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New cross talk between ROS ABA and auxin controlling seed maturation and germination unraveled in APX6 deficient Arabidopsis seeds

机译:ROSABA和生长素之间的新串扰控制了APX6缺乏拟南芥种子的种子成熟和发芽

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摘要

Successful execution of germination program greatly depends on the seeds’ oxidative homeostasis. We recently identified new roles for the H2O2-reducing enzyme ascorbate peroxidase 6 (APX6) in germination control and seeds’ stress tolerance. APX6 replaces APX1 as the dominant APX in dry seeds, and its loss-of-function results in reduced germination due to over accumulation of ROS and oxidative damage. Metabolic analyses in dry apx6 seeds, revealed altered homeostasis of primary metabolites including accumulation of TCA cycle metabolites, ABA and auxin, supporting a novel role for APX6 in regulating cellular metabolism. Increased sensitivity of apx6 mutants to ABA or IAA in germination assays indicated impaired perception of these signals. Relative suppression of ABI3 and ABI5 expression, and induction of ABI4, suggested the activation of a signaling route inhibiting germination in apx6 seeds that is independent of ABI3. Here we provide additional evidence linking ABI4 with ABA- and auxin-controlled inhibition of germination and suggest a hypothetical model for the role of APX6 in the regulation of the crosstalk between these hormones and ROS.
机译:发芽程序的成功执行很大程度上取决于种子的氧化稳态。我们最近确定了减少H2O2的酶抗坏血酸过氧化物酶6(APX6)在发芽控制和种子胁迫耐受性中的新作用。 APX6替代APX1作为干种子中的主要APX,由于ROS的过度积累和氧化损伤,其功能丧失导致发芽减少。在干燥的apx6种子中进行的代谢分析显示,初级代谢物的稳态改变,包括TCA循环代谢物,ABA和生长素的积累,支持APX6在调节细胞代谢中的新作用。在发芽试验中,apx6突变体对ABA或IAA的敏感性增加,表明对这些信号的感知受损。 ABI3和ABI5表达的相对抑制,以及ABI4的诱导,表明抑制apx6种子发芽的信号传导途径的激活,而该发芽独立于ABI3。在这里,我们提供了将ABI4与ABA和植物生长素控制的萌发抑制联系起来的其他证据,并提出了APX6在调节这些激素与ROS之间的串扰中作用的假设模型。

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