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Brassinosteroid signaling-dependent root responses to prolonged elevated ambient temperature

机译:油菜素类固醇对长时间升高的环境温度信号依赖的根反应

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Due to their sessile nature, plants have to cope with and adjust to their fluctuating environment. Temperature elevation stimulates the growth of Arabidopsis aerial parts. This process is mediated by increased biosynthesis of the growth-promoting hormone auxin. How plant roots respond to elevated ambient temperature is however still elusive. Here we present strong evidence that temperature elevation impinges on brassinosteroid hormone signaling to alter root growth. We show that elevated temperature leads to increased root elongation, independently of auxin or factors known to drive temperature-mediated shoot growth. We further demonstrate that brassinosteroid signaling regulates root responses to elevated ambient temperature. Increased growth temperature specifically impacts on the level of the brassinosteroid receptor BRI1 to downregulate brassinosteroid signaling and mediate root elongation. Our results establish that BRI1 integrates temperature and brassinosteroid signaling to regulate root growth upon long-term changes in environmental conditions associated with global warming.
机译:由于它们的固着性,植物必须应对并适应其不断变化的环境。温度升高会刺激拟南芥地上部分的生长。该过程由促进生长的激素生长素的生物合成增加介导。然而,植物根系如何应对升高的环境温度仍然是未知的。在这里,我们提供有力的证据表明温度升高会影响油菜素类固醇激素信号传导,从而改变根的生长。我们表明,升高的温度导致根伸长增加,而与生长素或已知驱动温度介导的芽生长的因素无关。我们进一步证明油菜素类固醇信号传导调节对升高的环境温度的根响应。生长温度的升高会特别影响油菜素类固醇受体BRI1的水平,从而下调油菜素类固醇信号传导并介导根伸长。我们的结果表明,BRI1整合了温度和油菜素类固醇信号传导,可在与全球变暖相关的环境条件的长期变化下调节根的生长。

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