4.7 Article

Molecular Targets and Biological Functions of cAMP Signaling in Arabidopsis

期刊

BIOMOLECULES
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/biom11050688

关键词

Arabidopsis thaliana; cyclic AMP; signaling; mechanism; function; regulation; adenylate cyclase

资金

  1. Key Technologies Research & Development Program of Henan Province [202102110024]
  2. Major Scientific Research Project of Henan Higher Education Institutions [17B180006]

向作者/读者索取更多资源

cAMP signaling in plants has significant effects on seed germination, phytohormone contents, leaf senescence, ethylene response, salt stress tolerance, and pathogen resistance. The identified cAMP-responsive genes are implicated in transcriptional regulation, plant hormone signaling pathways, and diterpenoid biosynthesis, among others. Results provide a framework for further exploration of cAMP signaling in plant plasticity.
Cyclic AMP (cAMP) is a pivotal signaling molecule existing in almost all living organisms. However, the mechanism of cAMP signaling in plants remains very poorly understood. Here, we employ the engineered activity of soluble adenylate cyclase to induce cellular cAMP elevation in Arabidopsis thaliana plants and identify 427 cAMP-responsive genes (CRGs) through RNA-seq analysis. Induction of cellular cAMP elevation inhibits seed germination, disturbs phytohormone contents, promotes leaf senescence, impairs ethylene response, and compromises salt stress tolerance and pathogen resistance. A set of 62 transcription factors are among the CRGs, supporting a prominent role of cAMP in transcriptional regulation. The CRGs are significantly overrepresented in the pathways of plant hormone signal transduction, MAPK signaling, and diterpenoid biosynthesis, but they are also implicated in lipid, sugar, K+, nitrate signaling, and beyond. Our results provide a basic framework of cAMP signaling for the community to explore. The regulatory roles of cAMP signaling in plant plasticity are discussed.

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