Maeda Yoshiaki, Nojima Daisuke, Yoshino Tomoko, Tanaka Tsuyoshi
Division of Biotechnology and Life Science, Institute of Engineering, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.
Division of Biotechnology and Life Science, Institute of Engineering, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan
Philos Trans R Soc Lond B Biol Sci. 2017 Sep 5;372(1728). doi: 10.1098/rstb.2016.0408.
Diatoms accumulate triacylglycerols in spherical organelles called oil bodies when exposed to nutrient deprivation conditions. Oil body biology in diatoms has attracted significant attention due to the complexity of the intracellular organelles and the unique combination of genes generated by the evolutionary history of secondary endosymbiosis. The demand for biofuel production has further increased the interest in and importance of a better understanding of oil body biology in diatoms, because it could provide targets for genetic engineering to further enhance their promising lipid accumulation. This review describes recent progress in studies of the structure and properties of diatom oil bodies. Firstly, the general features of diatom oil bodies are described, in particular, their number, size and morphology, as well as the quantity and quality of lipids they contain. Subsequently, the diatom oil body-associated proteins, which were recently discovered through oil body proteomics, are introduced. Then, the metabolic pathways responsible for the biogenesis and degradation of diatom oil bodies are summarized. During biogenesis and degradation, oil bodies interact with other organelles, including chloroplasts, the endoplasmic reticulum and mitochondria, suggesting their dynamic nature in response to environmental changes. Finally, the functions of oil bodies in diatoms are discussed.This article is part of the themed issue 'The peculiar carbon metabolism in diatoms'.
当暴露于营养缺乏条件时,硅藻会在称为油体的球形细胞器中积累三酰甘油。由于细胞内细胞器的复杂性以及次生内共生进化历史所产生的独特基因组合,硅藻中的油体生物学已引起了广泛关注。对生物燃料生产的需求进一步增加了人们对更好地理解硅藻油体生物学的兴趣和重要性,因为这可以为基因工程提供靶点,以进一步提高它们有前景的脂质积累。这篇综述描述了硅藻油体结构和性质研究的最新进展。首先,描述了硅藻油体的一般特征,特别是它们的数量、大小和形态,以及它们所含脂质的数量和质量。随后,介绍了最近通过油体蛋白质组学发现的与硅藻油体相关的蛋白质。然后,总结了负责硅藻油体生物合成和降解的代谢途径。在生物合成和降解过程中,油体与包括叶绿体、内质网和线粒体在内的其他细胞器相互作用,表明它们在响应环境变化时具有动态性质。最后,讨论了油体在硅藻中的功能。本文是主题为“硅藻独特的碳代谢”特刊的一部分。