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Mechanisms of signal transduction by ethylene: overlapping and non-overlapping signalling roles in a receptor family

机译:乙烯信号转导的机制:受体家族中的重叠和非重叠信号作用

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摘要

The plant hormone ethylene regulates growth and development as well as responses to biotic and abiotic stresses. Over the last few decades, key elements involved in ethylene signal transduction have been identified through genetic approaches, these elements defining a pathway that extends from initial ethylene perception at the endoplasmic reticulum to changes in transcriptional regulation within the nucleus. Here, we present our current understanding of ethylene signal transduction, focusing on recent developments that support a model with overlapping and non-overlapping roles for members of the ethylene receptor family. We consider the evidence supporting this model for sub-functionalization within the receptor family, and then discuss mechanisms by which such a sub-functionalization may occur. To this end, we consider the importance of receptor interactions in modulating their signal output and how such interactions vary in the receptor family. In addition, we consider evidence indicating that ethylene signal output by the receptors involves both phosphorylation-dependent and phosphorylation-independent mechanisms. We conclude with a current model for signalling by the ethylene receptors placed within the overall context of ethylene signal transduction.
机译:植物激素乙烯调节生长和发育以及对生物和非生物胁迫的反应。在过去的几十年中,已经通过遗传方法确定了涉及乙烯信号转导的关键元素,这些元素定义了一条从内质网最初的乙烯感知延伸到核内转录调控变化的途径。在这里,我们介绍当前对乙烯信号转导的理解,重点是支持乙烯受体家族成员具有重叠和非重叠作用的模型的最新进展。我们考虑了支持该模型的受体家族内亚功能化的证据,然后讨论了可能发生这种亚功能化的机制。为此,我们考虑了受体相互作用在调节其信号输出中的重要性以及这种相互作用在受体家族中如何变化。另外,我们考虑证据表明受体输出的乙烯信号涉及磷酸化依赖性和磷酸化依赖性机制。我们以当前模型为结论,该模型用于通过乙烯信号转导的整体环境中的乙烯受体进行信号传递。

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