School of Life Sciences, Engineering Research Center of Sustainable Development and Utilization of Biomass Energy, Ministry of Education, Key Laboratory of Biomass Energy and Environmental Biotechnology, Yunnan Normal University, Kunming, Yunnan, P.R. China.
Plant Signal Behav. 2022 Dec 31;17(1):1994257. doi: 10.1080/15592324.2021.1994257. Epub 2021 Dec 7.
Glutamic acid (Glu) is not only a protein amino acid, but also a signaling molecule, which takes part in various physiological processes in plants. Our previous study found that root-irrigation with Glu could improve the heat tolerance of maize seedlings by plant Glu receptor-like channels-mediated calcium signaling (Protoplasma, 2019; 256:1165-1169), but its molecular mechanism remains unclear. In this study, based on the our previous work, the maize seedlings were treated with 1 mM Glu prior to be exposed to heat stress (HS), and then the expression of genes related to related to methylglyoxal (MG)-scavenging and osmoregulation systems was quantified. The results showed that Glu treatment up-regulated the gene expression of aldo-keto reductase () under both non-HS and HS conditions. Also, the gene expression of alkenal/alkenone reductase (), glyoxalase II (), pyrroline-5-carboxylate synthase (), betaine dehydrogenase (), and trehalase () was up-regualted by exogenous Glu treatment under HS conditions. These data imply that signaling molecule Glu initiated the expression of genes related to MG-scavenging and osmoregulation systems in maize seedlings, further supporting the fact that Glu-enhanced heat tolerance in plants.
谷氨酸(Glu)不仅是蛋白质氨基酸,还是一种信号分子,参与植物的各种生理过程。我们之前的研究发现,根施 Glu 可以通过植物 Glu 受体样通道介导的钙信号来提高玉米幼苗的耐热性(原生质体,2019;256:1165-1169),但其分子机制尚不清楚。在这项研究中,基于我们之前的工作,在将玉米幼苗暴露于热应激(HS)之前,用 1 mM Glu 处理幼苗,然后定量与甲基乙二醛(MG)清除和渗透调节系统相关的基因的表达。结果表明,Glu 处理在非 HS 和 HS 条件下均上调了醛酮还原酶()的基因表达。此外,在外源 Glu 处理下,HS 条件下烯醛/烯酮还原酶()、甘油醛-3-磷酸脱氢酶()、脯氨酸-5-羧酸合酶()、甜菜碱脱氢酶()和海藻糖酶()的基因表达也被上调。这些数据表明,信号分子 Glu 启动了玉米幼苗中与 MG 清除和渗透调节系统相关的基因的表达,进一步支持了 Glu 增强植物耐热性的事实。