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首页> 外文期刊>BMC Plant Biology >A novel sucrose transporter gene IbSUT4 involves in plant growth and response to abiotic stress through the ABF-dependent ABA signaling pathway in Sweetpotato
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A novel sucrose transporter gene IbSUT4 involves in plant growth and response to abiotic stress through the ABF-dependent ABA signaling pathway in Sweetpotato

机译:一种新颖的蔗糖转运蛋白IBSUT4涉及植物生长和通过SweetPotato的ABF依赖性ABA信号通路对非生物胁迫的反应

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To maintain sweetpotato (Ipomoea batatas (L.) Lam) growth and yield, sucrose must be transported from the leaves to the roots. Sucrose transporters or carriers (SUTs or SUCs) transport sucrose and are involved in plant growth and response to abiotic stress. However, the mechanisms of SUTs in sweetpotato abiotic stress resistance remains to be determined. In the present study, we cloned a novel IbSUT4 gene; the protein encoded by this gene is localized in the tonoplast and plasma membrane. The plant growth was promoted in the IbSUT4 transgenic Arabidopsis thaliana lines, with increased expression of AtFT, a regulator of flowering time in plants. Over-expression of IbSUT4 in Arabidopsis thaliana resulted in higher sucrose content in the roots and lower sucrose content in the leaves, as compared to the wild-type (WT) plants, leading to improved stress tolerance during seedling growth. Moreover, we systematically analyzed the mechanisms of IbSUT4 in response to abiotic stress. The results suggest that the ABRE-motif was localized in the IbSUT4 promoter region, and the expression of the ABA signaling pathway genes (i.e., ABF2, ABF4, SnRK2.2, SnRK2.3, and PYL8/RCAR3) were induced, and the expression of ABI1 was inhibited. Our dates provide evidence that IbSUT4 is not only involved in plant growth but also is an important positive regulator in plant stress tolerance through the ABF-dependent ABA signaling pathway.
机译:为了维持甘薯(IPOMOEA Batatas(L.)LAM)生长和产量,必须从叶片输送到根部的蔗糖。蔗糖转运蛋白或载体(Suts或Sucs)运输蔗糖,并参与植物生长和对非生物胁迫的反应。然而,Suts在甘薯非生物胁迫阻力中的机制仍有待确定。在本研究中,我们克隆了一种新型的IBSUT4基因;通过该基因编码的蛋白质在调色剂和质膜中局部化。植物生长在IBSUT4转基因拟南芥植物中促进,随着植物中开花时间的调节器的表达增加而增加。与野生型(WT)植物相比,在拟南芥中的IBSut4拟南芥IS的过表达导致叶片中的蔗糖含量更高,叶子中蔗糖含量下降,导致幼苗生长过程中的应力耐受性。此外,我们系统地分析了对非生物胁迫的响应IBSUT4的机制。结果表明,ABRE-MOTIF在IBSUT4启动子区域中定位,诱导了ABA信号传导途径基因(即ABF2,ABF4,SNRK2.2,SNRK2.3和PYL8 / RCAR3)的表达,以及ABI1的表达被抑制。我们的日期提供了证据表明IBSUT4不仅参与植物生长,而且还是通过ABF依赖性ABA信号传导途径的植物应力耐受性的重要阳性调节因子。

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