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用于比较粪便指示菌和反刍动物相关遗传标记物生存曲线的全局模型拟合

Global model fitting to compare survival curves for faecal indicator bacteria and ruminant-associated genetic markers.

作者信息

Brooks L E, Field K G

机构信息

Department of Microbiology, Oregon State University, Corvallis, OR, USA.

出版信息

J Appl Microbiol. 2017 Jun;122(6):1704-1713. doi: 10.1111/jam.13454. Epub 2017 May 3.

DOI:10.1111/jam.13454
PMID:28345274
Abstract

AIMS

To compare decay profiles of ruminant- and cattle-associated molecular markers for faecal contamination and Escherichia coli, facilitating their correct application in water quality studies.

METHODS AND RESULTS

We generated decay profiles for cultivable E. coli, a general Bacteroidales genetic marker (GenBac3), ruminant markers (CF128, Rum2Bac) and cattle markers (CowM2, CowM3) using faeces-seeded mesocosms, and selected best fitting models for each decay profile. Global model fitting tested for differences between decay profiles. After normalizing for initial concentration, decay curves differed significantly between E. coli and all genetic markers except CowM3. Decay curves for CF128 differed from GenBac3 and Rum2Bac, but Rum2Bac and GenBac3 decay profiles did not differ. Despite similar survival profiles for some markers, highly varied initial concentrations affected time to nondetection.

CONCLUSIONS

Decay curves and time until nondetection differed among markers from the same host. However, the Rum2Bac and GenBac3 markers had similar decay profiles and could potentially be investigated further for source allocation using the ratio method.

SIGNIFICANCE AND IMPACT OF THE STUDY

As the use of genetic markers for microbial source tracking becomes increasingly common, caution is necessary. Both the shape of decay curves and time to nondetect may differ depending on the marker selected, resulting in possible misinterpretation of results and precluding application of a 'ratio method' of source allocation.

摘要

目的

比较用于粪便污染和大肠杆菌的反刍动物及牛相关分子标记的衰减曲线,以促进其在水质研究中的正确应用。

方法与结果

我们使用接种粪便的中宇宙生成了可培养大肠杆菌、一般拟杆菌门遗传标记(GenBac3)、反刍动物标记(CF128、Rum2Bac)和牛标记(CowM2、CowM3)的衰减曲线,并为每个衰减曲线选择了最佳拟合模型。全局模型拟合测试了衰减曲线之间的差异。在对初始浓度进行归一化后,大肠杆菌与除CowM3之外的所有遗传标记的衰减曲线存在显著差异。CF128的衰减曲线与GenBac3和Rum2Bac不同,但Rum2Bac和GenBac3的衰减曲线没有差异。尽管某些标记的存活曲线相似,但初始浓度差异很大影响了检测不到的时间。

结论

来自同一宿主的标记之间的衰减曲线和检测不到的时间有所不同。然而,Rum2Bac和GenBac3标记具有相似的衰减曲线,可能可以使用比率法进一步研究其来源分配。

研究的意义和影响

随着用于微生物源追踪的遗传标记的使用越来越普遍,谨慎是必要的。衰减曲线的形状和检测不到的时间可能因所选标记而异,导致结果可能被误解,并排除了“比率法”在来源分配中的应用。

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引用本文的文献

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Extended persistence of general and cattle-associated fecal indicators in marine and freshwater environment.海淡水环境中普遍存在的和牛源粪便指示物的持续存在。
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