Wei Ting, He Zilong, Tan XinYu, Liu Xue, Yuan Xiao, Luo Yingfeng, Hu Songnian
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China; University of Chinese Academy of Sciences, Beijing 100049, China.
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China.
Biochem Biophys Res Commun. 2015 Aug 14;464(1):176-81. doi: 10.1016/j.bbrc.2015.06.110. Epub 2015 Jun 23.
Seed germination is a crucial stage for plant development and agricultural production. To investigate its complex regulation process, the RNA-Seq study of rice embryo was conducted at three time points of 0, 12 and 48 h post imbibition (HPI). Dynamic transcriptional alterations were observed, especially in the early stage (0-12 HPI). Seed related genes, especially those encoding desiccation inducible proteins and storage reserves in embryo, decreased drastically after imbibition. The expression profiles of phytohormone related genes indicated distinct roles of abscisic acid (ABA), gibberellin (GA) and brassinosteroid (BR) in germination. Moreover, network analysis revealed the importance of protein phosphorylation in phytohormone interactions. Network and gene ontology (GO) analyses suggested that transcription factors (TFs) played a regulatory role in functional transitions during germination, and the enriched TF families at 0 HPI implied a regulation of epigenetic modification in dry seeds. In addition, 35 germination-specific TF genes in embryo were identified and seven genes were verified by qRT-PCR. Besides, enriched TF binding sites (TFBSs) supported physiological changes in germination. Overall, this study expands our comprehensive knowledge of multiple regulation factors underlying rice seed germination.
种子萌发是植物发育和农业生产的关键阶段。为了研究其复杂的调控过程,在吸胀后0、12和48小时这三个时间点对水稻胚进行了RNA测序研究。观察到了动态转录变化,尤其是在早期阶段(0 - 12小时吸胀后)。种子相关基因,特别是那些编码胚胎中脱水诱导蛋白和贮藏物质的基因,在吸胀后急剧下降。植物激素相关基因的表达谱表明脱落酸(ABA)、赤霉素(GA)和油菜素内酯(BR)在萌发中具有不同的作用。此外,网络分析揭示了蛋白质磷酸化在植物激素相互作用中的重要性。网络和基因本体(GO)分析表明,转录因子(TFs)在萌发过程中的功能转变中起调节作用,在0小时吸胀后富集的TF家族暗示了对干种子中表观遗传修饰的调控。此外,在胚中鉴定出35个萌发特异性TF基因,其中7个基因通过qRT-PCR进行了验证。此外,富集的转录因子结合位点(TFBSs)支持了萌发过程中的生理变化。总体而言,本研究扩展了我们对水稻种子萌发潜在多种调控因子的全面认识。