Detection of salmonellae in different turtle species within a headwater spring ecosystem

被引:31
作者
Gaertner, James P. [1 ]
Hahn, Dittmar [1 ]
Rose, Francis L. [1 ]
Forstner, Michael R. J. [1 ]
机构
[1] SW Texas State Univ, Dept Biol, San Marcos, TX 78666 USA
关键词
enrichment; PCR; rep-PCR; resuscitation; Salmonella enterica; Spring Lake;
D O I
10.7589/0090-3558-44.2.519
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
Sediments and water from the slough arm of Spring Lake, the headwaters of the San Marcos River, Texas, USA, as well as swabs from biofilms on carapaces and from the cloacae of 18 common musk turtles (Sternotherus odoratus), 21 red-eared sliders (Trachemys scripta elegans), nine Texas river cooters (Pseudemys texana), one snapping turtle (Chelydra serpentina serpentina), and three Guadalupe spiny soft-shell turtles (Apalone spinifera guadalupensis), caught at the same site, were analyzed for salmonellae by culture and molecular techniques. Although enrichment cultures from sediment and water samples were negative for salmonellae in polymerase chain reaction (PCR)-based analyses, this technique detected salmonellae in the enrichments from both carapaces and cloacae of 11 musk turtles (61%), eight red-eared sliders (38%), and the snapping turtle. Salmonellae could also be detected in the enrichments from the carapaces of two additional red-eared sliders and two Texas river cooters; the remaining samples were negative. Further characterization of isolates obtained from the enrichment cultures of seven selected individuals that represented all turtle species with salmonellae confirmed the presence of Salmonella enterica subspecies enterica, with serovars Rubislaw, Newport, Gaminara, and Thompson identified. These results demonstrate the presence of different strains of potentially human pathogenic salmonellae naturally occurring on several turtle species with different life histories even within supposedly pristine environments.
引用
收藏
页码:519 / 526
页数:8
相关论文
共 40 条
[1]  
[Anonymous], 1989, Molecular Cloning
[2]  
Bennasar Antonio, 2000, International Microbiology, V3, P31
[3]  
Brenner D, 2002, J ZOO WILDLIFE MED, V33, P311, DOI 10.1638/1042-7260(2002)033[0311:HSOWAC]2.0.CO
[4]  
2
[5]   Salmonella diversity associated with wild reptiles and amphibians in Spain [J].
Briones, V ;
Téllez, S ;
Goyache, J ;
Ballesteros, C ;
Lanzarot, MD ;
Domínguez, L ;
Fernández-Garayzábal, JF .
ENVIRONMENTAL MICROBIOLOGY, 2004, 6 (08) :868-871
[6]   Salmonella serovars in the herpetofauna of Indiana county, Pennsylvania [J].
Chambers, David L. ;
Hulse, Arthur C. .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2006, 72 (05) :3771-3773
[7]   Outbreak of Salmonella serotype hartford infections associated with unpasteurized orange juice [J].
Cook, KA ;
Dobbs, TE ;
Hlady, G ;
Wells, JG ;
Barrett, TJ ;
Puhr, ND ;
Lancette, GA ;
Bodager, DW ;
Toth, BL ;
Genese, CA ;
Highsmith, AK ;
Pilot, KE ;
Finelli, L ;
Swerdlow, DL .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1998, 280 (17) :1504-1509
[8]  
Ernst CH., 1994, TURTLES US CANADA
[9]   RECOVERY OF BACTERIAL PATHOGENS FROM HIGH QUALITY SURFACE WATER [J].
FAIR, JF ;
MORRISON, SM .
WATER RESOURCES RESEARCH, 1967, 3 (03) :799-+
[10]  
FOSTER JW, 1995, ANNU REV MICROBIOL, V49, P145, DOI 10.1146/annurev.micro.49.1.145