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February 21, 2026Cell15 citations

Calcium signaling in plants: Universal and unique paradigms

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SLSheng Luan

Key Points

  • This review examines the role of calcium signaling in plant adaptation to environmental changes.
  • Analyzed molecular components involved in calcium signaling in plants.
  • Explored various pathways related to plant growth and reproduction.
  • Investigated responses to abiotic stress and interactions with microbes.
  • Identified universal and unique mechanisms of calcium signaling in plants.
  • Emphasized the importance of Ca²⁺ codes in plant responses to environmental challenges.
  • Outlined systemic signaling functions in plant growth and reproduction.

Abstract

Rooted in place, plants must continuously respond and adapt to their ever-changing environment to survive, especially as climate change intensifies. Calcium ions (Ca²⁺) play a central role in plant responses to both biotic and abiotic challenges. Ca²⁺ signaling involves the coordinated action of channels and transporters that generate specific “Ca²⁺ codes,” along with Ca²⁺-binding proteins that act as sensors to decode them. Studies over the past several decades have explored the molecular components that form the toolkit, pathways, and networks for the coding and decoding of Ca²⁺ signals in plants. This review focuses on the emerging mechanisms of calcium signaling in plants, beginning with an overview of the universal conceptual framework that governs the coding and decoding of Ca²⁺ signals, followed by examples of pathways in plant growth and reproduction, responses to abiotic stress and microbes, and systemic signaling in plants.

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Cite This Study

Sheng Luan (2026) studied this question.

synapsesocial.com/papers/69990de85b97ab4c14ac27c2https://doi.org/10.1016/j.cell.2025.12.027
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