Luttgeharm Kyle D, Kimberlin Athen N, Cahoon Edgar B
Center for Plant Science Innovation and Department of Biochemistry, University of Nebraska-Lincoln, E318 Beadle Center, 1901 Vine Street, Lincoln, NE, 68588, USA.
Subcell Biochem. 2016;86:249-86. doi: 10.1007/978-3-319-25979-6_11.
Sphingolipids, a once overlooked class of lipids in plants, are now recognized as abundant and essential components of plasma membrane and other endomembranes of plant cells. In addition to providing structural integrity to plant membranes, sphingolipids contribute to Golgi trafficking and protein organizational domains in the plasma membrane. Sphingolipid metabolites have also been linked to the regulation of cellular processes, including programmed cell death. Advances in mass spectrometry-based sphingolipid profiling and analyses of Arabidopsis mutants have enabled fundamental discoveries in sphingolipid structural diversity, metabolism, and function that are reviewed here. These discoveries are laying the groundwork for the tailoring of sphingolipid biosynthesis and catabolism for improved tolerance of plants to biotic and abiotic stresses.
鞘脂类物质,曾经是植物中一类被忽视的脂质,现在被认为是植物细胞质膜和其他内膜中丰富且必需的成分。除了为植物膜提供结构完整性外,鞘脂类物质还参与高尔基体运输以及质膜中的蛋白质组织域的形成。鞘脂类代谢产物也与细胞过程的调控有关,包括程序性细胞死亡。基于质谱的鞘脂类谱分析以及拟南芥突变体分析的进展,使得鞘脂类在结构多样性、代谢和功能方面有了一些基础发现,本文对此进行综述。这些发现为定制鞘脂类生物合成和分解代谢以提高植物对生物和非生物胁迫的耐受性奠定了基础。