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Perturbation of Auxin Homeostasis and Signaling by PINOID Overexpression Induces Stress Responses in Arabidopsis

机译:生长素动态平衡的扰动和PINOID过表达的信号诱导拟南芥中的应激反应。

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摘要

Under normal and stress conditions plant growth require a complex interplay between phytohormones and reactive oxygen species (ROS). However, details of the nature of this crosstalk remain elusive. Here, we demonstrate that PINOID (PID), a serine threonine kinase of the AGC kinase family, perturbs auxin homeostasis, which in turn modulates rosette growth and induces stress responses in Arabidopsis plants. Arabidopsis mutants and transgenic plants with altered PID expression were used to study the effect on auxin levels and stress-related responses. In the leaves of plants with ectopic PID expression an accumulation of auxin, oxidative burst and disruption of hormonal balance was apparent. Furthermore, PID overexpression led to the accumulation of antioxidant metabolites, while pid knockout mutants showed only moderate changes in stress-related metabolites. These physiological changes in the plants overexpressing PID modulated their response toward external drought and osmotic stress treatments when compared to the wild type. Based on the morphological, transcriptome, and metabolite results, we propose that perturbations in the auxin hormone levels caused by PID overexpression, along with other hormones and ROS downstream, cause antioxidant accumulation and modify growth and stress responses in Arabidopsis. Our data provide further proof for a strong correlation between auxin and stress biology.
机译:在正常和胁迫条件下,植物生长需要植物激素和活性氧(ROS)之间复杂的相互作用。但是,这种串扰性质的细节仍然难以捉摸。在这里,我们证明了PINOID(PID),一种AGC激酶家族的丝氨酸苏氨酸激酶,干扰了植物生长素的稳态,进而调节了玫瑰花的生长并诱导了拟南芥植物的胁迫反应。 PID改变的拟南芥突变体和转基因植物被用来研究对生长素水平和应激相关反应的影响。在异位PID表达的植物叶片中,生长素的积累,氧化性爆发和激素平衡的破坏是显而易见的。此外,PID的过表达导致抗氧化剂代谢产物的积累,而pid基因敲除突变体仅显示出与应激相关的代谢产物的中等变化。与野生型相比,过表达PID的植物中的这些生理变化调节了它们对外部干旱和渗透胁迫处理的响应。基于形态学,转录组和代谢产物的结果,我们建议由PID过表达引起的生长素激素水平的扰动,以及下游的其他激素和ROS,引起抗氧化剂积累并改变拟南芥中的生长和胁迫响应。我们的数据为生长素和应激生物学之间的强相关性提供了进一步的证据。

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