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产毒霍乱弧菌O1对水生环境中物理化学应激的反应。

Response of toxigenic Vibrio cholerae 01 to physico-chemical stresses in aquatic environments.

作者信息

Miller C J, Drasar B S, Feachem R G

出版信息

J Hyg (Lond). 1984 Dec;93(3):475-95. doi: 10.1017/s0022172400065074.

Abstract

The survival and growth of toxigenic Vibrio cholerae 01 in water under various conditions of salinity, pH, temperature and cation composition and concentration were studied in an extensive series of laboratory experiments. Inter- and intra-strain variation in stress response (of 01 and non-01 strains) and the ability of V. cholerae to adapt to stressful environments were also studied. Toxigenic V. cholerae 01 were able to survive for at least 70 days at 25 degrees C in solutions of sea salt. The optimal salt concentration was 2.0% though all solutions in the range 0.25-3.0% gave good support. Substrains with enhanced capacity to persist at sub-optimal salinity (0.1%) were demonstrated. A great degree of inter-strain variation in stress response at low salinity (0.05%) was found among 59 strains, and this variation was unrelated to serogroup (01 or non-01), source (clinical or environmental) or country of origin (Tanzania or Bangladesh). At optimal salinity, inter-strain variation was less and 18 out of 20 strains remained viable at high concentrations for at least 40 months at 25 degrees C. V. cholerae 01 could not survive beyond 45 days at 4 degrees C and optimal salinity, either with or without nutrients. The optimal pH range for survival at 25 degrees C was 7.0-8.5 at optimal salinity, and 7.5-9.0 at low salinity. V. cholerae 01 require Na+ for survival in the absence of nutrients, and for enhanced growth in their presence. The presence of Ca2+ or Mg2+, in addition to Na+, further enhanced survival. These, and other results reported in this paper, suggest that toxigenic V. cholerae 01 are able to survive for extended periods in warm water containing no nutrients but having a salinity of 0.25-3.0% and a pH of around 8.0. With added nutrients and under the same conditions, rapid growth is possible. The implications of these findings for the identification of putative aquatic reservoirs of V. cholerae 01, and for the epidemiology of cholera, are considerable.

摘要

在一系列广泛的实验室实验中,研究了产毒霍乱弧菌O1在不同盐度、pH值、温度以及阳离子组成和浓度条件下在水中的存活和生长情况。还研究了(O1和非O1菌株的)应激反应的菌株间和菌株内变异以及霍乱弧菌适应应激环境的能力。产毒霍乱弧菌O1在25摄氏度的海盐溶液中能够存活至少70天。最佳盐浓度为2.0%,不过0.25 - 3.0%范围内的所有溶液都能提供良好的支持。已证明存在在次优盐度(0.1%)下具有更强存活能力的亚菌株。在59株菌株中发现低盐度(0.05%)下应激反应存在很大程度的菌株间变异,且这种变异与血清群(O1或非O1)、来源(临床或环境)或原产国(坦桑尼亚或孟加拉国)无关。在最佳盐度下,菌株间变异较小,20株菌株中有18株在25摄氏度下高浓度时至少存活40个月。在4摄氏度和最佳盐度下,无论有无营养物质,霍乱弧菌O1存活时间都不会超过45天。在25摄氏度下,最佳盐度时存活的最佳pH范围是7.0 - 8.5,低盐度时是7.5 - 9.0。霍乱弧菌O1在无营养物质时需要Na +来存活,有营养物质时需要Na +来促进生长。除了Na +外,Ca2 +或Mg2 +的存在进一步提高了存活率。本文报道的这些以及其他结果表明,产毒霍乱弧菌O1能够在不含营养物质但盐度为0.25 - 3.0%且pH值约为8.0的温水中长期存活。添加营养物质并在相同条件下,可能会快速生长。这些发现对于确定霍乱弧菌O1的假定水生储存宿主以及霍乱流行病学的意义重大。

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