Institut de Biologie Moléculaire des Plantes (IBMP), UPR2357, associé avec l'Université de Strasbourg, 12, rue Général Zimmer, 67084 Strasbourg Cedex, France.
Institut de Biologie Moléculaire des Plantes (IBMP), UPR2357, associé avec l'Université de Strasbourg, 12, rue Général Zimmer, 67084 Strasbourg Cedex, France.
Mol Plant. 2016 Jan 4;9(1):10-20. doi: 10.1016/j.molp.2015.09.011. Epub 2015 Sep 28.
Plant phenotypic plasticity is controlled by diverse hormone pathways, which integrate and convey information from multiple developmental and environmental signals. Moreover, in plants many processes such as growth, development, and defense are regulated in similar ways by multiple hormones. Among them, gibberellins (GAs) are phytohormones with pleiotropic actions, regulating various growth processes throughout the plant life cycle. Previous work has revealed extensive interplay between GAs and other hormones, but the molecular mechanism became apparent only recently. Molecular and physiological studies have demonstrated that DELLA proteins, considered as master negative regulators of GA signaling, integrate multiple hormone signaling pathways through physical interactions with transcription factors or regulatory proteins from different families. In this review, we summarize the latest progress in GA signaling and its direct crosstalk with the main phytohormone signaling, emphasizing the multifaceted role of DELLA proteins with key components of major hormone signaling pathways.
植物表型可塑性受多种激素途径控制,这些途径整合并传递来自多个发育和环境信号的信息。此外,在植物中,许多过程(如生长、发育和防御)都被多种激素以相似的方式调节。其中,赤霉素(GA)是具有多种作用的植物激素,调节植物整个生命周期中的各种生长过程。先前的工作揭示了 GA 与其他激素之间的广泛相互作用,但直到最近才揭示出其分子机制。分子和生理学研究表明,作为 GA 信号转导的主要负调控因子的 DELLA 蛋白通过与来自不同家族的转录因子或调节蛋白的物理相互作用,整合了多种激素信号通路。在这篇综述中,我们总结了 GA 信号转导及其与主要植物激素信号转导的直接串扰的最新进展,强调了 DELLA 蛋白作为主要激素信号通路关键成分的多方面作用。