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Heterologous Expression of AtWRKY57 Confers Drought Tolerance in Oryza sativa

机译:AtWRKY57的异源表达赋予水稻抗旱性

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摘要

Drought stress is a severe environmental factor that greatly restricts plant distribution and crop production. Recently, we have found that overexpressing AtWRKY57 enhanced drought tolerance in Arabidopsis thaliana. In this study, we further reported that the Arabidopsis WRKY57 transcription factor was able to confer drought tolerance to transgenic rice (Oryza sativa) plants. The enhanced drought tolerance of transgenic rice was resulted from the lower water loss rates, cell death, malondialdehyde contents and relative electrolyte leakage while a higher proline content and reactive oxygen species-scavenging enzyme activities was observed during stress conditions. Moreover, further investigation revealed that the expression levels of several stress-responsive genes were up-regulated in drought-tolerant transgenic rice plants, compared with those in wild-type plants. In addition to the drought tolerance, the AtWRKY57 over-expressing plants also had enhanced salt and PEG stress tolerances. Taken together, our study indicates that over-expressing AtWRKY57 in rice improved not only drought tolerance but also salt and PEG tolerance, demonstrating its potential role in crop improvement.
机译:干旱胁迫是严重的环境因素,极大地限制了植物的分布和作物的产量。最近,我们发现过表达AtWRKY57增强了拟南芥的耐旱性。在这项研究中,我们进一步报道了拟南芥WRKY57转录因子能够赋予转基因水稻(Oryza sativa)植物抗旱性。转基因水稻的干旱耐受性增强是由于较低的失水率,细胞死亡,丙二醛含量和相对电解质渗漏,而在胁迫条件下观察到较高的脯氨酸含量和活性氧清除酶活性。此外,进一步的研究表明,与野生型植物相比,耐旱的转基因水稻植物中几种胁迫反应基因的表达水平上调。除抗旱性外,过表达AtWRKY57的植物还具有更高的盐和PEG胁迫耐性。综上所述,我们的研究表明,水稻中过量表达AtWRKY57不仅提高了耐旱性,而且提高了盐和PEG耐性,证明了其在作物改良中的潜在作用。

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