DIADE, Institut de Recherche pour le Développement, Université de Montpellier, Montpellier, France.
Institut National de la Recherche Agronomique (UMR 386), BPMP, Université de Montpellier, Centre National de la Recherche Scientifique (UMR 5004), Institut National de la Recherche Agronomique, Montpellier SupAgro, F-34060, Montpellier Cedex 2, France.
New Phytol. 2018 Jul;219(1):58-65. doi: 10.1111/nph.15189. Epub 2018 Apr 27.
The mitochondrial calcium uniporter complex (MCUc) was recently characterized in details in metazoans and consists of pore-forming units (MCUs) and regulatory factors that channel calcium (Ca ) ion into the mitochondria. MCUs participate in many stress and developmentally related processes involving Ca . Although multiple homologues of MCUs and one regulatory subunit are usually present in plants, the first functional characterization and contribution to Ca related processes of these proteins have been reported recently. Here, we focused on two predicted Arabidopsis MCUs and studied their role in the germination and the growth of pollen tube, a tip-growing cell type highly dependent on Ca homeostasis. Heterologous expression of MCU1 or MCU2 in yeast is sufficient to generate a mitochondrial Ca influx. MCU1 and MCU2 fluorescent reporters are co-expressed in the vegetative cell mitochondria of the pollen grain but are undetectable in the embryo sac. We demonstrate that MCU1 and MCU2 can form a heterotypic complex. Phenotypic analyses revealed an impaired pollen tube germination and growth in vitro only for the mcu2 mutants suggesting a predominant role of MCU2. Our results show that mitochondrial Ca controlled by MCUs is an additional player in Arabidopsis pollen tube germination and growth.
线粒体钙单向转运体复合物(MCUc)最近在后生动物中被详细描述,由形成通道的单位(MCUs)和调节因子组成,将钙离子(Ca )导入线粒体。MCUs 参与许多与应激和发育相关的过程,涉及 Ca 。尽管植物中通常存在多个 MCU 的同源物和一个调节亚基,但这些蛋白质的第一个功能特征和对 Ca 相关过程的贡献最近才被报道。在这里,我们专注于两个预测的拟南芥 MCU,并研究它们在花粉管萌发和生长中的作用,花粉管是一种高度依赖于 Ca 动态平衡的顶端生长细胞类型。MCU1 或 MCU2 在酵母中的异源表达足以产生线粒体 Ca 内流。MCU1 和 MCU2 的荧光报告基因在花粉粒的营养细胞线粒体中共表达,但在胚囊中无法检测到。我们证明 MCU1 和 MCU2 可以形成异质复合物。表型分析表明,只有 mcu2 突变体的花粉管萌发和生长受到损害,这表明 MCU2 起着主要作用。我们的结果表明,MCU 控制的线粒体 Ca 是拟南芥花粉管萌发和生长的另一个参与者。