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用添加了镁盐和铁盐的富集肉汤从牡蛎中复苏冷应激副溶血性弧菌。

Recovery of chill-stressed Vibrio parahaemolyticus from oysters with enrichment broths supplemented with magnesium and iron salts.

作者信息

Ma-Lin C F, Beuchat L R

出版信息

Appl Environ Microbiol. 1980 Jan;39(1):179-85. doi: 10.1128/aem.39.1.179-185.1980.

Abstract

The effects of magnesium and iron salts on the recovery and growth of chill-stressed cells of Vibrio parahaemolyticus were studied. Supplementation of glucose salt Teepol (GST) broth with 20 to 100 mM of Mg2+ significantly (P less than or equal to 0.05) increased the number of cells recovered from oyster homogenate stored at 3 degrees C. Populations detected with supplemented GST were comparable to those obtained with Horie arabinose ethyl violet (HAE) broth, with or without Mg2+. Recovery of V. parahaemolyticus from homogenates stored at -18 degrees C was also improved when enrichment broths supplemented with Mg2+ were used. Ferric iron (added as FeCl3) at 240 microM in GST and 240 or 960 microM in HAE significantly enhanced the extent of recovery of chilled cells. Ferrous iron was generally less effective. Teepol did not influence the growth of nonchilled cells, but significantly reduced the viable population in suspensions of chilled cells when used at a level of 0.4% in GST. The relatively high pH (9.0) of HAE caused a significant reduction in the number of viable, chill-stressed cells of V. parahaemolyticus. The overall results indicated that HAE broth is superior to GST for recovering V. parahaemolyticus from refrigerated and frozen oyster homogenates.

摘要

研究了镁盐和铁盐对副溶血性弧菌冷应激细胞复苏和生长的影响。在葡萄糖盐吐温80(GST)肉汤中添加20至100 mM的Mg2+显著(P≤0.05)增加了从3℃储存的牡蛎匀浆中复苏的细胞数量。添加Mg2+的GST肉汤检测到的菌数与使用有或无Mg2+的堀江阿拉伯糖乙基紫(HAE)肉汤获得的菌数相当。当使用添加Mg2+的富集肉汤时,从-18℃储存的匀浆中副溶血性弧菌的复苏也得到改善。GST中240 microM的三价铁(以FeCl3添加)以及HAE中240或960 microM的三价铁显著提高了冷应激细胞的复苏程度。二价铁通常效果较差。吐温80不影响未受冷应激细胞的生长,但在GST中以0.4%的水平使用时,显著降低了冷应激细胞悬液中的活菌数。HAE相对较高的pH(9.0)导致副溶血性弧菌冷应激活菌数量显著减少。总体结果表明,在从冷藏和冷冻的牡蛎匀浆中复苏副溶血性弧菌方面,HAE肉汤优于GST肉汤。

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本文引用的文献

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Freeze-injury in bacteria.
CRC Crit Rev Clin Lab Sci. 1973 Aug;4(2):161-213. doi: 10.3109/10408367309151556.
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Appl Environ Microbiol. 1977 Jul;34(1):97-8. doi: 10.1128/aem.34.1.97-98.1977.

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