School of Biology and Environmental Science, University College Dublin, Belfield, Dublin 4, Ireland.
INRA, UMR 320/UMR 8120 Génétique Végétale, F-91190 Gif-sur-Yvette, France.
New Phytol. 2012 Jan;193(1):51-57. doi: 10.1111/j.1469-8137.2011.03963.x. Epub 2011 Nov 9.
• Sphingolipids are emerging as important mediators of cellular and developmental processes in plants, and advances in lipidomics have yielded a wealth of information on the composition of plant sphingolipidomes. Studies using Arabidopsis thaliana showed that the dihydroxy long-chain base (LCB) is desaturated at carbon position 8 (d18:1(Δ8)). This raised important questions on the role(s) of sphingosine (d18:1(Δ4)) and sphingosine-1-phosphate (d18:1(Δ4)-P) in plants, as these LCBs appear to be absent in A. thaliana. • Here, we surveyed 21 species from various phylogenetic groups to ascertain the position of desaturation of the d18:1 LCB, in order to gain further insights into the prevalence of d18:1(Δ4) and d18:1(Δ8) in plants. • Our results showed that d18:1(Δ8) is common in gymnosperms, whereas d18:1(Δ4) is widespread within nonseed land plants and the Poales, suggesting that d18:1(Δ4) is evolutionarily more ancient than d18:1(Δ8) in Viridiplantae. Additionally, phylogenetic analysis indicated that the sphingolipid Δ4-desaturases from Viridiplantae form a monophyletic group, with Angiosperm sequences falling into two distinct clades, the Eudicots and the Poales. • We propose that efforts to elucidate the role(s) of d18:1(Δ4) and d18:1(Δ4)-P should focus on genetically tractable Viridiplantae species where the d18:1 LCB is desaturated at carbon position 4.
• 鞘脂类化合物正在成为植物细胞和发育过程的重要介质,脂质组学的进展为植物鞘脂组的组成提供了丰富的信息。使用拟南芥的研究表明,二羟基长链碱基(LCB)在碳位置 8(d18:1(Δ8))处不饱和。这就提出了关于植物中神经酰胺(d18:1(Δ4))和神经酰胺-1-磷酸(d18:1(Δ4)-P)的作用的重要问题,因为这些 LCB 似乎在拟南芥中不存在。 • 在这里,我们调查了来自各种系统发育群的 21 个物种,以确定 d18:1LCB 的去饱和位置,以便进一步了解 d18:1(Δ4)和 d18:1(Δ8)在植物中的普遍性。 • 我们的结果表明,d18:1(Δ8)在裸子植物中很常见,而 d18:1(Δ4)在非种子陆地植物和禾本科中广泛存在,这表明 d18:1(Δ4)在真核植物中的进化历史比 d18:1(Δ8)更为古老。此外,系统发育分析表明,真核植物的鞘脂 Δ4-去饱和酶形成一个单系群,被子植物序列分为两个不同的分支,即木兰类和禾本科。 • 我们建议,阐明 d18:1(Δ4)和 d18:1(Δ4)-P 的作用的努力应该集中在 d18:1LCB 在碳位置 4 处去饱和的遗传上易于处理的真核植物物种上。