Goncalves Elton C, Wilkie Ann C, Kirst Matias, Rathinasabapathi Bala
Plant Molecular and Cellular Biology Program, Horticultural Sciences Department, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, FL, USA.
Soil and Water Science Department, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, FL, USA.
Plant Biotechnol J. 2016 Aug;14(8):1649-60. doi: 10.1111/pbi.12523. Epub 2016 Jan 23.
The great need for more sustainable alternatives to fossil fuels has increased our research interests in algal biofuels. Microalgal cells, characterized by high photosynthetic efficiency and rapid cell division, are an excellent source of neutral lipids as potential fuel stocks. Various stress factors, especially nutrient-starvation conditions, induce an increased formation of lipid bodies filled with triacylglycerol in these cells. Here we review our knowledge base on glycerolipid synthesis in the green algae with an emphasis on recent studies on carbon flux, redistribution of lipids under nutrient-limiting conditions and its regulation. We discuss the contributions and limitations of classical and novel approaches used to elucidate the algal triacylglycerol biosynthetic pathway and its regulatory network in green algae. Also discussed are gaps in knowledge and suggestions for much needed research both on the biology of triacylglycerol accumulation and possible avenues to engineer improved algal strains.
对更可持续的化石燃料替代品的迫切需求增加了我们对藻类生物燃料的研究兴趣。微藻细胞具有光合作用效率高和细胞分裂迅速的特点,是作为潜在燃料储备的中性脂质的极佳来源。各种胁迫因素,尤其是营养饥饿条件,会促使这些细胞中充满三酰甘油的脂质体形成增加。在此,我们综述了关于绿藻中甘油脂质合成的知识基础,重点是最近关于碳通量、营养限制条件下脂质的重新分布及其调控的研究。我们讨论了用于阐明绿藻中三酰甘油生物合成途径及其调控网络的经典方法和新方法的贡献与局限性。还讨论了在三酰甘油积累生物学方面的知识空白以及对急需研究的建议,以及改造改良藻类菌株的可能途径。