Liang Chengzhen, Li Aifu, Yu Hua, Li Wenzhen, Liang Chengzhi, Guo Sandui, Zhang Rui, Chu Chengcai
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences Beijing, China.
National Center for Plant Gene Research (Beijing), State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences Beijing, China.
Front Plant Sci. 2017 Feb 7;8:134. doi: 10.3389/fpls.2017.00134. eCollection 2017.
It has been suggested that melatonin acts as an important regulator in controlling root growth and development, but the underlying molecular mechanism driving this relationship remains undetermined. In this study, we demonstrated that melatonin acts as a potent molecule to govern root architecture in rice. Treatments with melatonin significantly inhibited embryonic root growth, and promoted lateral root formation and development. Genome-wide expression profiling by RNA-sequencing revealed auxin-related genes were significantly activated under melatonin treatment. Moreover, several transcription factors and candidate -regulatory elements involved in root growth and developments, as well as auxin-related processes, were over-represented in both co-up and -down differentially expressed genes, suggesting that melatonin-mediated root growth occurs in an auxin signal pathway-dependent manner. Further, gravitropic response analysis determined that melatonin affects auxin-regulated processes in rice root. These data show that melatonin shapes root architecture by directly or indirectly activating the auxin signaling pathway.
有人认为褪黑素是控制根系生长发育的重要调节因子,但其驱动这种关系的潜在分子机制仍未明确。在本研究中,我们证明褪黑素是调控水稻根系结构的有效分子。褪黑素处理显著抑制胚根生长,并促进侧根的形成与发育。通过RNA测序进行的全基因组表达谱分析显示,在褪黑素处理下生长素相关基因被显著激活。此外,在共同上调和下调的差异表达基因中,参与根系生长发育以及生长素相关过程的几个转录因子和候选调控元件的比例过高,这表明褪黑素介导的根系生长以生长素信号通路依赖的方式发生。此外,重力反应分析确定褪黑素影响水稻根中生长素调节的过程。这些数据表明,褪黑素通过直接或间接激活生长素信号通路来塑造根系结构。