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Overexpression of OsMYB48-1 a Novel MYB-Related Transcription Factor Enhances Drought and Salinity Tolerance in Rice

机译:新型MYB相关转录因子OsMYB48-1的过表达增强了水稻的耐旱和耐盐性

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摘要

MYB-type transcription factors (TFs) play essential roles in plant growth, development and respond to environmental stresses. Role of MYB-related TFs of rice in drought stress tolerance is not well documented. Here, we report the isolation and characterization of a novel MYB-related TF, OsMYB48-1, of rice. Expression of OsMYB48-1 was strongly induced by polyethylene glycol (PEG), abscisic acid (ABA), H2O2, and dehydration, while being slightly induced by high salinity and cold treatment. The OsMYB48-1 protein was localized in the nucleus with transactivation activity at the C terminus. Overexpression of OsMYB48-1 in rice significantly improved tolerance to simulated drought and salinity stresses caused by mannitol, PEG, and NaCl, respectively, and drought stress was caused by drying the soil. In contrast to wild type plants, the overexpression lines exhibited reduced rate of water loss, lower malondialdehyde (MDA) content and higher proline content under stress conditions. Moreover, overexpression plants were hypersensitive to ABA at both germination and post-germination stages and accumulated more endogenous ABA under drought stress conditions. Further studies demonstrated that overexpression of OsMYB48-1 could regulate the expression of some ABA biosynthesis genes (OsNCED4, OsNCED5), early signaling genes (OsPP2C68, OSRK1) and late responsive genes (RAB21, OsLEA3, RAB16C and RAB16D) under drought stress conditions. Collectively, these results suggested that OsMYB48-1 functions as a novel MYB-related TF which plays a positive role in drought and salinity tolerance by regulating stress-induced ABA synthesis.
机译:MYB型转录因子(TFs)在植物生长,发育和应对环境胁迫中发挥着重要作用。水稻与MYB相关的TF在干旱胁迫耐受性中的作用尚未得到充分证明。在这里,我们报告水稻的新型MYB相关TF OsMYB48-1的分离和鉴定。聚乙二醇(PEG),脱落酸(ABA),H2O2和脱水强烈诱导OsMYB48-1的表达,而高盐度和冷处理则轻微诱导OsMYB48-1的表达。 OsMYB48-1蛋白位于C末端具有反式激活活性的核中。水稻中OsMYB48-1的过表达显着提高了对分别由甘露醇,PEG和NaCl引起的模拟干旱和盐分胁迫的耐受性,而干旱胁迫是由土壤干燥引起的。与野生型植物相反,过表达系在胁迫条件下表现出降低的失水速率,较低的丙二醛(MDA)含量和较高的脯氨酸含量。此外,过表达植物在发芽和发芽后阶段对ABA都高度敏感,并且在干旱胁迫条件下积累了更多的内源ABA。进一步的研究表明,在干旱胁迫条件下,OsMYB48-1的过表达可以调节某些ABA生物合成基因(OsNCED4,OsNCED5),早期信号基因(OsPP2C68,OSRK1)和晚期响应基因(RAB21,OsLEA3,RAB16C和RAB16D)的表达。总体而言,这些结果表明,OsMYB48-1作为一种新型的MYB相关TF,通过调节胁迫诱导的ABA合成,在干旱和盐分耐受性中发挥了积极作用。

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