Liu Yaqin, Xu Ya, Ling Sheng, Liu Shasha, Yao Jialing
College of Life Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.
Plant Cell Rep. 2017 Jun;36(6):919-931. doi: 10.1007/s00299-017-2123-2. Epub 2017 Mar 15.
Phenotype identification, expression examination, and function prediction declared that the anther-preferential expressing gene PMR may participate in regulation of male gametophyte development in rice. Male germline development in flowering plants produces the pair of sperm cells for double fertilization and the pollen mitosis is a key process of it. Although the structural features of male gametophyte have been defined, the molecular mechanisms regulating the mitotic cell cycle are not well elucidated in rice. Here, we reported an anther-preferential expressing gene in rice, PMR (Pollen Mitosis Relative), playing an essential role in male gametogenesis. When PMR gene was suppressed via RNAi, the mitosis of microspore was severely damaged, and the plants formed unmatured pollens containing only one or two nucleuses at the anthesis, ultimately leading to serious reduction of pollen fertility and seed-setting. The CRISPR mutants, pmr-1 and pmr-2, both showed the similar defects as the PMR-RNAi lines. Further analysis revealed that PMR together with its co-expressing genes were liable to participate in the regulation of DNA metabolism in the nucleus, and affected the activities of some enzymes related to the cell cycle. We finally discussed that unknown protein PMR contained the PHD, SWIB and Plus-3 domains and they might have coordinating functions in regulation pathway of the pollen mitosis in rice.
表型鉴定、表达检测及功能预测表明,花药优先表达基因PMR可能参与水稻雄配子体发育的调控。开花植物中的雄配子体发育产生用于双受精的一对精细胞,而花粉有丝分裂是其关键过程。尽管雄配子体的结构特征已明确,但水稻中调控有丝分裂细胞周期的分子机制尚未完全阐明。在此,我们报道了水稻中的一个花药优先表达基因PMR(花粉有丝分裂相关基因),它在雄配子发生中起重要作用。当通过RNA干扰抑制PMR基因时,小孢子的有丝分裂受到严重破坏,植株在花期形成仅含一个或两个细胞核的未成熟花粉,最终导致花粉育性和结实率严重降低。CRISPR突变体pmr-1和pmr-2均表现出与PMR-RNA干扰株系类似的缺陷。进一步分析表明,PMR及其共表达基因易于参与细胞核中DNA代谢的调控,并影响一些与细胞周期相关的酶的活性。我们最后讨论了未知蛋白PMR含有PHD、SWIB和Plus-3结构域,它们可能在水稻花粉有丝分裂调控途径中具有协同作用。