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Sphingolipid metabolism, transport, and functions in plants: Recent progress and future perspectives

Ningjing Liu, Li-Pan Hou, Jingjing Bao, Ling-Jian Wang, Xiao‐Ya Chen

2021Plant Communications108 citationsDOIOpen Access PDF

Abstract

Sphingolipids, which comprise membrane systems together with other lipids, are ubiquitous in cellular organisms. They show a high degree of diversity across plant species and vary in their structures, properties, and functions. Benefiting from the development of lipidomic techniques, over 300 plant sphingolipids have been identified. Generally divided into free long-chain bases (LCBs), ceramides, glycosylceramides (GlcCers) and glycosyl inositol phosphoceramides (GIPCs), plant sphingolipids exhibit organized aggregation within lipid membranes to form raft domains with sterols. Accumulating evidence has revealed that sphingolipids obey certain trafficking and distribution rules and confer unique properties to membranes. Functional studies using sphingolipid biosynthetic mutants demonstrate that sphingolipids participate in plant developmental regulation, stimulus sensing, and stress responses. Here, we present an updated metabolism/degradation map and summarize the structures of plant sphingolipids, review recent progress in understanding the functions of sphingolipids in plant development and stress responses, and review sphingolipid distribution and trafficking in plant cells. We also highlight some important challenges and issues that we may face during the process of studying sphingolipids.

Topics & Concepts

SphingolipidBiologyBiochemistryCell biologyComputational biologySphingolipid Metabolism and SignalingLipid Membrane Structure and BehaviorPlant Molecular Biology Research
Sphingolipid metabolism, transport, and functions in plants: Recent progress and future perspectives | Litcius