Fontaine Paul, Mosrati Ridha, Corroler David
Normandie Univ., UNICAEN, UR ABTE, 14000 Caen, France.
Normandie Univ., UNICAEN, UR ABTE, 14000 Caen, France.
Int J Biol Macromol. 2017 May;98:430-435. doi: 10.1016/j.ijbiomac.2017.01.115. Epub 2017 Feb 5.
The synthesis of medium chain length polyhydroxyalkanoates (mcl-PHAs) by Pseudomonas putida mt-2 was investigated under nitrogen-rich then deficient conditions with glycerol/octanoate or long-chain fatty acids (LCFAs) as carbon sources. When mixed, glycerol and octanoate were co-assimilated regardless of nitrogen availability but provided that glycerol uptake has been already triggered under non-limiting nutrient conditions. This concomitant consumption allowed to enhance mcl-PHAs accumulation (up to 57% of cell dry weight (CDW)) under both non-limiting and nitrogen deficient conditions. Octanoate then mostly drove anabolism of the polyester with 3-hydroxyoctanoate (3HO) synthesized as the main monomer (83%). If the preferred PHA precursor octanoate was supplied, glycerol was mainly involved in cell growth and/or maintenance but very little in PHA production even under nitrogen starvation. P. putida cells accumulated higher amounts of mcl-PHAs when grown on mixtures of LCFAs compared to LCFAs supplied as single substrate (25% and 9% of CDW, respectively). However, only a weak enrichment of the polyester was observed after transfer of cells in a fresh nitrogen-free medium containing the same combination of LCFAs. Some typical units within the polyester were related to the LCFAs ratio supplied in the medium indicating that tailor-made monomers could be synthesized.
研究了恶臭假单胞菌mt-2在富氮然后缺氮条件下,以甘油/辛酸或长链脂肪酸(LCFAs)作为碳源合成中链长度聚羟基脂肪酸酯(mcl-PHAs)的情况。当甘油和辛酸混合时,无论氮的有效性如何,它们都会被共同同化,但前提是在非限制性营养条件下已经触发了甘油的摄取。这种同时消耗使得在非限制性和缺氮条件下都能提高mcl-PHAs的积累(高达细胞干重(CDW)的57%)。然后,辛酸主要驱动聚酯的合成代谢,合成的主要单体是3-羟基辛酸(3HO)(83%)。如果提供了首选的PHA前体辛酸,甘油主要参与细胞生长和/或维持,即使在氮饥饿条件下,在PHA生产中也很少参与。与以单一底物形式提供的LCFAs相比,恶臭假单胞菌细胞在LCFAs混合物上生长时积累了更多的mcl-PHAs(分别为CDW的25%和9%)。然而,在将细胞转移到含有相同LCFAs组合的新鲜无氮培养基后,仅观察到聚酯的微弱富集。聚酯中的一些典型单元与培养基中提供的LCFAs比例有关,这表明可以合成定制的单体。