Kurepa Jasmina, Smalle Jan
Department of Plant & Soil Sciences, Martin-Gatton College of Agriculture, Food and Environment, University of Kentucky, Lexington, KY 40545, USA.
Int J Mol Sci. 2025 Jul 25;26(15):7190. doi: 10.3390/ijms26157190.
As sessile organisms, plants adapt to environmental challenges through flexible developmental and physiological programs. Hormones play a central role in this adaptability, integrating environmental signals into coordinated responses that regulate growth and stress tolerance. Comparative studies across photosynthetic lineages reveal that several core hormone functions are remarkably conserved, despite major evolutionary changes in hormone perception, biosynthesis, metabolism, and transport. This conservation suggests that plant hormones have played a pivotal evolutionary role-not only preserving essential biological functions but also enabling increased complexity in plant form and function. A similar dual role is observed in evolutionary endocrinology in animals, where hormones contribute to the emergence and regulation of complex traits. We propose that hormones such as cytokinins, auxins, brassinosteroids, strigolactones, and abscisic acid originated as metabolic derivatives closely tied to core physiological functions essential for survival and reproduction, including reproductive success, nutrient sensing, and dehydration tolerance. Over time, these compounds were progressively integrated into increasingly sophisticated regulatory networks, where they now serve as central coordinators and key targets of evolutionary selection. This model advances our understanding of hormone evolution by providing a structured framework to interpret the persistence, specialization, and integration of plant hormones across evolutionary timescales.
作为固着生物,植物通过灵活的发育和生理程序来适应环境挑战。激素在这种适应性中起着核心作用,将环境信号整合为协调反应,以调节生长和胁迫耐受性。对光合生物谱系的比较研究表明,尽管激素感知、生物合成、代谢和运输发生了重大进化变化,但几种核心激素功能却显著保守。这种保守性表明,植物激素在进化中发挥了关键作用——不仅保留了基本生物学功能,还使植物的形态和功能变得更加复杂。在动物进化内分泌学中也观察到类似的双重作用,激素有助于复杂性状的出现和调节。我们提出,细胞分裂素、生长素、油菜素内酯、独脚金内酯和脱落酸等激素最初是作为与生存和繁殖所必需的核心生理功能密切相关的代谢衍生物而产生的,这些核心生理功能包括繁殖成功、营养感知和耐旱性。随着时间的推移,这些化合物逐渐融入越来越复杂的调控网络,如今它们在其中充当着核心协调者和进化选择的关键靶点。该模型通过提供一个结构化框架来解释植物激素在进化时间尺度上的持久性、特异性和整合性,从而推进了我们对激素进化的理解。