Yongfang Yang, Hao Lou, Weicheng Wang, Xiaoyi Shan, Jianbin Yan, Daoxin Xie, Rui Li
Journal: The New phytologist 2025;247(4):1633-1642
PMID: 40516041
Sessile plants, constrained by their immobile nature in dynamic environments, have evolved sophisticated defense mechanisms to ensure survival. When confronted with threats such as insect feeding or mechanical wounding, plants not only activate localized defense responses at the injury site but also quickly transmit danger signals from the wound to the distal undamaged tissues for the activation of systemic defense signaling, which enables the plant to prepare for the upcoming threats effectively. Emerging evidence highlights the pivotal role of vascular-mediated long-distance transmission of electrical signals and calcium (Ca) waves in coordinating whole-plant defense programs. Recent advances have significantly expanded our understanding of wound-induced systemic signaling, with key genes and signaling molecules identified as central components in these cascades. In this review, we first provide an overview of these key findings and then discuss the mechanisms driving the long-distance transmission of electrical and Ca signals. Furthermore, we explore the roles of wound- and mechanically stimulated electrical and Ca signals in other plant species, contributing to a broader understanding of plant defense responses.
© 2025 The Author(s). New Phytologist © 2025 New Phytologist Foundation.
Miscellaneous:
Full Text Sources:
© Copyright 2026, Nutrition Evidence
We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.