Dunn Teresa M, Lynch Daniel V, Michaelson Louise V, Napier Johnathan A
Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.
Ann Bot. 2004 May;93(5):483-97. doi: 10.1093/aob/mch071. Epub 2004 Mar 22.
To highlight the importance of sphingolipids and their metabolites in plant biology.
The completion of the arabidopsis genome provides a platform for the identification and functional characterization of genes involved in sphingolipid biosynthesis. Using the yeast Saccharomyces cerevisiae as an experimental model, this review annotates arabidopsis open reading frames likely to be involved in sphingolipid metabolism. A number of these open reading frames have already been subject to functional characterization, though the majority still awaits investigation. Plant-specific aspects of sphingolipid biology (such as enhanced long chain base heterogeneity) are considered in the context of the emerging roles for these lipids in plant form and function.
Arabidopsis provides an excellent genetic and post-genomic model for the characterization of the roles of sphingolipids in higher plants.
强调鞘脂及其代谢产物在植物生物学中的重要性。
拟南芥基因组的完成提供了一个平台,用于鉴定参与鞘脂生物合成的基因并对其进行功能表征。本综述以酿酒酵母为实验模型,注释了拟南芥中可能参与鞘脂代谢的开放阅读框。其中一些开放阅读框已经进行了功能表征,但大多数仍有待研究。在这些脂质在植物形态和功能中日益重要的作用背景下,考虑了鞘脂生物学中植物特有的方面(如增强的长链碱基异质性)。
拟南芥为表征鞘脂在高等植物中的作用提供了一个出色的遗传和后基因组模型。