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March 12, 2026Nature Communications3 citationsOpen Access

Phytochrome B integrates jasmonic acid and warm temperature signaling pathways to regulate cotyledon chloroplast development

PQPeipei QiJHJunling HuaiNGNan Gao

Key Points

  • The aim is to understand how jasmonic acid and warm temperature influence chloroplast development in plants.
  • Utilized methyl jasmonate and warm temperature treatments on Arabidopsis thaliana cotyledons.
  • Assessed chlorophyll accumulation and chloroplast development.
  • Examined interactions between phytochrome B and JAZ proteins.
  • Analyzed the role of transcription factors HY5 and MYC2 in response to jasmonic acid and temperature.
  • Methyl jasmonate and warm temperature together impair chlorophyll accumulation and chloroplast development.
  • Phytochrome B suppresses while CORONATINE INSENSITIVE 1 promotes chloroplast development under these conditions.
  • Phytochrome B interacts with JAZ1 and JAZ3, preventing their degradation, and this interaction is weakened by warm temperatures.
  • HY5 and MYC2 transcription factors regulate chloroplast development differently in response to jasmonic acid and temperature.

Abstract

Chloroplast biogenesis and development are coordinated by both endogenous factors and environmental cues. The interplay between jasmonic acid (JA) and temperature in regulating chloroplast development remains poorly understood. Here, we demonstrate that methyl jasmonate (MeJA) and warm temperature (28 °C) treatments additively impair chlorophyll accumulation and chloroplast development in Arabidopsis thaliana cotyledons. We found that the thermosensor phytochrome B (phyB) suppresses, whereas the JA receptor CORONATINE INSENSITIVE 1 (COI1) promotes, MeJA- and warm temperature-mediated chloroplast development. Moreover, phyB directly interacts with JASMONATE ZIM-DOMAIN 1 (JAZ1) and JAZ3, preventing their JA-induced degradation, and warm temperature attenuates this interaction. Strikingly, we reveal that transcription factors ELONGATED HYPOCOTYL 5 (HY5) and MYC2 oppositely regulate cotyledon chloroplast development in response to MeJA and warm temperature by directly and differentially modulating downstream transcriptional networks. Our study establishes a molecular framework in which phyB integrates JA and warm temperature signaling through the HY5-MYCs transcriptional regulatory network to fine-tune chloroplast development, highlighting a plant strategy for ecological adaptation.

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Cite This Study

Qi et al. (2026) studied this question.

synapsesocial.com/papers/69b2583896eeacc4fcec7ad6https://doi.org/10.1038/s41467-026-70131-w
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