型。OsWRKY71 和 TdCor39 启动子的基础活性较低至中等,在转基因大麦和水稻的叶片、茎和发育穗中,经冷处理后被激活。由测试的启动子之一驱动的 TaDREB3 基因的表达导致抗寒性显著提高。在转基因植物中存在功能性 TaDREB3 蛋白,这通过检测冷响应靶基因的强烈上调得到证实。OsWRKY71 启动子驱动的 TaDREB3 比 TdCor39 启动子更有效地激活相同的靶基因。在没有胁迫的情况下对转基因植物发育的分析表明,与野生型植物相比,植物特征和谷物产量几乎没有差异。WRKY71-TaDREB3 启动子-转基因组合似乎是增强作物植物抗冷和抗冻性的有前途的工具,但需要进行田间评估以确认已控制了负发育表型。

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