首页> 外文期刊>Frontiers in Plant Science >Stress-Inducible Expression of an F-box Gene TaFBA1 from Wheat Enhanced the Drought Tolerance in Transgenic Tobacco Plants without Impacting Growth and Development
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Stress-Inducible Expression of an F-box Gene TaFBA1 from Wheat Enhanced the Drought Tolerance in Transgenic Tobacco Plants without Impacting Growth and Development

机译:来自小麦的F型箱基因<斜体> Tafba1 的应激诱导的表达增强了转基因烟草植物中的耐旱性,而不会影响生长和发育

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E3 ligase plays an important role in the response to many environment stresses in plants. In our previous study, constitutive overexpression of an F-box protein gene TaFBA1 driven by 35S promoter improved the drought tolerance in transgenic tobacco plants, but the growth and development in transgenic plants was altered in normal conditions. In this study, we used stress-inducible promoter RD29A instead of 35S promoter, as a results, the stress-inducible transgenic tobacco plants exhibit a similar phenotype with wild type (WT) plants. However, the drought tolerance of the transgenic plants with stress-inducible expressed TaFBA1 was enhanced. The improved drought tolerance of transgenic plants was indicated by their higher seed germination rate and survival rate, greater biomass and photosynthesis than those of WT under water stress, which may be related to their greater water retention capability and osmotic adjustment. Moreover, the transgenic plants accumulated less reactive oxygen species, kept lower MDA content and membrane leakage under water stress, which may be related to their higher levels of antioxidant enzyme activity and upregulated gene expression of some antioxidant enzymes. These results suggest that stress induced expression of TaFBA1 confers drought tolerance via the improved water retention and antioxidative compete ability. Meanwhile, this stress-inducible expression strategy by RD29A promoter can minimize the unexpectable effects by 35S constitutive promoter on phenotypes of the transgenic plants.
机译:E3 Ligase在对植物中许多环境压力的反应中起重要作用。在我们之前的研究中,由35s启动子驱动的F箱蛋白基因TAFBA1的组成型过表达改善了转基因烟草植物中的耐旱性,但转基因植物的生长和发育在正常情况下改变。在该研究中,我们使用应激诱导的启动子RD29A而不是35S启动子,作为结果,应力诱导的转基因烟草植物表现出类似的野生型(WT)植物的类似表型。然而,提高了转基因诱导表达TAFBA1的转基因植物的耐旱性。通过较高的种子萌发率和生存率,更高的生物量和光合作用而言表明了转基因植物的改善耐受性,其在水分胁迫下的生物质量和光合作用,这可能与其更大的水保持能力和渗透性调节有关。此外,转基因植物累积较少的反应性氧物质,在水分应激下保持较低的MDA含量和膜泄漏,这可能与其较高水平的抗氧化酶活性和一些抗氧化酶的上调的基因表达有关。这些结果表明,应力诱导TAFBA1的表达通过改善的水保留和抗氧化竞争能力来赋予天旱耐受性。同时,通过RD29A启动子的这种应激诱导的表达策略可以使35S组成型启动子对转基因植物的表型最小化的最小值。

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