Differentiation of Fecal Escherichia coli from Human, Livestock, and Poultry Sources by rep-PCR DNA Fingerprinting on the Shellfish Culture Area of East China Sea

被引:0
作者
Hong-Jia Ma
Ling-Lin Fu
Jian-Rong Li
机构
[1] Zhejiang Gongshang University,Food Safety Key Laboratory of Zhejiang Province, School of Food Science and Biotechnology
来源
Current Microbiology | 2011年 / 62卷
关键词
Fecal Sample; Fecal Contamination; Fecal Pollution; Host Source; Human Sewage;
D O I
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中图分类号
学科分类号
摘要
The rep-PCR DNA fingerprinting performed with REP, BOX A1R, and (GTG)5 primers was investigated as a way to differentiate between human, livestock, and poultry sources of fecal pollution on the area of Xiangshan Bay, East China Sea. Of the three methods, the BOX-PCR DNA fingerprints analyzed by jack-knife algorithm were revealed high rate of correct classification (RCC) with 91.30, 80.39, 89.39, 86.14, 93.24, 87.72, and 89.28% of human, cattle, swine, chicken, duck, sheep, and goose E. coli isolates classified into the correct host source, respectively. The average rate of correct classification (ARCC) of REP-, BOX-, and (GTG)5-PCR patterns was 79.88, 88.21, and 86.39%, respectively. Although the highest amount of bands in (GTG)5-PCR fingerprints could be observed, the discriminatory efficacy of BOX-PCR was superior to both REP- and (GTG)5-PCR. Moreover, the similarity of 459 isolates originated from shellfish and growing water was compared with fecal-obtained strains. The results showed that 92.4 and 96.2% E. coli strains isolated from midstream and downstream shellfish samples, respectively, had a ≥80% similarity with corresponding strains isolated from fecal samples. It was indicated that E. coli in feces could spread from human sewage or domestic farms to the surrounding shellfish culture water, and potentially affect the quality of shellfish. This work suggests that rep-PCR fingerprinting can be a promising genotypic tool applied in the shellfish growing water management on East China Sea for source identification of fecal pollution.
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页码:1423 / 1430
页数:7
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[1]  
Braem G(2011)(GTG)5-PCR fingerprinting for the classification and identification of coagulase-negative Staphylococcus species from bovine milk and teat apices: A comparison of type strains and field isolates Vet Microbiol 147 67-74
[2]  
Vliegher S(2003)Comparison of ribotyping and repetitive extragenic palindromic-PCR for identification of fecal Appl Environ Microbiol 69 1836-1839
[3]  
Supré K(2007) from humans and animals Water Res 41 3643-3648
[4]  
Carson CA(2006)Genotype diversity of Vet Microbiol 115 320-328
[5]  
Shear BL(2010) isolates in natural waters determined by PFGE and ERIC-PCR Water Res 44 2189-2202
[6]  
Ellersieck MR(2009)PCR detection of virulence factor genes in Environ Sci Technol 43 3728-3735
[7]  
Casarez EA(2000) isolates from weaned piglets with edema disease and/or diarrhea in China Appl Environ Microbiol 66 2572-2577
[8]  
Pillai SD(2009)Meteorological effects on the levels of fecal indicator bacteria in an urban stream: a modeling approach Infect Genet Evol 9 430-440
[9]  
Di Giovanni GD(2003)Space/time analysis of fecal pollution and rainfall in an eastern North Carolina estuary Water Sci Technol 47 95-100
[10]  
Cheng DR(2007)Use of repetitive DNA sequences and the PCR to differentiate Water Res 41 3729-3739