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卵形拟杆菌在模拟阳光照射下的存活情况。

Persistence of Bacteroides ovatus under simulated sunlight irradiation.

作者信息

Dong Shengkun, Hong Pei-Ying, Nguyen Thanh H

机构信息

Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, 205 N, Mathews, 3230 Newmark Lab, Urbana, IL 61801, USA.

出版信息

BMC Microbiol. 2014 Jul 4;14:178. doi: 10.1186/1471-2180-14-178.

Abstract

BACKGROUND

Bacteroides ovatus, a member of the genus Bacteroides, is considered for use in molecular-based methods as a general fecal indicator. However, knowledge on its fate and persistence after a fecal contamination event remains limited. In this study, the persistence of B. ovatus was evaluated under simulated sunlight exposure and in conditions similar to freshwater and seawater. By combining propidium monoazide (PMA) treatment and quantitative polymerase chain reaction (qPCR) detection, the decay rates of B. ovatus were determined in the presence and absence of exogenous photosensitizers and in salinity up to 39.5 parts per thousand at 27°C.

RESULTS

UVB was found to be important for B. ovatus decay, averaging a 4 log10 of decay over 6 h of exposure without the presence of extracellular photosensitizers. The addition of NaNO2, an exogenous sensitizer producing hydroxyl radicals, did not significantly change the decay rate of B. ovatus in both low and high salinity water, while the exogenous sensitizer algae organic matter (AOM) slowed down the decay of B. ovatus in low salinity water. At seawater salinity, the decay rate of B. ovatus was slower than that in low salinity water, except when both NaNO2 and AOM were present.

CONCLUSION

The results of laboratory experiments suggest that if B. ovatus is released into either freshwater or seawater environment in the evening, 50% of it may be intact by the next morning; if it is released at noon, only 50% may be intact after a mere 5 min of full spectrum irradiation on a clear day. This study provides a mechanistic understanding to some of the important environmental relevant factors that influenced the inactivation kinetics of B. ovatus in the presence of sunlight irradiation, and would facilitate the use of B. ovatus to indicate the occurrence of fecal contamination.

摘要

背景

卵形拟杆菌是拟杆菌属的一员,被认为可用于基于分子的方法作为一般粪便指示菌。然而,关于其在粪便污染事件后的命运和持久性的知识仍然有限。在本研究中,评估了卵形拟杆菌在模拟阳光照射以及类似于淡水和海水的条件下的持久性。通过结合单叠氮基碘化丙啶(PMA)处理和定量聚合酶链反应(qPCR)检测,在有无外源光敏剂以及27°C下盐度高达39.5‰的条件下测定了卵形拟杆菌的衰减率。

结果

发现UVB对卵形拟杆菌的衰减很重要,在没有细胞外光敏剂的情况下,暴露6小时平均衰减4个对数10。添加产生羟基自由基的外源敏化剂NaNO2,在低盐度和高盐度水中均未显著改变卵形拟杆菌的衰减率,而外源敏化剂藻类有机物(AOM)减缓了低盐度水中卵形拟杆菌的衰减。在海水盐度下,卵形拟杆菌的衰减率比低盐度水中的慢,除非同时存在NaNO2和AOM。

结论

实验室实验结果表明,如果卵形拟杆菌在傍晚释放到淡水或海水环境中,到第二天早上可能有50%保持完整;如果在中午释放,在晴天仅经过5分钟的全光谱照射后,只有50%可能保持完整。本研究为一些影响卵形拟杆菌在阳光照射下失活动力学的重要环境相关因素提供了机理理解,并将有助于利用卵形拟杆菌来指示粪便污染的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a675/4099502/f34c59ef209a/1471-2180-14-178-1.jpg

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