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一氧化氮对拟南芥根毛生长中囊泡的形成和运输是必需的。

Nitric oxide is essential for vesicle formation and trafficking in Arabidopsis root hair growth.

机构信息

Departamento de Biología e Instituto de Investigaciones Biológicas, Universidad Nacional de Mar del Plata, Consejo Nacional de Investigaciones Científicas y Técnicas, CC 1245, 7600 Mar del Plata, Argentina.

出版信息

J Exp Bot. 2012 Aug;63(13):4875-85. doi: 10.1093/jxb/ers166. Epub 2012 Jul 12.

Abstract

The functions of nitric oxide (NO) in processes associated with root hair growth in Arabidopsis were analysed. NO is located at high concentrations in the root hair cell files at any stage of development. NO is detected inside of the vacuole in immature actively growing root hairs and, later, NO is localized in the cytoplasm when they become mature. Experiments performed by depleting NO in Arabidopsis root hairs indicate that NO is required for endocytosis, vesicle formation, and trafficking and it is not involved in nucleus migration, vacuolar development, and transvacuolar strands. The Arabidopsis G'4,3 mutant (double mutant nia1/nia2) is severely impaired in NO production and generates smaller root hairs than the wild type (WT). Root hairs from the Arabidopsis G'4,3 mutant show altered vesicular trafficking and are reminiscent of NO-depleted root hairs from the Arabidopsis WT. Interestingly, normal vesicle formation and trafficking as well as root hair growth is restored by exogenous NO application in the Arabidopsis G'4,3 mutant. All together, these results firmly support the essential role played by NO in the Arabidopsis root-hair-growing process.

摘要

分析了一氧化氮 (NO) 在拟南芥根毛生长相关过程中的功能。NO 在发育的任何阶段都存在于根毛细胞层的高浓度处。NO 在未成熟的、活跃生长的根毛的液泡内被检测到,而后来,当它们成熟时,NO 定位于细胞质中。在拟南芥根毛中耗尽 NO 的实验表明,NO 是内吞作用、囊泡形成和运输所必需的,而它不参与核迁移、液泡发育和跨液泡链。拟南芥 G'4,3 突变体(nia1/nia2 双突变体)在 NO 产生中受到严重损害,并且产生的根毛比野生型(WT)小。拟南芥 G'4,3 突变体的根毛显示出改变的囊泡运输,类似于从拟南芥 WT 耗尽 NO 的根毛。有趣的是,外源性 NO 的应用可在拟南芥 G'4,3 突变体中恢复正常的囊泡形成和运输以及根毛生长。所有这些结果都有力地支持了 NO 在拟南芥根毛生长过程中所起的重要作用。

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