Laboratório Nacional de Ciência e Tecnologia do Bioetanol, Rua Guiseppe Máximo Scolfaro, 10.000, Caixa Postal 6170, CEP 13083-970 Campinas, SP, Brazil.
Bioresour Technol. 2010 Nov;101(21):8355-60. doi: 10.1016/j.biortech.2010.05.046. Epub 2010 Jul 1.
Burkholderia sacchari IPT 189 poly (3-hydroxybutyrate) (P3HB) production in airlift bioreactor were investigated in batch and fed-batch culture using sucrose as carbon source. In batch experiments it was observed that during the growth phase B. sacchari IPT 189 might display exponential growth even at very low carbohydrate concentration, as long as NH(4)(+) concentration was above 190 mg l(-1). The onset of accumulation phase took place when NH(4)(+) concentration dropped below this value and continued as long as carbohydrate was in excess, even with dissolved oxygen concentration at 0.0% of air saturation. In the fed-batch experiments, nitrogen limitation was used to induce P3HB biosynthesis in a two-phase process. In the first phase, an initial batch followed by a limited sucrose fed regime led to a growth with low-P3HB-content (less than 13%) and up to 60 g l(-1) of biomass concentration in c.a. 25 h. In the second phase, nitrogen concentration limitation induced P3HB accumulation up to 42%, raising the biomass concentration to c.a. 150 g l(-1). Calculated parameters for the experiments were P3HB productivity=1.7 gl(-1) h(-1) and P3HB yield factor from sucrose=0.22 g g(-1).
在使用蔗糖作为碳源的分批和补料分批培养中,研究了伯克霍尔德氏菌 IPT189 在气升式生物反应器中的聚(3-羟基丁酸酯)(P3HB)生产。在分批实验中,观察到在生长阶段,只要 NH(4)(+)浓度高于 190mg/L,伯克霍尔德氏菌 IPT189 即使在非常低的碳水化合物浓度下也可能表现出指数增长。当 NH(4)(+)浓度降至该值以下时,积累阶段开始,只要碳水化合物过剩,即使溶解氧浓度达到空气饱和度的 0.0%,也会持续下去。在补料分批实验中,氮限制用于在两相过程中诱导 P3HB 生物合成。在第一阶段,初始分批培养后进行有限的蔗糖进料,导致生长缓慢,P3HB 含量低(低于 13%),生物量浓度在大约 25 小时内达到 60g/L。在第二阶段,氮浓度限制诱导 P3HB 积累到 42%,将生物量浓度提高到大约 150g/L。实验的计算参数为 P3HB 生产力=1.7g/L h(-1),从蔗糖到 P3HB 的产率因子=0.22g/g。