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Overexpression of the Tobacco Tsi1 Gene Encoding an EREBP/AP2–Type Transcription Factor Enhances Resistance against Pathogen Attack and Osmotic Stress in Tobacco

机译:编码EREBP / AP2型转录因子的烟草Tsi1基因的过表达增强了烟草对病原体侵害和渗透胁迫的抵抗力

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摘要

Using mRNA differential display analysis, we isolated a salt-induced transcript that showed a significant sequence homology with an EREBP/AP2 DNA binding motif from oilseed rape plants. With this cDNA fragment as a probe, cDNA clone Tsi1 (for Tobacco stress-induced gene1) was isolated from a tobacco cDNA library. RNA gel blot analysis indicated that transcripts homologous with Tsi1 were induced not only in NaCl-treated leaves but also in leaves treated with ethephon or salicylic acid. Transient expression analysis using a Tsi1::smGFP fusion gene in BY-2 cells indicated that the Tsi1 protein was targeted to the nucleus. Fusion protein of Tsi1 with GAL4 DNA binding domain strongly activated transcription in yeast, and the transactivating activity was localized to the 13 C-terminal amino acids of Tsi1. Electrophoretic mobility shift assays revealed that Tsi1 could bind specifically to the GCC and the DRE/CRT sequences, although the binding activity to the former was stronger than that to the latter. Furthermore, Agrobacterium-mediated transient expression and transgenic plants expressing Tsi1 demonstrated that overexpression of the Tsi1 gene induced expression of several pathogenesis-related genes under normal conditions, resulting in improved tolerance to salt and pathogens. These results suggest that Tsi1 might be involved as a positive trans-acting factor in two separate signal transduction pathways under abiotic and biotic stress.
机译:使用mRNA差异显示分析,我们分离了盐诱导的转录本,该转录本显示与油料油菜植物的EREBP / AP2 DNA结合基序具有显着的序列同源性。以该cDNA片段为探针,从烟草cDNA文库中分离出cDNA克隆Tsi1(针对烟草胁迫诱导的基因1)。 RNA凝胶印迹分析表明,不仅在NaCl处理的叶片中,而且在用乙烯利或水杨酸处理的叶片中,都诱导了与Tsi1同源的转录本。在BY-2细胞中使用Tsi1 :: smGFP融合基因进行瞬时表达分析表明,Tsi1蛋白靶向细胞核。具有GAL4 DNA结合域的Tsi1融合蛋白强烈激活了酵母中的转录,并且反式激活活性位于Tsi1的13个C末端氨基酸上。电泳迁移率迁移分析表明,Tsi1可以特异性结合GCC和DRE / CRT序列,尽管与前者的结合活性强于后者。此外,农杆菌介导的瞬时表达和表达Tsi1的转基因植物表明,在正常条件下,Tsi1基因的过表达诱导了几种致病相关基因的表达,从而提高了对盐和病原体的耐受性。这些结果表明在非生物和生物胁迫下,Tsi1可能作为正反式作用因子参与两个单独的信号转导途径。

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