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Algal Lipid Bodies: Stress Induction, Purification, and Biochemical Characterization in Wild-Type and Starchless Chlamydomonas reinhardtii▿ †

机译:藻类脂质体:野生型和无淀粉衣藻衣藻的应力诱导,纯化和生化特性

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摘要

When the unicellular green soil alga Chlamydomonas reinhardtii is deprived of nitrogen after entering stationary phase in liquid culture, the cells produce abundant cytoplasmic lipid bodies (LBs), as well as abundant starch, via a pathway that accompanies a regulated autophagy program. After 48 h of N starvation in the presence of acetate, the wild-type LB content has increased 15-fold. When starch biosynthesis is blocked in the sta6 mutant, the LB content increases 30-fold, demonstrating that genetic manipulation can enhance LB production. The use of cell wall-less strains permitted development of a rapid “popped-cell” microscopic assay to quantitate the LB content per cell and permitted gentle cell breakage and LB isolation. The highly purified LBs contain 90% triacylglycerol (TAG) and 10% free fatty acids (FFA). The fatty acids associated with the TAGs are ∼50% saturated (C16 and C18) fatty acids and ∼50% unsaturated fatty acids, half of which are in the form of oleic acid (C18:1). The FFA are ∼50% C16 and ∼50% C18. The LB-derived TAG yield from a liter of sta6 cells at 107 cells/ml after starvation for 48 h is calculated to approach 400 mg. The LB fraction also contains low levels of charged glycerolipids, with the same profile as whole-cell charged glycerolipids, that presumably form LB membranes; chloroplast-specific neutral glycerolipids (galactolipids) are absent. Very low levels of protein are also present, but all matrix-assisted laser desorption ionization-identified species are apparent contaminants. Nitrogen stress-induced LB production in C. reinhardtii has the hallmarks of a discrete pathway that should be amenable to additional genetic and culture condition manipulation.
机译:当单细胞绿色土壤藻类莱茵衣藻在液体培养中进入固定相后被剥夺氮时,细胞会通过调控自噬程序的途径产生大量胞质脂质体(LBs)和大量淀粉。在乙酸盐存在下饥饿48小时后,野生型LB含量增加了15倍。当淀粉生物合成在sta6突变体中受阻时,LB含量增加30倍,这表明基因操作可以增强LB的产生。使用无细胞壁菌株可开发出一种快速的“弹出细胞”显微镜分析法,以定量每个细胞的LB含量,并允许轻度的细胞破裂和LB分离。高度纯化的LB包含90%的三酰基甘油(TAG)和10%的游离脂肪酸(FFA)。与TAG相关的脂肪酸为〜50%饱和(C16和C18)脂肪酸和〜50%不饱和脂肪酸,其中一半为油酸形式(C18:1)。 FFA为〜50%C16和〜50%C18。饥饿48小时后,从一升sta6细胞以107细胞/ ml的LB衍生的TAG产量经计算接近400 mg。 LB级分还包含低水平的带电甘油脂,其轮廓与可能形成LB膜的全细胞带电甘油脂相同。缺少叶绿体特异性的中性甘油脂(半乳糖脂)。还存在极低水平的蛋白质,但是所有基质辅助的激光解吸电离识别的物质都是明显的污染物。氮胁迫引起的莱茵衣藻的生产具有离散途径的特点,该途径应适用于其他遗传和培养条件操作。

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