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Complete factorial design to adjust pH and sugar concentrations in the inoculum phase of Ralstonia solanacearum to optimize P(3HB) production

机译:完整的析因设计,可调节青枯雷尔氏菌接种阶段的pH和糖浓度,从而优化P(3HB)的产生

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摘要

Poly(3-hydroxybutyrate) (P(3HB)) is a biodegradable plastic biopolymer that accumulates as lipophilic inclusions in the cytoplasm of some microorganisms. The biotechnological process by which P(3HB) is synthesized occurs in two phases. The first phase involves cell growth in a complex culture medium, while the second phase involves polymer accumulation in the presence of excess carbon sources. As such, the efficiency of the second phase depends on the first phase. The aim of this study was to evaluate culture media with different concentrations of sucrose and glucose and different pH values in the inoculum phase of Ralstonia solanacearum RS with the intention of identifying methods by which the biomass yield could be increased, subsequently enhancing the yield of P(3HB). The culture medium was formulated according to the experimental planning type of central composite rotational design 22. The independent variables were pH and sugar concentration (sucrose and glucose), and the dependent variables were OD600nm, dry cell weight (DCW), and P(3HB) yield. The highest cell growth, estimated by the OD600nm (20.6) and DCW (5.35) values, was obtained when sucrose was used in the culture medium at a concentration above 35 g.L-1 in combination with an acidic pH. High polymer (45%) accumulation was also achieved under these conditions. Using glucose, the best results for OD600nm (12.5) and DCW (2.74) were also obtained at acidic pH but with a sugar concentration at the minimum values evaluated. Due to the significant accumulation of polymer in the cells that were still in the growth phase, the accumulating microorganism P(3HB) Ralstonia solanacearum RS can be classified as having type II metabolism in relation to the polymer accumulation phase, which is different from other Ralstonia spp. studied until this time.
机译:聚(3-羟基丁酸酯)(P(3HB))是一种可生物降解的塑料生物聚合物,在某些微生物的细胞质中以亲脂性包裹体形式积累。合成P(3HB)的生物技术过程分为两个阶段。第一阶段涉及细胞在复杂培养基中的生长,而第二阶段涉及在过量碳源存在下的聚合物积累。这样,第二阶段的效率取决于第一阶段。这项研究的目的是评估茄果雷尔氏菌RS接种阶段的蔗糖和葡萄糖浓度不同以及pH值不同的培养基,以鉴定可增加生物量产量,随后提高P产量的方法。 (3HB)。根据中央复合旋转设计2 2 的实验计划类型配制培养基。自变量为pH和糖浓度(蔗糖和葡萄糖),因变量为OD600nm,干细胞重量(DCW)和P(3HB)产量。当蔗糖以高于35 gL -1 的浓度与酸性pH结合用于培养基时,获得的最高细胞生长率由OD600nm(20.6)和DCW(5.35)值估算。在这些条件下也获得了高聚合物(45%)的积累。使用葡萄糖,在酸性pH下也可获得OD600nm(12.5)和DCW(2.74)的最佳结果,但糖浓度处于评估的最小值。由于仍然在生长期的细胞中大量的聚合物积累,积累的微生物P(3HB)青枯雷尔氏菌RS相对于聚合物的积累期可以归为具有II型代谢,这与其他Ralstonia不同spp。一直研究到这个时候。

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