Nano-Biomaterials Science Laboratory, Division of Applied Life Sciences (BK21), Graduate School and Environmental Biotechnology National Core Research Center, Gyeongsang National University, Jinju 660-701, Republic of Korea.
Bioresour Technol. 2010 Jun;101(12):4540-8. doi: 10.1016/j.biortech.2010.01.082. Epub 2010 Feb 12.
The deletion of the intracellular polyhydroxyalkanoate (PHA) depolymerase gene (phaZ) in Pseudomonas fluorescens BM07 was found to increase more efficiently the levels of longer medium-chain-length (MCL) omega-aromatic monomer-units than in the wild-type strain when the cells were grown with a mixture of fructose and MCL omega-aromatic fatty acid in the presence of salicylic acid that is known as a beta-oxidation inhibitor in BM07 strain. When 11-phenoxyundecanoic acid was used as co-carbon source, the longest monomer-unit 3-hydroxy-11-phenoxyundecanoate, not reported in literature yet, was incorporated into the polymer chain up to approximately 10 mol%. An advantage of salicylic acid inhibition technique is that salicylic acid is not metabolized in BM07 strain, thus, the effective concentration of the inhibitor remaining constant throughout the cultivation. In conclusion, this new technique could be exploited for the enhanced production of side-chain modulated functional MCL-PHA with improved physicochemical properties in P. fluorescens BM07.
在荧光假单胞菌 BM07 中删除细胞内聚羟基烷酸 (PHA) 解聚酶基因 (phaZ) 时,当细胞在水杨酸存在下用果糖和中链长度 (MCL) ω-芳族脂肪酸混合物生长时,发现其水平比野生型菌株更有效地增加了更长的 MCL ω-芳族单体单元。当 11-苯氧基十一烷酸被用作共碳源时,最长的单体单元 3-羟基-11-苯氧基十一烷酸被掺入聚合物链中,摩尔分数约为 10%。水杨酸抑制技术的一个优点是水杨酸在 BM07 菌株中不会被代谢,因此,抑制剂的有效浓度在整个培养过程中保持不变。总之,这种新技术可以用于增强荧光假单胞菌 BM07 中具有改进的物理化学性质的侧链调制功能 MCL-PHA 的生产。