State Key Laboratory of Hybrid Rice, Department of Plant Science College of Life Sciences, Wuhan University, 430072 China.
Hunan Hybrid Rice Research Center, Changsha 410125, China.
G3 (Bethesda). 2017 Jul 5;7(7):2281-2293. doi: 10.1534/g3.117.040808.
The female gametophyte is an important participant in the sexual reproduction of plants. The molecular mechanism of its development has received much attention in recent years. As important regulators of gene expression, miRNAs have been certified to play a significant role in many biological processes of plants, including sexual reproduction. In this study, to investigate the potential regulatory effects of miRNAs on rice female gametophyte abortion, we used the high-throughput sequencing method to compare the miRNA transcriptome in ovules of a high frequency female-sterile line () and a rice wild-type line (Gui 99) during ovule development. As a result, 522 known miRNAs and 295 novel miRNAs were expressed in the developing ovule of rice, while 100 known miRNAs were significantly differentially expressed between these two rice lines during ovule development. Combining with gene expression information, a total of 627 coherent target genes of these differential expressed known miRNAs between and Gui 99 were identified. The functional analyses of these coherent target genes revealed that the coherent target genes of differential expressed known miRNAs between the two rice lines are involved in many biological pathways, such as protein degradation, auxin signal transduction, and transcription factor regulation. These results provide us with important clues to investigate the regulatory roles of miRNAs in rice female gametophyte abortion.
雌配子体是植物有性繁殖的重要参与者。近年来,其发育的分子机制受到了广泛关注。miRNAs 作为基因表达的重要调节剂,已被证明在植物的许多生物学过程中发挥着重要作用,包括有性繁殖。在这项研究中,为了研究 miRNAs 对水稻雌配子体败育的潜在调控作用,我们使用高通量测序方法比较了高频率雌性不育系 () 和水稻野生型系 (桂 99) 在胚珠发育过程中的 miRNA 转录组。结果表明,在水稻发育中的胚珠中表达了 522 个已知的 miRNAs 和 295 个新的 miRNAs,而在这两个水稻系的胚珠发育过程中,有 100 个已知的 miRNAs 存在显著差异表达。结合基因表达信息,总共鉴定出这两个水稻系之间差异表达的已知 miRNAs 的 627 个协同靶基因。对这些协同靶基因的功能分析表明,这两个水稻系之间差异表达的已知 miRNAs 的协同靶基因参与了许多生物学途径,如蛋白质降解、生长素信号转导和转录因子调控。这些结果为我们研究 miRNAs 在水稻雌配子体败育中的调控作用提供了重要线索。