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拟南芥水通道蛋白基因 TsPIP1;1 的异位表达提高了水稻的耐盐性。

Ectopic Expression of a Thellungiella salsuginea Aquaporin Gene, TsPIP1;1, Increased the Salt Tolerance of Rice.

机构信息

Lab of Plant Nutrition Molecular Biology, Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Int J Mol Sci. 2018 Jul 30;19(8):2229. doi: 10.3390/ijms19082229.

Abstract

Aquaporins play important regulatory roles in the transport of water and small molecules in plants. In this study, a aquaporin was transformed into Kitaake rice, and three transgenic lines were evaluated by profiling the changes of the physiological metabolism, osmotic potential, and differentially expressed genes under salt stress. The TsPIP1;1 protein contains six transmembrane domains and is localized in the cytoplasm membrane. Overexpression of the gene not only increased the accumulation of prolines, soluble sugars and chlorophyll, but also lowered the osmotic potential and malondialdehyde content in rice under salt stress, and alleviated the amount of salt damage done to rice organs by regulating the distribution of Na/K ions, thereby promoting photosynthetic rates. Transcriptome sequencing confirmed that the differentially expressed genes that are up-regulated in rice positively respond to salt stimulus, the photosynthetic metabolic process, and the accumulation profiles of small molecules and Na/K ions. The co-expressed and genes in rice were remarkably up-regulated under salt stress. This data suggests that overexpression of the gene is involved in the regulation of water transport, the accumulation of Na/K ions, and the translocation of photosynthetic metabolites, thus conferring enhanced salt tolerance to rice.

摘要

水通道蛋白在植物水分和小分子的运输中发挥着重要的调节作用。本研究将一个水通道蛋白转化到了大米品种“Kitaake”中,并通过分析盐胁迫下生理代谢、渗透势和差异表达基因的变化,对三个转基因株系进行了评估。TsPIP1;1 蛋白含有六个跨膜结构域,定位于细胞质膜上。该基因的过表达不仅增加了脯氨酸、可溶性糖和叶绿素的积累,而且降低了盐胁迫下水稻的渗透势和丙二醛含量,并通过调节 Na/K 离子的分布减轻了盐对水稻器官的损伤,从而促进了光合作用速率。转录组测序证实,水稻中上调表达的差异表达基因对盐刺激、光合作用代谢过程以及小分子和 Na/K 离子的积累模式呈阳性响应。盐胁迫下,水稻中与 TsPIP1;1 共表达的基因显著上调。这些数据表明,过表达 TsPIP1;1 基因参与了水运输、Na/K 离子的积累和光合代谢产物的转运的调节,从而赋予了水稻增强的耐盐性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43eb/6122036/a89b919a39dd/ijms-19-02229-g001.jpg

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