Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, 310058, P. R. China.
State Key Lab of Agrobiotechnology, School of Life Science, The Chinese University of Hong Kong, N.T., Hong Kong, P. R. China.
Sci Rep. 2017 Sep 13;7(1):11484. doi: 10.1038/s41598-017-10727-x.
Several mitochondrial-targeted pentatricopeptide repeat (PPR) proteins involved in pollen development have been reported to be fertility restorer (Rf) proteins. However, the roles of plastid-localized PPR proteins in plant male reproduction are poorly defined. Here, we described a plastid-localized PPR-SMR protein, OsPPR676, which is required for plant growth and pollen development in rice. In this study, OsPPR676 was confirmed to be an interacted protein with Osj10gBTF3, β-subunit of nascent polypeptide-associated complex (β-NAC), by bimolecular fluorescence complementation assays, indicating that both proteins are probably involved in the same regulatory pathway of pollen development. Compared with other chloroplast-rich tissues, OsPPR676 was only weakly expressed in anther, but in the Mei and YM stages of pollen development, its expression was relatively strong in the tapetum. Disruption of OsPPR676 resulted in growth retardation of plants and partial sterility of pollens. Phenotypic analysis of different osppr676 mutant lines implied that the SMR domain was not essential for the function of OsPPR676. We further demonstrated that OsPPR676 is essential for production of plastid atpB subunit, and then plays crucial roles in biosynthesis of fatty acids, carbohydrates, and other organic matters via affecting activity of ATP synthase.
几种参与花粉发育的线粒体靶向五肽重复(PPR)蛋白已被报道为育性恢复(Rf)蛋白。然而,质体定位的 PPR 蛋白在植物雄性生殖中的作用尚未明确。在这里,我们描述了一种质体定位的 PPR-SMR 蛋白 OsPPR676,它是水稻生长和花粉发育所必需的。在这项研究中,OsPPR676 通过双分子荧光互补实验被确认为与 Osj10gBTF3(新生多肽相关复合物β亚基)相互作用的蛋白,表明这两种蛋白可能参与花粉发育的同一调控途径。与其他富含叶绿体的组织相比,OsPPR676 在花药中仅弱表达,但在花粉发育的 Mei 和 YM 阶段,其在绒毡层中的表达相对较强。OsPPR676 的破坏导致植物生长迟缓,花粉部分不育。不同 osppr676 突变体系的表型分析表明,SMR 结构域对于 OsPPR676 的功能不是必需的。我们进一步证明,OsPPR676 对于质体 atpB 亚基的产生是必需的,然后通过影响 ATP 合酶的活性,在脂肪酸、碳水化合物和其他有机物的生物合成中发挥关键作用。