Structural innovation under environmental pressure: the evolutionary origins and regulatory mechanisms of thorns.

IF 4.8
Forestry research Pub Date : 2026-06-18 eCollection Date: 2026-01-01 DOI:10.48130/forres-0026-0020
Zhe Li, Changhui Tian, Dinghai Zhou, Zhiwen Shi, Lingyan Tan, Yongqing Guo, Yanli Hu, Jihua Mao, Xitong Fei
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Abstract

Plant thorns represent a prominent evolutionary innovation formed through millions of years of natural selection. However, thorn structures greatly restrict the cultivation and management of many economically important crops, making the breeding of thornless varieties a key objective in modern agricultural breeding. Although different plant species possess apparently similar sharp appendages, these structures originate from different plant organs or tissues. Thorns are not merely mechanical defense structures but are the result of evolutionary adaptations by plants to cope with herbivore pressure and abiotic stresses over evolutionary time. Thorn morphogenesis integrates multiple pathways involved in developmental regulation, defense signaling, and environmental perception, reflecting the resource allocation trade-offs between growth investment and defense efficiency in plants. This review provides a comprehensive synthesis of the developmental origins, anatomical diversity, and ecological defense functions of plant thorns. By integrating paleobotanical evidence, this review traces the evolutionary emergence of thorns during the Paleogene and Neogene periods and reveals the adaptive associations between thorn diversification and the radiation of large herbivorous mammals. At the molecular level, this review focuses on recent advances in developmental genetics, with an emphasis on the regulatory networks underlying thorns' development, as well as the regulatory roles and crosstalk mechanisms of phytohormone signaling pathways involved in defense, including jasmonic acid and gibberellin, in thorns' development. Through a multidisciplinary perspective, this review provides a synthesis of current knowledge on the origin, diversification, and environmental adaptive significance of thorns, providing new insights into the developmental plasticity of plant defense structures.

环境压力下的结构创新:荆棘的进化起源与调控机制。
植物的刺代表了经过数百万年的自然选择而形成的一种突出的进化创新。然而,刺结构极大地限制了许多重要经济作物的种植和管理,使无刺品种的选育成为现代农业育种的关键目标。虽然不同的植物物种具有明显相似的尖锐附属物,但这些结构起源于不同的植物器官或组织。刺不仅仅是一种机械的防御结构,而且是植物在进化过程中为了应对食草动物的压力和非生物的压力而进化适应的结果。刺的形态发生整合了植物发育调控、防御信号和环境感知等多种途径,反映了植物生长投资和防御效率之间的资源分配权衡。本文综述了植物刺的发育起源、解剖多样性和生态防御功能等方面的研究进展。本文通过整合古植物学证据,追溯了刺在古近纪和新近纪时期的进化出现,揭示了刺多样化与大型食草哺乳动物辐射之间的适应性关联。在分子水平上,本文综述了发育遗传学的最新进展,重点阐述了刺发育的调控网络,以及茉莉酸和赤霉素等防御相关植物激素信号通路在刺发育中的调控作用和串扰机制。本文从多学科的角度综述了刺的起源、多样性和环境适应意义,为植物防御结构的发育可塑性提供了新的认识。
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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