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Arabidopsis thaliana overexpressing glycolate oxidase in chloroplasts

机译:拟南芥在叶绿体中过表达乙醇酸氧化酶

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摘要

Reactive oxygen species (ROS) represent both toxic by-products of aerobic metabolism as well as signaling molecules in processes like growth regulation and defense pathways. The study of signaling and oxidative-damage effects can be separated in plants expressing glycolate oxidase in the plastids (GO plants), where the production of H2O2 in the chloroplasts is inducible and sustained perturbations can reproducibly be provoked by exposing the plants to different ambient conditions. Thus, GO plants represent an ideal non-invasive model to study events related to the perception and responses to H2O2 accumulation. Metabolic profiling of GO plants indicated that under high light a sustained production of H2O2 imposes coordinate changes on central metabolic pathways. The overall metabolic scenario is consistent with decreased carbon assimilation, which results in lower abundance of glycolytic and tricarboxylic acid cycle intermediates, while simultaneously amino acid metabolism routes are specifically modulated. The GO plants, although retarded in growth and flowering, can complete their life cycle indicating that the reconfiguration of the central metabolic pathways is part of a response to survive and thus, to adapt to stress conditions imposed by the accumulation of H2O2 during the light period.
机译:活性氧(ROS)既代表有氧代谢的有毒副产物,又代表生长调节和防御途径等过程中的信号分子。可以在质体中表达乙醇酸氧化酶的植物(GO植物)中分离信号传导和氧化损伤作用的研究,在植物中可诱导叶绿体中产生H2O2,并且可以通过将植物置于不同的环境条件下来引起持续的扰动。因此,GO植物代表了一种理想的非侵入性模型,用于研究与H2O2积累的感知和反应有关的事件。 GO植物的代谢谱分析表明,在强光下,H2O2的持续产生会在中央代谢途径上施加坐标变化。总体代谢情况与减少的碳同化相一致,这导致糖酵解和三羧酸循环中间体的丰度降低,同时氨基酸代谢途径得到了专门调节。 GO植物尽管生长和开花受阻,但可以完成其生命周期,表明中央代谢途径的重构是生存反应的一部分,因此能够适应光照期间H2O2积累所施加的胁迫条件。

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