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Accumulation and mobilization of storage lipids by Rhodococcus opacus PD630 and Rhodococcus ruber NCIMB 40126

机译:不透明红球菌PD630和红球菌rubber NCIMB 40126的蓄积脂质的积累和动员

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The time course of the accumulation of triacylglycerols (TAGs) in Rhodococcus opacus PD630 or of TAGs plus polyhydroxyalkanoates (PHA) in Rhodococcus ruber NCIMB 40126 with gluconate or glucose as carbon source, respectively, was studied. In addition, we examined the mobilization of these storage compounds in the absence of a carbon source. R. opacus accumulated TAGs only after the exhaustion of ammonium in the medium, and, with a fixed concentration of the carbon source, the amounts of TAGs in the cells increased with decreasing concentrations of ammonium in the medium. When these cells were incubated in the absence of an additional carbon source, about 90% of these TAGs were mobilized and used as endogenous carbon source, particularly if ammonium was available. R. ruber accumulated a copolyester consisting of 3-hydroxybutyrate and 3-hydroxyvalerate already during the early exponential growth phase, whereas TAGs were synthesized and accumulated mainly during the late exponential and stationary growth phases. In the stationary growth phase, synthesis of TAGs continued, whereas PHA was partially mobilized. In the absence of an additional carbon source but in the presence of ammonium, mobilization of TAGs started first and was then paralleled by the mobilization of PHA, resulting in an approximately 90% and 80% decrease of these storage compounds, respectively. During the accumulation phase, interesting shifts in the composition of the two storage compounds occurred, indicating that the substrates of the PHA synthase and the TAG synthesizing enzymes were provided to varying extents, depending on whether the cells were in the early or late exponential or in the stationary growth phase. [References: 17]
机译:研究了不透明红球菌PD630中三酰基甘油(TAGs)的累积时间,或以葡萄糖酸或葡萄糖为碳源的红球菌rubber NCIMB 40126中TAGs和多羟基链烷酸酯(PHA)的累积时间。另外,我们检查了在没有碳源的情况下这些存储化合物的动员情况。仅在培养基中铵耗竭后,O。opacus才会累积TAG,并且在碳源浓度固定的情况下,细胞中TAG的量会随着培养基中铵浓度的降低而增加。当这些细胞在没有其他碳源的情况下孵育时,这些TAG的约90%被转移并用作内源碳源,特别是在有铵的情况下。 R. ruber在指数增长早期已经积累了由3-羟基丁酸酯和3-羟基戊酸酯组成的共聚酯,而TAGs的合成和积累主要在指数后期和固定增长阶段。在固定生长期,TAGs的合成继续进行,而PHA被部分动员。在没有其他碳源但存在铵的情况下,TAGs的移动首先开始,然后与PHA的移动并行,导致这些存储化合物分别减少约90%和80%。在积累阶段,两种存储化合物的组成发生了有趣的变化,表明PHA合酶和TAG合成酶的底物以不同程度提供,具体取决于细胞是处于早期还是晚期,还是处于指数阶段。稳定的生长期。 [参考:17]

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