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开花植物褪黑素的分子机制和进化历史。

Molecular mechanisms and evolutionary history of phytomelatonin in flowering.

机构信息

School of Ecology and Environmental Science, Yunnan University, Kunming, China.

Biocontrol Engineering Research Center of Plant Disease and Pest, Yunnan University, Kunming, China.

出版信息

J Exp Bot. 2022 Sep 30;73(17):5840-5850. doi: 10.1093/jxb/erac164.

Abstract

Flowering is a critical stage in plant life history, which is coordinated by environmental signals and endogenous cues. Phytomelatonin is a widely distributed indoleamine present in all living organisms and plays pleiotropic roles in plant growth and development. Recent evidence has established that phytomelatonin could modulate flowering in many species, probably in a concentration-dependent manner. Phytomelatonin seems to associate with floral meristem identification and floral organ formation, and the fluctuation of phytomelatonin might be important for flowering. Regarding the underlying mechanisms, phytomelatonin interacts with the central components of floral gene regulatory networks directly or indirectly, including the MADS-box gene family, phytohormones, and reactive oxygen species (ROS). From an evolutionary point of view, the actions of phytomelatonin in flowering probably evolved during the period of the diversification of flowering plants and could be regarded as a functional extension of its primary activities. The presumed evolutionary history of phytomelatonin-modulated flowering is proposed, presented in the chronological order of the appearance of phytomelatonin and core flowering regulators, namely DELLA proteins, ROS, and phytohormones. Further efforts are needed to address some intriguing aspects, such as the exploration of the association between phytomelatonin and photoperiodic flowering, phytomelatonin-related floral MADS-box genes, the crosstalk between phytomelatonin and phytohormones, as well as its potential applications in agriculture.

摘要

开花是植物生活史中的一个关键阶段,它受到环境信号和内源性线索的协调。植物褪黑素是一种广泛分布的吲哚胺,存在于所有生物中,在植物生长和发育中发挥着多种作用。最近的证据表明,植物褪黑素可能以浓度依赖的方式调节许多物种的开花。植物褪黑素似乎与花分生组织的鉴定和花器官的形成有关,植物褪黑素的波动可能对开花很重要。关于潜在的机制,植物褪黑素直接或间接地与花基因调控网络的核心组成部分相互作用,包括 MADS-box 基因家族、植物激素和活性氧(ROS)。从进化的角度来看,植物褪黑素在开花中的作用可能是在开花植物多样化的时期进化而来的,可以被视为其主要活动的功能延伸。提出了植物褪黑素调节开花的假定进化历史,按照植物褪黑素和核心开花调节剂(即 DELLA 蛋白、ROS 和植物激素)出现的时间顺序呈现。需要进一步努力解决一些有趣的方面,例如探索植物褪黑素与光周期开花的关系、植物褪黑素相关的花 MADS-box 基因、植物褪黑素与植物激素之间的串扰,以及其在农业中的潜在应用。

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