Lelarge-Trouverie Caroline, Cohen Mathias, Trémulot Lug, Van Breusegem Frank, Mhamdi Amna, Noctor Graham
Institut des Sciences des Plantes de Paris-Saclay, Unité Mixte de Recherche 8618 Centre National de la Recherche Scientifique, Université Paris-Saclay, 91405, Orsay cedex, France.
Department of Plant Biotechnology and Bioinformatics, VIB, 9052, Ghent, Belgium; VIB Center of Plant Systems Biology, 9052, Ghent, Belgium.
Free Radic Biol Med. 2023 Feb 20;196:145-155. doi: 10.1016/j.freeradbiomed.2023.01.007. Epub 2023 Jan 10.
Studies of the Arabidopsis cat2 mutant lacking the major leaf isoform of catalase have allowed the potential impact of intracellular HO on plant function to be studied. Here, we report a robust analysis of modified gene expression associated with key families involved in metabolite modification in cat2. Through a combined transcriptomic and metabolomic analysis focused on the salicylic acid (SA) and jasmonic acid (JA) pathways, we report key features of the metabolic signatures linked to oxidative stress-induced signaling via these defence hormones and discuss the enzymes that are likely to be involved in determining these features. We provide evidence that specific UDP-glycosyl transferases contribute to the glucosylation of SA that accumulates as a result of oxidative stress in cat2. Glycosides of dihydroxybenzoic acids that accumulate alongside SA in cat2 are identified and, based on the expression of candidate genes, likely routes for their production are discussed. We also report that enhanced intracellular HO triggers induction of genes encoding different enzymes that can metabolize JA. Integrated analysis of metabolite and transcript profiles suggests that a gene network involving specific hydrolases, hydroxylases, and sulfotransferases functions to limit accumulation of the most active jasmonates during oxidative stress.
对缺乏过氧化氢酶主要叶片同工型的拟南芥cat2突变体的研究,使得对细胞内过氧化氢对植物功能的潜在影响进行研究成为可能。在此,我们报告了对cat2中参与代谢物修饰的关键家族相关基因表达变化的深入分析。通过聚焦水杨酸(SA)和茉莉酸(JA)途径的转录组学和代谢组学联合分析,我们报告了与通过这些防御激素介导的氧化应激诱导信号相关的代谢特征的关键特性,并讨论了可能参与决定这些特性的酶。我们提供证据表明,特定的UDP-糖基转移酶有助于cat2中因氧化应激而积累的SA的糖基化。鉴定了在cat2中与SA一起积累的二羟基苯甲酸糖苷,并根据候选基因的表达情况,讨论了它们可能的产生途径。我们还报告说,细胞内过氧化氢水平的升高会触发编码不同能代谢JA的酶的基因的诱导。代谢物和转录本谱的综合分析表明,一个涉及特定水解酶、羟化酶和磺基转移酶的基因网络在氧化应激期间发挥作用,限制最活跃的茉莉酸酯的积累。