College of Agriculture, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
College of Mechanical and Electronic Engineering, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Int J Mol Sci. 2021 May 20;22(10):5393. doi: 10.3390/ijms22105393.
(1) Background: Blue light is important for the formation of maize stomata, but the signal network remains unclear. (2) Methods: We replaced red light with blue light in an experiment and provided a complementary regulatory network for the stomatal development of maize by using transcriptome and metabolomics analysis. (3) Results: Exposure to blue light led to 1296 differentially expressed genes and 419 differential metabolites. Transcriptome comparisons and correlation signaling network analysis detected 55 genes, and identified 6 genes that work in the regulation of the HY5 module and MAPK cascade, that interact with PTI1, COI1, MPK2, and MPK3, in response to the substitution of blue light in environmental adaptation and signaling transduction pathways. Metabolomics analysis showed that two genes involved in carotenoid biosynthesis and starch and sucrose metabolism participate in stomatal development. Their signaling sites located on the PHI1 and MPK2 sites of the MAPK cascade respond to blue light signaling. (4) Conclusions: Blue light remarkably changed the transcriptional signal transduction and metabolism of metabolites, and eight obtained genes worked in the HY5 module and MAPK cascade.
(1) 背景:蓝光对玉米气孔的形成很重要,但信号网络仍不清楚。(2) 方法:我们在实验中用蓝光取代红光,并通过转录组和代谢组学分析,为玉米气孔发育提供了一个补充的调控网络。(3) 结果:暴露在蓝光下导致 1296 个差异表达基因和 419 个差异代谢物。转录组比较和相关信号网络分析检测到 55 个基因,并鉴定出 6 个基因在 HY5 模块和 MAPK 级联的调节中起作用,这些基因与 PTI1、COI1、MPK2 和 MPK3 相互作用,以响应蓝光在环境适应和信号转导途径中的替代。代谢组学分析表明,两个参与类胡萝卜素生物合成和淀粉和蔗糖代谢的基因参与了气孔发育。它们的信号位点位于 MAPK 级联的 PHI1 和 MPK2 位点,对蓝光信号作出反应。(4) 结论:蓝光显著改变了转录信号转导和代谢物的代谢,获得的 8 个基因在 HY5 模块和 MAPK 级联中起作用。