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首页> 外文期刊>Plant physiology >The Rice High-Affinity Potassium Transporter1;1 Is Involved in Salt Tolerance and Regulated by an MYB-Type Transcription Factor
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The Rice High-Affinity Potassium Transporter1;1 Is Involved in Salt Tolerance and Regulated by an MYB-Type Transcription Factor

机译:水稻高亲和力钾转运体1; 1参与耐盐性并受MYB型转录因子的调控。

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摘要

Sodium transporters play key roles in plant tolerance to salt stress. Here, we report that a member of the High-Affinity K+ Transporter (HKT) family, OsHKT1;1, in rice (Oryza sativa 'Nipponbare') plays an important role in reducing Na+ accumulation in shoots to cope with salt stress. The oshkt1;1 mutant plants displayed hypersensitivity to salt stress. They contained less Na+ in the phloem sap and accumulated more Na+ in the shoots compared with the wild type. OsHKT1; 1 was expressed mainly in the phloem of leaf blades and up-regulated in response to salt stress. Using a yeast one-hybrid approach, a novel MYB coiled-coil type transcription factor, OsMYBc, was found to bind to the OsHKT1; 1 promoter. In vivo chromatin immunoprecipitation and in vitro electrophoresis mobility shift assays demonstrated that OsMYBc binds to AAANATNC(C/T) fragments within the OsHKT1; 1 promoter. Mutation of the OsMYBc-binding nucleotides resulted in a decrease in promoter activity of OsHKT1;1. Knockout of OsMYBc resulted in a reduction in NaCl-induced expression of OsHKT1; 1 and salt sensitivity. Taken together, these results suggest that OsHKT1; 1 has a role in controlling Na+ concentration and preventing sodium toxicity in leaf blades and is regulated by the OsMYBc transcription factor.
机译:钠转运蛋白在植物对盐胁迫的耐受性中起关键作用。在这里,我们报道水稻(Oryza sativa'Nipponbare')中的高亲和力K +转运蛋白(HKT)家族OsHKT1; 1在减少芽中Na +积累以应对盐胁迫中起着重要作用。 oshkt1; 1突变植物对盐胁迫表现出超敏性。与野生型相比,它们在韧皮部汁液中所含的Na +较少,并且在芽中积累的Na +较多。 OsHKT1; 1主要在叶片的韧皮部表达,并响应盐胁迫而上调。使用酵母单杂交方法,发现一种新型MYB螺旋缠绕型转录因子OsMYBc与OsHKT1结合。 1个启动子。体内染色质免疫沉淀和体外电泳迁移率变动分析表明,OsMYBc与OsHKT1内的AAANATNC(C / T)片段结合。 1个启动子。 OsMYBc结合核苷酸的突变导致OsHKT1; 1启动子活性降低。敲除OsMYBc导致NaCl诱导的OsHKT1表达减少。 1,对盐敏感。综合来看,这些结果表明OsHKT1; 1在控制叶片中的Na +浓度和防止钠中毒方面具有作用,并由OsMYBc转录因子调节。

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