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ACCERBATIN, a small molecule at the intersection of auxin and reactive oxygen species homeostasis with herbicidal properties

机译:aCCERBaTIN,一种在生长素和活性氧物种稳态交叉的小分子,具有除草特性

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摘要

The volatile two-carbon hormone ethylene acts in concert with an array of signals to affect etiolated seedling development. From a chemical screen, we isolated a quinoline carboxamide designated ACCERBATIN (AEX) that exacerbates the 1-aminocyclopropane-1-carboxylic acid-induced triple response, typical for ethylene-treated seedlings in darkness. Phenotypic analyses revealed distinct AEX effects including inhibition of root hair development and shortening of the root meristem. Mutant analysis and reporter studies further suggested that AEX most probably acts in parallel to ethylene signaling. We demonstrated that AEX functions at the intersection of auxin metabolism and reactive oxygen species (ROS) homeostasis. AEX inhibited auxin efflux in BY-2 cells and promoted indole-3-acetic acid (IAA) oxidation in the shoot apical meristem and cotyledons of etiolated seedlings. Gene expression studies and superoxide/hydrogen peroxide staining further revealed that the disrupted auxin homeostasis was accompanied by oxidative stress. Interestingly, in light conditions, AEX exhibited properties reminiscent of the quinoline carboxylate-type auxin-like herbicides. We propose that AEX interferes with auxin transport from its major biosynthesis sites, either as a direct consequence of poor basipetal transport from the shoot meristematic region, or indirectly, through excessive IAA oxidation and ROS accumulation. Further investigation of AEX can provide new insights into the mechanisms connecting auxin and ROS homeostasis in plant development and provide useful tools to study auxin-type herbicides.
机译:挥发性二碳激素乙烯与一系列信号协同作用,影响黄化幼苗的发育。从化学筛选中,我们分离出一种称为ACCERBATIN(AEX)的喹啉甲酰胺,该衍生物会加剧1-氨基环丙烷-1-羧酸诱导的三重响应,这通常是在黑暗中用乙烯处理的幼苗。表型分析揭示了独特的AEX效应,包括抑制根毛发育和缩短根分生组织。突变分析和记者研究进一步表明,AEX最有可能与乙烯信号传导并行。我们证明了AEX在生长素代谢和活性氧(ROS)动态平衡的交叉点起作用。 AEX抑制了BY-2细胞中的生长素外排,并促进了黄化幼苗的茎尖分生组织和子叶中的吲哚-3-乙酸(IAA)氧化。基因表达研究和超氧化物/过氧化氢染色进一步表明,生长素稳态的破坏伴随着氧化应激。有趣的是,在光照条件下,AEX表现出让人联想到喹啉羧酸酯型生长素样除草剂的特性。我们建议,AEX会干扰其主要生物合成部位的生长素运输,这可能是茎杆分生组织区域的不良基层植物运输的直接结果,也可能是由于过度的IAA氧化和ROS积累而间接造成的。对AEX的进一步研究可以为植物生长中连接生长素和ROS稳态的机制提供新的见解,并为研究生长素类除草剂提供有用的工具。

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