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Chemostat Production of Pediocin SM-1 by Pediococcus Pentosaceus Mees 1934

机译:戊糖球菌Mees的Chemostat生产Pediocin SM-1 1934

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Production of the bacteriocin pediocin SM-1 by Pediococcus pentosaceus Mees 1934 was investigated in pH-controlled batch and chemostat cultures using a complex medium containing glucose, sucrose or fructose. In chemostat cultures operated at 150 rpm, 30 degrees C, 60% dissolved oxygen tension, pH 6.5, and D=0.148 h(-1), the pediocin titer reached 185 AU/mL representing an increase of 32% compared with batch cultures in which glucose was used as the carbon source. Pediocin biosynthesis was markedly affected by the growth rate of the producer microorganism. For all carbon sources tested, pediocin production appeared to take place only at dilution rates lower than mu(max). However, only glucose supported production at the very low dilution rate of 0.05 h(-1) indicating a direct regulation of pediocin biosynthesis by the carbon source. Glucose supported higher biomass productivity and higher pediocin titers and yields compared with the other sugars used. (C) 2015 American Institute of Chemical Engineers
机译:使用含有葡萄糖,蔗糖或果糖的复杂培养基,在pH受控的分批培养和恒化器培养中研究了戊糖戊球菌Mees 1934年生产细菌素pediocin SM-1的过程。在以150 rpm,30摄氏度,60%的溶解氧张力,pH 6.5和D = 0.148 h(-1)运行的化学恒温培养中,pediocin滴度达到185 AU / mL,与分批培养相比增加了32%。葡萄糖用作碳源。生产者微生物的生长速度显着影响了Pediocin的生物合成。对于所有测试的碳源,pediocin的生产似乎仅在稀释率低于mu(max)的情况下发生。但是,只有葡萄糖以0.05 h(-1)的极低稀释率支持生产,表明碳源直接调节了pediocin生物合成。与使用的其他糖相比,葡萄糖支持更高的生物量生产率和更高的pediocin滴度和产量。 (C)2015美国化学工程师学会

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