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Novel perspectives on the molecular crosstalk mechanisms of serotonin and melatonin in plants

机译:植物中血清素和褪黑素分子串扰机制的新颖透视

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摘要

Current review focuses on the significant role of serotonin and melatonin in various molecular crosstalk mechanisms in plants. In this context phytohormones (like auxin, gibberellins, ethylene or abscisic acid), plant growth regulators, and associated biomolecules like reactive oxygen species, nitric oxide, brassinosteroids and hydrogen sulphide have been discussed in a wider context. Long distance signaling responses of serotonin in association with auxin, jasmonic acid, salicylic acid and ABA have been critically reviewed. Auxin-serotonin crosstalk in relation to PIN protein functioning and root growth regulation appears to be a major advancement in the context of phytoserotonin signaling in plants. Auxin and serotonin share structural similarities which bring possibilities of auxin receptors being surrogated for serotonin transport in plants. The modulation of root apex architecture is highly regulative in terms of serotonin-jasmonic acid crosstalk. Reactive oxygen species (ROS) appears to be a primary mediator of serotonin mediated root growth response. Serotonin induced signaling therefore involve ROS, auxin, JA and ethylene action. Although there exists handful of critical reviews on the role of phytomelatonin in plants, recent advancements on its regulatory role in modulating plant hormones, ROS scavenging enzymes, ROS/RNS and glutathione levels need attention. Melatonin signaling associated with nitrogen metabolism and nitrosative stress are recent developments in plants. Interesting relationship between nitric oxide and melatonin has been established in relation with biotic and abiotic stress tolerance in plants. Developments in hydrogen sulphide-melatonin signaling in plants are still at its nascent stage but exhibits promising scopes for future.
机译:目前的审查重点是血清素和褪黑素在植物中各种分子串扰机制中的显着作用。在这种情况下,在更广泛的背景下讨论了植物生长调节剂,植物生长调节剂,植物生长调节剂,植物生长调节剂,植物生长调节剂和相关的生物分子,如反应性氧物质,一氧化氮,芸苔类固醇和硫化氢。血清素与生长素,茉莉酸,水杨酸和ABA相关联的长距离信号响应已受到严重回顾。与PIN蛋白功能和根生长调节有关的生长素 - 血清素串扰似乎是植物中植物霉素信号传导的背景下的主要进步。生长素和血清素份子股骨结构相似性,其带来植物中血清素转运的毒素受体的可能性。根顶部架构的调制在血清素-Jasmonic酸串扰方面是高度的。反应性氧物质(ROS)似乎是血清素介导的根生长反应的主要介体。因此,血清素诱导的信号传导涉及ROS,毒素,JA和乙烯作用。虽然存在关于植物中植物素的作用的关键评价,但最近对调节植物激素,ROS清除酶,ROS / RNS和谷胱甘肽水平的调控作用的进步需要注意。与氮代谢和亚硝基胁迫相关的褪黑激素信号传导是植物的最新发展。在植物中与生物和非生物胁迫耐受性建立了一氧化氮和褪黑激素之间的有趣关系。植物中硫化氢 - 褪黑激素信号传导的发展仍处于新生阶段,但展示了未来的有希望的范围。

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