PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 7, 2026Plants2 citationsOpen Access

Phospholipid Networks as Metabolic Hubs and Signaling Integrators in Plant Development and Stress Adaptation

View Full Paper
PCPengjie ChangMJMing JuHCHengchun Cao

Key Points

  • To synthesize the functions of phospholipids in plant growth and environmental stress adaptation.
  • Reviewed existing literature on phospholipid biosynthesis and metabolism in plants.
  • Analyzed the interaction of phospholipids with auxin signaling and protein trafficking mechanisms.
  • Examined the role of phosphatidic acid and phosphoinositide phosphate in developmental processes.
  • Phospholipid metabolic networks are essential for regulating plant development and stress responses.
  • Phosphatidic acid acts as a central signaling hub coordinating multiple pathways.
  • Phospholipids influence transcription factors and cell fate determination in plant physiology.

Abstract

Phospholipids function as dynamic regulators of plant growth and environmental adaptation, extending well beyond their structural roles in biological membranes. This review synthesizes the phospholipid metabolic network and its regulatory functions in plant physiology. We first describe enzymatic reactions and acyl-chain remodeling in phospholipid biosynthesis, and then examine the interaction between phospholipid metabolism and auxin signaling, focusing on phosphatidic acid (PA) and phosphoinositide phosphate (PIP). These lipid molecules regulate the polarization and vesicular trafficking of PIN-FORMED proteins via endocytosis and phosphorylation-dependent mechanisms, thereby controlling auxin distribution during development and stress adaptation. Particular emphasis is placed on PA, a multifunctional signaling lipid that serves as a central molecular hub. PA coordinates hormonal, stress, and circadian signals by engaging and modulating a broad spectrum of protein targets, including kinases, phosphatases, and transcription factors. We also discuss the emerging and evolutionarily conserved functions of phospholipid signaling in cell fate determination, drawing parallels from mammalian cell reprogramming to the regulation of plant cell totipotency and root patterning. Collectively, these findings underscore the critical role of phospholipid-mediated signaling in converting metabolic and environmental cues into developmental reprogramming, providing novel theoretical and functional frameworks for future research in plant lipid biology.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Chang et al. (2026) studied this question.

synapsesocial.com/papers/69fbe382164b5133a91a2c40https://doi.org/10.3390/plants15091404
Ask AI
Helpful
Bookmark
Share
View Full Paper