College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 311121, China.
College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
Int J Mol Sci. 2024 May 13;25(10):5310. doi: 10.3390/ijms25105310.
Plant growth is coordinated with the availability of nutrients that ensure its development. Nitrate is a major source of nitrogen (N), an essential macronutrient for plant growth. It also acts as a signaling molecule to modulate gene expression, metabolism, and a variety of physiological processes. Recently, it has become evident that the calcium signal appears to be part of the nitrate signaling pathway. New key players have been discovered and described in (Arabidopsis). In addition, knowledge of the molecular mechanisms of how N signaling affects growth and development, such as the nitrate control of the flowering process, is increasing rapidly. Here, we review recent advances in the identification of new components involved in nitrate signal transduction, summarize newly identified mechanisms of nitrate signaling-modulated flowering time in Arabidopsis, and suggest emerging concepts and existing open questions that will hopefully be informative for further discoveries.
植物的生长与营养物质的供应相协调,以确保其发育。硝酸盐是氮(N)的主要来源,N 是植物生长所必需的大量营养素。它还作为一种信号分子来调节基因表达、代谢和各种生理过程。最近,钙信号似乎是硝酸盐信号通路的一部分。在拟南芥中发现并描述了新的关键参与者。此外,关于 N 信号如何影响生长和发育的分子机制的知识,例如硝酸盐对开花过程的控制,正在迅速增加。在这里,我们回顾了鉴定参与硝酸盐信号转导的新成分的最新进展,总结了拟南芥中硝酸盐信号调节开花时间的新发现机制,并提出了新出现的概念和现有的未解决的问题,希望这对进一步的发现有帮助。