首页> 外文期刊>Journal of industrial microbiology & biotechnology >Carnocin KZ213 produced by Carnobacterium piscicola 213 is adsorbed onto cells during growth. Its biosynthesis is regulated by temperature, pH and medium composition
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Carnocin KZ213 produced by Carnobacterium piscicola 213 is adsorbed onto cells during growth. Its biosynthesis is regulated by temperature, pH and medium composition

机译:皮氏食弧菌213产生的卡那霉素KZ213在生长过程中被吸附到细胞上。其生物合成受温度,pH和培养基组成的调节

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Carnocin KZ213 is an antilisterial bacteriocin produced by Carnobacterium piscicola 213. The effects of pH and temperature were studied during batch fermentation in MRS* medium (modified MRS without ammonium citrate or sodium acetate). The optimal pH for growth is between 6 and 7. The maximum bacteriocin productivity in the supernatant occurs at pH 7. Operating at controlled pH increases the volumetric activity of the free bacteriocin by 8- to 16-fold, compared with uncontrolled pH. No bacteriocin production is observed below pH 6.5. Temperature has a dramatic effect on carnocin KZ213 production. Growth is optimal at 25 degreesC and 30 degreesC, although no bacteriocin production is detected at 30 degreesC. Also, bacteriocin production is observed at 25 degreesC in MRS*, but not in complex APT broth, where growth is optimal. The presence of glucose as a carbon and/or energy source is important for carnocin KZ213 synthesis. Hence, bacteriocin synthesis is regulated by temperature, carbon source and medium composition. Quantification studies of bacteriocin adsorbed onto producer cells show that the majority of the carnocin KZ213 secreted is adsorbed onto the producer cells during growth. Only 15% of the total bacteriocin produced is detected in the cell-free supernatant at the end of growth.
机译:Carnocin KZ213是由食肉单胞菌213产生的一种抗李斯特菌菌素。在MRS *培养基(不含柠檬酸铵或乙酸钠的改良MRS)中分批发酵过程中,研究了pH和温度的影响。生长的最佳pH在6到7之间。上清液中最大的细菌素生产率在pH 7时发生。与不受控制的pH值相比,在受控制的pH值下操作可使游离细菌素的体积活性提高8至16倍。在pH 6.5以下观察不到细菌素产生。温度对卡诺霉素KZ213的生产具有显着影响。尽管在30摄氏度下未检测到细菌素产生,但在25摄氏度和30摄氏度下生长最佳。此外,在25°C的MRS *中观察到细菌素的产生,但在生长最适的复杂APT肉汤中则观察不到。葡萄糖作为碳和/或能源的存在对于卡诺霉素KZ213的合成很重要。因此,细菌素的合成受温度,碳源和培养基组成的调节。吸附在生产细胞上的细菌素的定量研究表明,分泌的大部分carnocin KZ213在生长过程中都吸附在生产细胞上。在生长结束时,在无细胞上清液中仅检测到产生的细菌素总量的15%。

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