Authors
Susanne Mühlbauer, Dawid Jaślan, Inês F Duarte Nunes, Benjamin Brandt, Lena Wutz, Khansa Mekkaoui, Sanja Zenker, Jakob Rehberger, Marlena Rädler, Lorenz Holzner, Constance Tisserant, Carsten Völkner, Andrea Bräutigam, Silke Robatzek, Bettina Hause, Christian Grimm, Hans-Henning Kunz
Published in
Proceedings of the National Academy of Sciences of the United States of America. Volume 123. Issue 35. Pages e2525536123. Epub Aug 28, 2026.
Abstract
Plants constantly encounter adverse environmental interactions. One organelle is particularly specialized in stress signaling and phytohormone synthesis: the plastid. Calcium (Ca2+), a key second messenger, is known to intersect with cellular phytohormone signaling networks. While cytosolic Ca2+ dynamics have been studied extensively, the physiological relevance of stromal Ca2+ transients and the identity of channels mediating rapid Ca2+ flux into plastids remain largely unexplored. In this study, we provide evidence for PLASTID ENVELOPE ION CHANNELS (PECs) as long-sought mediators of fast-activating cation channel-like currents. We show that PEC expression is jasmonic acid (JA)-induced to augment stromal Ca2+ transients under stress. Loss of PECs results in decreased JA priming and failure to elicit full defense responses after wounding. In turn, PEC1 overexpression improves Botrytis cinerea tolerance. Our findings link stromal Ca2+ signaling with JA-dependent stress responses and position PECs as modulators of plant defense.
PMID:
42664039
Bibliographic data and abstract were imported from PubMed on 29 Aug 2026.
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