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首页> 外文期刊>Process Biochemistry >Fatty acid composition and polyhydroxyalkanoates production by Cupriavidus eutrophus B-10646 cells grown on different carbon sources
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Fatty acid composition and polyhydroxyalkanoates production by Cupriavidus eutrophus B-10646 cells grown on different carbon sources

机译:在不同碳源上生长的真核铜绿B-10646细胞的脂肪酸组成和多羟基链烷酸酯的产生

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Growth of Cupriavidus eutrophus B-10646, fatty acid (FA) composition of the lipids in the cytoplasmic membrane and cell wall, and polyhydroxyalkanoate (PHA) accumulation by the cells of this new promising producer of PHAs were studied in batch culture, using various carbon sources (fructose, glucose, oleic acid, sunflower seed oil, glycerol, CO_2:O_2:H_2). In cells grown on sugars and in autotrophic culture, during the phase of active cell growth, the major FAs of the lipids of cytoplasmic membrane (CMLs) were palmitic, palmitoleic, and cis-vaccenic acids. In the stationary phase of cultivation, cyclopropane FAs were also detected. When carbohydrate substrate was replaced by oleic acid or sunflower seed oil, the proportion of oleic acid in the total FAs of the cytoplasmic membrane increased considerably. In addition to that, the lipid FAs of bacterial cells grown on sunflower seed oil also contained linoleic acid, which is the major acid of sunflower seed oil. The major acids of strongly bound lipids of cell wall (SBLs) were myristic acid and long-chain-length β-hydroxy acids. Molecular weight of the polymer was measured during its accumulation in cells; for the first time, the presence of 2 polymer fractions (high-molecular weight and low-molecular-weight ones) was recorded in cells with a low polymer content.
机译:使用这种新型碳酸盐的分批培养法研究了这种新的有前景的PHA生产者在细胞中生长的真核白铜菌B-10646的生长,细胞质膜和细胞壁中脂质的脂肪酸(FA)组成以及聚羟基链烷酸酯(PHA)的积累。来源(果糖,葡萄糖,油酸,葵花籽油,甘油,CO_2:O_2:H_2)。在糖上生长和自养培养的细胞中,在活跃的细胞生长阶段,细胞质膜(CML)脂质的主要FAs是棕榈酸,棕榈油酸和顺式-vaccenic酸。在培养的静止期,还检测到环丙烷FA。当用油酸或葵花籽油代替碳水化合物底物时,油酸在细胞质膜总FA中的比例大大增加。除此之外,在葵花籽油上生长的细菌细胞的脂质FAs还含有亚油酸,这是葵花籽油的主要酸。细胞壁强结合脂质(SBL)的主要酸是肉豆蔻酸和长链β-羟基酸。在聚合物在细胞中积累的过程中测量其分子量。第一次,在聚合物含量低的细胞中记录了2种聚合物组分(高分子量组分和低分子量组分)的存在。

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