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Cell wall damage-induced lignin biosynthesis is regulated by a reactive oxygen species- and jasmonic acid-dependent process in arabidopsis

机译:在拟南芥中,细胞壁损伤诱导的木质素生物合成受活性氧和茉莉酸依赖性过程的调节

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摘要

The plant cell wall is a dynamic and complex structure whose functional integrity is constantly being monitored and maintained during development and interactions with the environment. In response to cell wall damage (CWD), putatively compensatory responses, such as lignin production, are initiated. In this context, lignin deposition could reinforce the cell wall to maintain functional integrity. Lignin is important for the plant's response to environmental stress, for reinforcement during secondary cell wall formation, and for long-distance water transport. Here, we identify two stages and several components of a genetic network that regulate CWD-induced lignin production in Arabidopsis (Arabidopsis thaliana). During the early stage, calcium and diphenyleneiodonium-sensitive reactive oxygen species (ROS) production are required to induce a secondary ROS burst and jasmonic acid (JA) accumulation. During the second stage, ROS derived from the NADPH oxidase RESPIRATORY BURST OXIDASE HOMOLOG D and JA-isoleucine generated by JASMONIC ACID RESISTANT1, form a negative feedback loop that can repress each other's production. This feedback loop in turn seems to influence lignin accumulation. Our results characterize a genetic network enabling plants to regulate lignin biosynthesis in response to CWD through dynamic interactions between JA and ROS.
机译:植物细胞壁是一个动态而复杂的结构,其功能完整性在开发过程中以及与环境的交互过程中不断受到监控和维护。响应于细胞壁损伤(CWD),启动了假定的补偿反应,例如木质素的产生。在这种情况下,木质素沉积可增强细胞壁以维持功能完整性。木质素对于植物对环境压力的响应,在二次细胞壁形成过程中的强化以及长距离水运输而言都非常重要。在这里,我们确定了遗传网络中调节CWD诱导的拟南芥(Arabidopsis thaliana)木质素生产的两个阶段和几个组成部分。在早期阶段,需要产生钙和对二苯撑碘鎓敏感的活性氧(ROS),以诱导二次ROS爆发和茉莉酸(JA)积累。在第二阶段,由NADPH氧化酶呼吸爆发氧化酶HOMOLOG D和JASMONIC ACID RESISTANTANT1产生的JA-异亮氨酸衍生的ROS形成了一个负反馈回路,可以抑制彼此的产生。该反馈回路反过来似乎影响木质素的积累。我们的结果表征了一个遗传网络,该网络使植物能够通过JA和ROS之间的动态相互作用来调节响应CWD的木质素生物合成。

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