Exploring lipid signaling in plant physiology: From cellular membranes to environmental adaptation

IF 4 3区 生物学 Q1 PLANT SCIENCES
Malika Oubohssaine, Mohamed Hnini, Karim Rabeh
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引用次数: 0

Abstract

Lipids have evolved as versatile signaling molecules that regulate a variety of physiological processes in plants. Convincing evidence highlights their critical role as mediators in a wide range of plant processes required for survival, growth, development, and responses to environmental conditions such as water availability, temperature changes, salt, pests, and diseases. Understanding lipid signaling as a critical process has helped us expand our understanding of plant biology by explaining how plants sense and respond to environmental cues. Lipid signaling pathways constitute a complex network of lipids, enzymes, and receptors that coordinate important cellular responses and stressing plant biology's changing and adaptable traits. Plant lipid signaling involves a wide range of lipid classes, including phospholipids, sphingolipids, oxylipins, and sterols, each of which contributes differently to cellular communication and control. These lipids function not only as structural components, but also as bioactive molecules that transfer signals. The mechanisms entail the production of lipid mediators and their detection by particular receptors, which frequently trigger downstream cascades that affect gene expression, cellular functions, and overall plant growth. This review looks into lipid signaling in plant physiology, giving an in-depth look and emphasizing its critical function as a master regulator of vital activities.

探索植物生理学中的脂质信号转导:从细胞膜到环境适应
脂质已进化为调节植物各种生理过程的多功能信号分子。令人信服的证据突出表明,脂质在植物生存、生长、发育以及对水分供应、温度变化、盐分、虫害和疾病等环境条件的反应所需的各种过程中发挥着关键的媒介作用。了解脂质信号转导这一关键过程有助于我们解释植物如何感知和响应环境线索,从而拓展我们对植物生物学的理解。脂质信号通路构成了一个由脂质、酶和受体组成的复杂网络,它们协调重要的细胞反应,并对植物生物学不断变化和适应性强的特性施加压力。植物脂质信号转导涉及多种脂质类别,包括磷脂、鞘脂、氧脂和固醇,每种脂质对细胞通讯和控制都有不同的作用。这些脂质不仅是结构成分,还是传递信号的生物活性分子。其机制包括脂质介质的产生和特定受体对它们的检测,这通常会触发下游级联,从而影响基因表达、细胞功能和植物的整体生长。本综述将深入探讨植物生理学中的脂质信号转导,并强调其作为生命活动主调节器的重要功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of plant physiology
Journal of plant physiology 生物-植物科学
CiteScore
7.20
自引率
4.70%
发文量
196
审稿时长
32 days
期刊介绍: The Journal of Plant Physiology is a broad-spectrum journal that welcomes high-quality submissions in all major areas of plant physiology, including plant biochemistry, functional biotechnology, computational and synthetic plant biology, growth and development, photosynthesis and respiration, transport and translocation, plant-microbe interactions, biotic and abiotic stress. Studies are welcome at all levels of integration ranging from molecules and cells to organisms and their environments and are expected to use state-of-the-art methodologies. Pure gene expression studies are not within the focus of our journal. To be considered for publication, papers must significantly contribute to the mechanistic understanding of physiological processes, and not be merely descriptive, or confirmatory of previous results. We encourage the submission of papers that explore the physiology of non-model as well as accepted model species and those that bridge basic and applied research. For instance, studies on agricultural plants that show new physiological mechanisms to improve agricultural efficiency are welcome. Studies performed under uncontrolled situations (e.g. field conditions) not providing mechanistic insight will not be considered for publication. The Journal of Plant Physiology publishes several types of articles: Original Research Articles, Reviews, Perspectives Articles, and Short Communications. Reviews and Perspectives will be solicited by the Editors; unsolicited reviews are also welcome but only from authors with a strong track record in the field of the review. Original research papers comprise the majority of published contributions.
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