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首页> 外文期刊>Applied Microbiology >Combined Effects of Water Activity, Solute, and Temperature on the Growth of Vibrio parahaemolyticus
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Combined Effects of Water Activity, Solute, and Temperature on the Growth of Vibrio parahaemolyticus

机译:水分活度,溶质和温度对副溶血性弧菌生长的综合影响

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Vibrio parahaemolyticus was grown at 36 C in tryptic soy broth (pH 7.8) containing added levels of NaCl ranging from 0.5 to 7.9% (wt/wt). The fastest generation time was 16.4 min in tryptic soy broth containing 2.9% NaCl (TSBS) which corresponded to a water activity (aw) of 0.992 (±0.005). Tryptic soy broth containing lower or higher levels of NaCl resulted in higher or lower aw, respectively, and slower generation times. Growth was measured turbidimetrically at 36 C in TSBS containing added amounts of NaCl, KCl, glucose, sucrose, glycerol, or propylene glycol. The solutes used to reduce aw to comparable levels resulted in extended lag times of varied magnitude, dissimilar growth rates, and different cell numbers. Reduction of aw with glycerol was less inhibitory to growth than similar aw reductions with NaCl and KCl. Sucrose, glucose, and propylene glycol generally had the greatest effect on extending the lag times of V. parahaemolyticus when the addition of these solutes was made to establish similar aw levels lower than 0.992. Minimal aw for growth at 15, 21, 29, and 36 ± 0.2 C for each of four strains of V. parahaemolyticus was tested in TSBS containing added solutes. Reduced aw was generally most tolerable at 29 C, whereas higher minimal aw for growth was required at 15 C. Solutes added to TSBS to achieve reduction in aw, minimal aw for growth after 20 days, and incubation temperatures were as follows: glycerol, 0.937, 29 C; KCl, 0.945, 29 C; NaCl, 0.948, 29 C; sucrose, 0.957, 29 and 36 C; glucose, 0.983, 21 C; and propylene glycol, 0.986, 29 C. Each of the four strains tested responded similarly to investigative conditions. It appears that minimal aw for growth of V. parahaemolyticus depends upon the solute used to control aw.
机译:副溶血性弧菌在36°C的胰蛋白酶大豆肉汤(pH 7.8)中生长,其中所添加的NaCl含量为0.5至7.9%(wt / wt)。在含有2.9%NaCl(TSBS)的胰蛋白酶大豆肉汤中,最快的生成时间是16.4分钟,这对应于0.992(±0.005)的水活度(aw)。含有较低或较高NaCl含量的胰蛋白酶大豆肉汤分别导致较高或较低的aw和较慢的生成时间。在含有添加量的NaCl,KCl,葡萄糖,蔗糖,甘油或丙二醇的TSBS中,于36°C用浊度法测量生长。用于将aw降低至可比水平的溶质导致了不同幅度,不同增长率和不同细胞数的延长延迟时间。与用NaCl和KCl进行类似的aw降低相比,用甘油降低aw对生长的抑制作用较小。蔗糖,葡萄糖和丙二醇通常对延长副溶血弧菌的滞后时间有最大的影响,当添加这些溶质以建立相似的aw值低于0.992时。在含有添加的溶质的TSBS中测试了四种副溶血性弧菌菌株在15、21、29和36±0.2 C时的最小aw生长。降低的aw通常在29°C时最能忍受,而在15°C时需要更高的最小aw增长。向TSBS中添加溶质以实现aw的降低,20天后生长的最小aw和孵育温度如下:甘油,0.937 ,29 C; KCl,0.945,29 C;氯化钠,0.948,29℃;蔗糖,0.957,29和36 C;葡萄糖,0.983,21 C;丙二醇和丙二醇,0.986,29℃。测试的四个菌株中的每一个对研究条件的响应相似。似乎副溶血性弧菌生长的最小aw取决于用于控制aw的溶质。

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