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Salicylic Acid Binding Proteins (SABPs): The Hidden Forefront of Salicylic Acid Signalling

机译:水杨酸结合蛋白(SABPs):水杨酸信号传导的隐藏前沿

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摘要

Salicylic acid (SA) is a phytohormone that plays important roles in many aspects of plant life, notably in plant defenses against pathogens. Key mechanisms of SA signal transduction pathways have now been uncovered. Even though details are still missing, we understand how SA production is regulated and which molecular machinery is implicated in the control of downstream transcriptional responses. The NPR1 pathway has been described to play the main role in SA transduction. However, the mode of SA perception is unclear. NPR1 protein has been shown to bind SA. Nevertheless, NPR1 action requires upstream regulatory events (such as a change in cell redox status). Besides, a number of SA-induced responses are independent from NPR1. This shows that there is more than one way for plants to perceive SA. Indeed, multiple SA-binding proteins of contrasting structures and functions have now been identified. Yet, all of these proteins can be considered as candidate SA receptors and might have a role in multinodal (decentralized) SA input. This phenomenon is unprecedented for other plant hormones and is a point of discussion of this review.
机译:水杨酸(SA)是一种植物激素,在植物生命的许多方面都发挥着重要作用,尤其是在植物对病原体的防御中。 SA信号转导途径的关键机制现已被发现。即使仍然缺少细节,我们也了解SA生产的调控方式以及下游转录应答控制中涉及的分子机制。已经描述了NPR1途径在SA转导中起主要作用。但是,对SA感知的方式尚不清楚。 NPR1蛋白已显示与SA结合。但是,NPR1的作用需要上游调节事件(例如细胞氧化还原状态的改变)。此外,许多SA诱导的反应均独立于NPR1。这表明植物可以通过多种方式感知SA。实际上,现已鉴定出具有不同结构和功能的多种SA结合蛋白。但是,所有这些蛋白质都可以被视为候选SA受体,并且可能在多结点(分散)SA输入中发挥作用。这种现象对于其他植物激素是前所未有的,并且是本综述的讨论重点。

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