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首页> 外文期刊>Journal of Experimental Botany >Cloning and characterization of TaSnRK2.3, a novel SnRK2 gene in common wheat.
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Cloning and characterization of TaSnRK2.3, a novel SnRK2 gene in common wheat.

机译:普通小麦中一个新的SnRK2基因TaSnRK2.3的克隆与鉴定。

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Environmental stresses such as drought, salinity, and cold are major adverse factors that significantly affect agricultural productivity. Protein phosphorylation/dephosphorylation is a major signalling event induced by osmotic stress in higher plants. Sucrose non-fermenting 1-related protein kinase 2 (SnRK2) family members play essential roles in the response to hyperosmotic stresses in plants. In this study, the TaSnRK2.3 gene, a novel SnRK2 member was cloned, and three copies located on chromosomes 1A, 1B, and 1D were identified in common wheat. TaSnRK2.3 was strongly expressed in leaves, and responded to polyethylene glycol, NaCl, abscisic acid, and cold stresses. To characterize its function, transgenic Arabidopsis overexpressing TaSnRK2.3-GFP controlled by the cauliflower mosaic virus 35 S promoter was generated and subjected to severe abiotic stresses. Overexpression of TaSnRK2.3 resulted in an improved root system and significantly enhanced tolerance to drought, salt, and freezing stresses, simultaneously demonstrated by enhanced expression of abiotic stress-responsive genes and ameliorative physiological indices, including a decreased rate of water loss, enhanced cell membrane stability, improved photosynthetic potential, and significantly increased osmotic potential and free proline content under normal and/or stressed conditions. These results demonstrate that TaSnRK2.3 is a multifunctional regulator, with potential for utilization in transgenic breeding for improved abiotic stress tolerance in crop plants.
机译:干旱,盐碱和寒冷等环境压力是严重影响农业生产力的主要不利因素。蛋白磷酸化/去磷酸化是高等植物中渗透胁迫诱导的主要信号转导事件。蔗糖非发酵型1相关蛋白激酶2(SnRK2)家族成员在植物对高渗胁迫的响应中起重要作用。在这项研究中,TaSnRK2.3基因,一个新的SnRK2成员被克隆,并在普通小麦中鉴定出位于1A,1B和1D染色体上的三个拷贝。 TaSnRK2.3在叶子中强烈表达,对聚乙二醇,NaCl,脱落酸和冷胁迫有反应。为了表征其功能,产生了由花椰菜花叶病毒35 S启动子控制的过表达TaSnRK2.3-GFP的转基因拟南芥,并使其承受严重的非生物胁迫。 TaSnRK2.3的过表达可改善根系,并显着提高对干旱,盐和冻害的耐受性,同时通过增强非生物胁迫响应基因的表达和改善的生理指标(包括失水率降低,细胞增强)证明在正常和/或压力条件下,膜的稳定性,改善的光合作用潜力以及显着增加的渗透势和游离脯氨酸含量。这些结果表明,TaSnRK2.3是一种多功能调节剂,具有在转基因育种中用于改善作物非生物胁迫耐受性的潜力。

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