Key Laboratory of Eco-Environments of Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing, 400715, China.
Chongqing Key Laboratory of Plant Resource Conservation and Germplasm Innovation, Southwest University, Chongqing, 400715, China.
Plant Mol Biol. 2020 Sep;104(1-2):39-53. doi: 10.1007/s11103-020-01022-x. Epub 2020 Jun 20.
Plants are exposed to various environmental cues that lead to reactive oxygen species (ROS) accumulation. ROS production and detoxification are tightly regulated to maintain balance. Although studies of glucose (Glc) are always accompanied by ROS in animals, the role of Glc in respect of ROS in plants is unclear. We isolated gsm2 (Glc-hypersensitive mutant 2), a mutant with a notably chlorotic-cotyledon phenotype. The chloroplast-localized GSM2 was characterized as a transaldolase in the pentose phosphate pathway. With 3% Glc treatment, fewer or no thylakoids were observed in gsm2 cotyledon chloroplasts than in wild-type cotyledon chloroplasts, suggesting that GSM2 is required for chloroplast protection under stress. gsm2 also showed evaluated accumulation of ROS with 3% Glc treatment and was more sensitive to exogenous HO than the wild type. Gene expression analysis of the antioxidant enzymes in gsm2 revealed that chloroplast damage to gsm2 cotyledons results from the accumulation of excessive ROS in response to Glc. Moreover, the addition of diphenyleneiodonium chloride or phenylalanine can rescue Glc-induced chlorosis in gsm2 cotyledons. This work suggests that GSM2 functions to maintain ROS balance in response to Glc during early seedling growth and sheds light on the relationship between Glc, the pentose phosphate pathway and ROS.
植物会受到各种环境信号的影响,导致活性氧(ROS)的积累。ROS 的产生和解毒受到严格的调控,以维持平衡。尽管在动物中,葡萄糖(Glc)的研究总是伴随着 ROS,但 Glc 对植物中 ROS 的作用尚不清楚。我们分离了 gsm2(Glc-敏感突变体 2),这是一种具有明显黄化子叶表型的突变体。定位于叶绿体的 GSM2 被鉴定为戊糖磷酸途径中的转醛醇酶。在 3% Glc 处理下,gsm2 子叶叶绿体中的类囊体比野生型子叶叶绿体中观察到的要少或没有,这表明 GSM2 是叶绿体在应激下保护所必需的。gsm2 在 3% Glc 处理下也表现出 ROS 的积累增加,并且比野生型对外源 HO 更敏感。对 gsm2 中抗氧化酶的基因表达分析表明,gsm2 子叶的叶绿体损伤是由于 Glc 引起的过量 ROS 积累所致。此外,添加二苯并碘二氯或苯丙氨酸可以挽救 gsm2 子叶中 Glc 诱导的黄化。这项工作表明,GSM2 在幼苗生长早期响应 Glc 时,起到维持 ROS 平衡的作用,并揭示了 Glc、戊糖磷酸途径和 ROS 之间的关系。