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Influence of Environmental Factors on Bacteriocin Production by Human Isolates of Lactococcus lactis MM19 and Pediococcus acidilactici MM33

机译:环境因素对人乳球菌MM19和乳酸双球菌MM33分离株生产细菌素的影响

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摘要

The influence of temperature, initial pH, and carbon and nitrogen sources on bacteriocin secreted by Lactococcus lactis MM19 (MM19) and Pediococcus acidilactici MM33 (MM33) was evaluated. It was found that 30 and 45 degrees C were the growth temperatures for higher nisin and pediocin production by MM19 and MM33, respectively. The initial pH values for higher production of nisin and pediocin were 9 and 6, respectively. Glucose and wheat peptone E430 were found as suitable carbon and nitrogen sources, respectively, for highest nisin production by MM19 at 30 degrees C and initial pH of 9. In these conditions, nisin production could be increased by 6.7 times as compared to the control medium (de Man, Rogosa, and Sharpe-MRS broth). Similarly, fructose and pea peptone were suitable carbon and nitrogen sources, respectively, for highest production of pediocin by MM33 at 45 degrees C and initial pH of 6. In these conditions, pediocin production by MM33 was increased by three times as compared to the control medium (tryptone-glucose-yeast extract-TGE broth).
机译:评估了温度,初始pH值以及碳源和氮源对乳酸乳球菌MM19(MM19)和乳酸双球菌MM33(MM33)分泌的细菌素的影响。发现30和45℃分别是MM19和MM33产生较高的乳链菌肽和pediocin的生长温度。高产乳链菌肽和pediocin的初始pH值分别为9和6。发现葡萄糖和小麦蛋白ept E430分别是MM19在30摄氏度和初始pH值为9时产生最高乳链菌肽的合适碳和氮源。在这些条件下,与对照培养基相比,乳链菌肽的产量可以增加6.7倍(de Man,Rogosa和Sharpe-MRS肉汤)。同样,果糖和豌豆蛋白ept分别是合适的碳源和氮源,在摄氏45度和初始pH值为6时,MM33产生的pediocin最高。在这些条件下,与对照组相比,MM33产生的pediocin的产量增加了三倍。培养基(t-葡萄糖-酵母提取物-TGE肉汤)。

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