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景天科植物玉米石昼夜节律对 CAM 循环水通道蛋白的调节。

Day/night regulation of aquaporins during the CAM cycle in Mesembryanthemum crystallinum.

机构信息

Instituto de Biotecnología, UNAM, A.P. 510-3, Colonia Miraval, Cuernavaca, Morelos, México.

出版信息

Plant Cell Environ. 2012 Mar;35(3):485-501. doi: 10.1111/j.1365-3040.2011.02419.x. Epub 2011 Oct 6.

Abstract

Mesembryanthemum crystallinum exhibits induction of Crassulacean acid metabolism (CAM) after a threshold stage of development, by exposure to long days with high light intensities or by water and salt stress. During the CAM cycle, fluctuations in carbon partitioning within the cell lead to transient drops in osmotic potential, which are likely stabilized/balanced by passive movement of water via aquaporins (AQPs). Protoplast swelling assays were used to detect changes in water permeability during the day/night cycle of CAM. To assess the role of AQPs during the same period, we followed transcript accumulation and protein abundance of four plasma membrane intrinsic proteins (PIPs) and one tonoplast intrinsic protein (TIP). CAM plants showed a persistent rhythm of specific AQP protein abundance changes throughout the day/night cycle, including changes in amount of McPIP2;1, McTIP1;2, McPIP1;4 and McPIP1;5, while the abundance of McPIP1;2 was unchanged. These protein changes did not appear to be coordinated with transcript levels for any of the AQPs analysed; however, they did occur in parrallel to alterations in water permeability, as well as variations in cell osmolarity, pinitol, glucose, fructose and phosphoenolpyruvate carboxylase (PEPc) levels measured throughout the day/night CAM cycle. Results suggest a role for AQPs in maintaining water balance during CAM and highlight the complexity of protein expression during the CAM cycle.

摘要

马齿苋属植物在经历了一定的发育阈值阶段后,通过暴露在高光强的长日照或水盐胁迫下,可以诱导景天酸代谢(CAM)。在 CAM 循环过程中,细胞内碳分配的波动导致渗透势的瞬时下降,这可能通过水通道蛋白(AQP)的被动水运动得到稳定/平衡。质体膨胀测定用于检测 CAM 日/夜循环过程中水分透过性的变化。为了评估 AQP 在同一时期的作用,我们跟踪了四个质膜内在蛋白(PIPs)和一个液泡膜内在蛋白(TIP)的转录积累和蛋白丰度。CAM 植物在日/夜循环过程中表现出特定 AQP 蛋白丰度变化的持续节律,包括 McPIP2;1、McTIP1;2、McPIP1;4 和 McPIP1;5 数量的变化,而 McPIP1;2 的丰度不变。这些蛋白变化似乎与分析的任何 AQP 的转录水平不协调;然而,它们确实与水分透过性的改变、细胞渗透压、肌醇、葡萄糖、果糖和磷酸烯醇丙酮酸羧化酶(PEPc)水平平行发生,这些水平在 CAM 日/夜循环过程中都有测量。结果表明 AQP 在 CAM 过程中维持水分平衡方面发挥作用,并强调了 CAM 循环中蛋白表达的复杂性。

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