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亚精胺调控植物水分平衡与 Ca2+-依赖水通道蛋白(TrTIP2-1、TrTIP2-2 和 TrPIP2-7)表达的关系。

Spermine Regulates Water Balance Associated with Ca2+-Dependent Aquaporin (TrTIP2-1, TrTIP2-2 and TrPIP2-7) Expression in Plants under Water Stress.

机构信息

Department of Grassland Science, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Plant Cell Physiol. 2020 Sep 1;61(9):1576-1589. doi: 10.1093/pcp/pcaa080.

Abstract

Spermine (Spm) regulates water balance involved in water channel proteins, aquaporins (AQPs), in plants. An increase in endogenous Spm content via exogenous Spm application significantly improved cell membrane stability, photosynthesis, osmotic adjustment (OA) and water use efficiency (WUE) contributing to enhanced tolerance to water stress in white clover. Spm upregulated TrTIP2-1, TrTIP2-2 and TrPIP2-7 expressions and also increased the abundance of TIP2 and PIP2-7 proteins in white clover under water stress. Spm quickly activated intracellular Ca2+ signaling and Spm-induced TrTIP2-2 and TrPIP2-7 expressions could be blocked by Ca2+ channel blockers and the inhibitor of Ca2+-dependent protein kinase in leaves of white clover. TrSAMS in relation to Spm biosynthesis was first cloned from white clover and the TrSAMS was located in the nucleus. Transgenic Arabidopsis overexpressing the TrSAMS had significantly higher endogenous Spm content and improved cell membrane stability, photosynthesis, OA, WUE and transcript levels of AtSIP1-1, AtSIP1-2, AtTIP2-1, AtTIP2-2, AtPIP1-2, AtPIP2-1 and AtNIP2-1 than wild type in response to water stress. Current findings indicate that Spm regulates water balance via an enhancement in OA, WUE and water transport related to Ca2+-dependent AQP expression in plants under water stress.

摘要

精胺(Spm)调节与植物水通道蛋白水孔蛋白(AQP)有关的水平衡。通过外源 Spm 应用增加内源性 Spm 含量显著提高了细胞膜稳定性、光合作用、渗透调节(OA)和水分利用效率(WUE),从而增强了白三叶草对水分胁迫的耐受性。Spm 上调了 TrTIP2-1、TrTIP2-2 和 TrPIP2-7 的表达,在水分胁迫下,白三叶草中 TIP2 和 PIP2-7 蛋白的丰度也增加。Spm 迅速激活细胞内 Ca2+信号转导,Spm 诱导的 TrTIP2-2 和 TrPIP2-7 表达可被 Ca2+通道阻断剂和 Ca2+-依赖性蛋白激酶抑制剂在白三叶草叶片中阻断。与 Spm 生物合成有关的 TrSAMS 首次从白三叶草中克隆出来,TrSAMS 位于细胞核中。过表达 TrSAMS 的转基因拟南芥具有显著更高的内源性 Spm 含量,并且在应对水分胁迫时,其细胞膜稳定性、光合作用、OA、WUE 和 AtSIP1-1、AtSIP1-2、AtTIP2-1、AtTIP2-2、AtPIP1-2、AtPIP2-1 和 AtNIP2-1 的转录水平均得到改善。目前的研究结果表明,Spm 通过增强 OA、WUE 和与 Ca2+依赖性 AQP 表达有关的水分运输来调节植物在水分胁迫下的水分平衡。

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