Starch and triacylglycerol accumulation in the cells of the stain Chlorella sp. IPPAS C-1210

L. A. Bobrovnikova, M. S. Pakholkova, R. Sidorov, M. Sinetova
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Abstract

Strain Сhlorella sp. IPPAS C-1210 is an effective lipid and triacilglycerols (TAG) producer. The strain could be used eventually in such industries as bioenergetics, food industry and agriculture. The objective of this work was investigation of conditions in which the strain Сhlorella sp. IPPAS C-1210 accumulates the most starch and TAG in cells with a view to optimise its growth and productivity. The following cultivation parameters were investigated in order to figure out their influence on accumulation of starch and TAG: nitrogen- and phosphorous-starvation and cultivation on media with different nitrogen (nitrate, urea) and carbon (carbon dioxide, bicarbonate) sources. Pigments, starch, protein and lipid content in cells were measured. The exclusion of nitrogen or phosphorus source from medium decreased the biomass productivity significantly, caused chlorosis and reduction of protein content. Total lipid content increased slightly after phosphorous starvation and stayed almost constant under nitrogen starvation, however a greater TAG increase was observed during nitrogen starvation. Both nitrogen and phosphorous starvations caused the increase of the amount of reserve carbohydrates: during phosphorous starvation increase was insignificant, whereas the latter almost doubled the amount of reserve carbohydrates. The highest biomass and lipid productivity was observed in cells grown in bicarbonate supplement medium and the highest starch productivity was observed in cells grown in standard BBM-3N medium.
IPPAS C-1210染色小球藻细胞中淀粉和甘油三酯的积累
菌株Сhlorella sp. IPPAS C-1210是一种有效的脂质和甘油三酯(TAG)产生菌。该菌株最终可用于生物能源、食品工业和农业等行业。这项工作的目的是研究菌株Сhlorella sp. IPPAS C-1210在细胞中积累最多淀粉和TAG的条件,以优化其生长和生产力。研究了不同氮源(硝酸盐、尿素)和不同碳源(二氧化碳、碳酸氢盐)培养基的氮、磷饥饿和培养参数对淀粉和TAG积累的影响。测定细胞中色素、淀粉、蛋白质和脂质含量。培养基中不含氮或磷源显著降低了生物量生产力,导致黄化和蛋白质含量降低。总脂肪含量在磷饥饿后略有增加,在氮饥饿下基本保持不变,但在氮饥饿期间,总脂肪含量增加幅度更大。氮和磷饥饿均引起储备碳水化合物数量的增加,磷饥饿增加不显著,而后者几乎使储备碳水化合物数量增加了一倍。在碳酸氢盐补充培养基中生长的细胞生物量和脂质产量最高,在标准BBM-3N培养基中生长的细胞淀粉产量最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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