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The Bistable Behaviour of Pseudomonas putida KT2440 during PHA Depolymerization under Carbon Limitation

机译:碳限制下恶臭假单胞菌KT2440在PHA解聚过程中的双稳态行为

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Poly(hydroxyalkanoates) (PHAs) are bacterial polyesters offering a biodegradable alternative to petrochemical plastics. The intracellular formation and degradation of PHAs is a dynamic process that strongly depends on the availability of carbon and other nutrients. Carbon excess and nitrogen limitation are considered to favor PHA accumulation, whereas carbon limitation triggers PHA depolymerization when all other essential nutrients are present in excess. We studied the population dynamics of Pseudomonas putida KT2440 at the single cell level during different physiological conditions, favoring first PHA polymerization during growth on octanoic acid, and then PHA depolymerization during carbon limitation. PHAs accumulate intracellularly in granules, and were proposed to separate preferentially together with nucleic acids, leading to two daughter cells containing approximately equal amounts of PHA. However, we could show that such P. putida KT2440 cells show bistable behavior when exposed to carbon limitation, and separate into two subpopulations: one with high and one with low PHA. This suggests an asymmetric PHA distribution during cell division under carbon limitation, which has a significant influence on our understanding of PHA mobilization.
机译:聚(羟基链烷酸酯)(PHA)是细菌聚酯,可提供石油化工塑料可生物降解的替代品。 PHA的细胞内形成和降解是一个动态过程,在很大程度上取决于碳和其他营养素的可用性。碳过量和氮限制被认为有利于PHA积累,而当所有其他必需营养素过量存在时,碳限制会触发PHA解聚。我们研究了在不同生理条件下恶臭假单胞菌KT2440在单细胞水平上的种群动态,有利于在辛酸上生长期间先进行PHA聚合,然后在碳限制下进行PHA解聚。 PHA积累在细胞内的颗粒中,并建议优先与核酸分离,从而导致两个子细胞中含有大约相等数量的PHA。但是,我们可以证明,当暴露于碳限制下时,恶臭假单胞菌KT2440细胞表现出双稳态行为,并分为两个亚群:一个具有高PHA,一个具有低PHA。这表明在碳限制下细胞分裂过程中PHA分布不对称,这对我们对PHA动员的理解有重要影响。

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