Wagner Heiko, Jakob Torsten, Fanesi Andrea, Wilhelm Christian
Department of Plant Physiology, Leipzig University, Institute of Biology, Johannisallee 21-23, 04103 Leipzig, Germany
Department of Plant Physiology, Leipzig University, Institute of Biology, Johannisallee 21-23, 04103 Leipzig, Germany.
Philos Trans R Soc Lond B Biol Sci. 2017 Sep 5;372(1728). doi: 10.1098/rstb.2016.0410.
In microalgae, the photosynthesis-driven CO assimilation delivers cell building blocks that are used in different biosynthetic pathways. Little is known about how the cell regulates the subsequent carbon allocation to, for example, cell growth or for storage. However, knowledge about these regulatory mechanisms is of high biotechnological and ecological importance. In diatoms, the situation becomes even more complex because, as a consequence of their secondary endosymbiotic origin, the compartmentation of the pathways for the primary metabolic routes is different from green algae. Therefore, the mechanisms to manipulate the carbon allocation pattern cannot be adopted from the green lineage. This review describes the general pathways of cellular energy distribution from light absorption towards the final allocation of carbon into macromolecules and summarizes the current knowledge of diatom-specific allocation patterns. We further describe the (limited) knowledge of regulatory mechanisms of carbon partitioning between lipids, carbohydrates and proteins in diatoms. We present solutions to overcome the problems that hinder the identification of regulatory elements of carbon metabolism.This article is part of the themed issue 'The peculiar carbon metabolism in diatoms'.
在微藻中,光合作用驱动的二氧化碳同化作用产生了用于不同生物合成途径的细胞构建模块。关于细胞如何调节随后的碳分配,例如用于细胞生长或储存,人们了解甚少。然而,关于这些调节机制的知识具有很高的生物技术和生态学重要性。在硅藻中,情况变得更加复杂,因为由于它们次生内共生起源的结果,初级代谢途径的区室化与绿藻不同。因此,不能从绿藻谱系采用操纵碳分配模式的机制。本综述描述了从光吸收到碳最终分配到大分子的细胞能量分布的一般途径,并总结了硅藻特异性分配模式的当前知识。我们进一步描述了硅藻中脂质、碳水化合物和蛋白质之间碳分配调节机制的(有限)知识。我们提出了解决方案,以克服阻碍碳代谢调节元件鉴定的问题。本文是主题为“硅藻独特的碳代谢”特刊的一部分。