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Synonyms:
   Ctenosaura similis (Black Iguana) 

Broader Terms:
   Ctenosaura (spiny-tailed iguanas) 
   Squamata (amphisbaenians) 

More Specific:
   Ctenosaura similis multipunctata 
   Ctenosaura similis similis 
 
 
Latest Articles on Ctenosaura similis GRAY 1831 from uBioRSS
Invasive black spiny‐tailed iguanas, Ctenosaura similis, on Gasparilla Is... - Integrative Zoology
Metazoan Endoparasites of 13 Species of Central American Anoles (Sauria: Po... - BioOne: Comparative Parasitology


External Resources:

Common Names: Black Spiny-tailed Iguana, Schwarzer Leguan, Black Iguana, Iguana-espinosa rayada



1.  Isolation of Salmonella spp. from black spiny-tailed iguana (Ctenosaura similis) meat commercialised in markets of León city, Nicaragua.LinkIT
Ríos R, Flores B, Mora-Sánchez B, Torres D, Sheleby-Elías J, Jirón W, Balcázar JL
Veterinary medicine and scienceVet Med SciIsolation of Salmonella spp. from black spiny-tailed iguana (Ctenosaura similis) meat commercialised in markets of León city, Nicaragua.10.1002/vms3.654The black spiny-tailed iguana (Ctenosaura similis) is an endemic animal in Mesoamerica, whose meat is consumed by the local population.Because the black spiny-tailed iguana may be potential reservoirs of pathogens, this study aimed to isolate and characterise Salmonella spp. in their meat commercialised in markets of the city of León, Nicaragua.Thirteen specimens were analysed for the isolation of Salmonella spp., as well as their antimicrobial resistance patterns, including the presence of genes encoding extended-spectrum ?-lactamases.Salmonella spp. isolates were found in eight out of 13 samples, with S. enterica serovar Enteritidis being found in six out of eight samples. Moreover, eight Salmonella spp. isolates were resistant to amoxicillin plus clavulanic acid and cephalexin, but sensitive to other tested antibiotics. The blaSHV gene was detected in seven out of eight Salmonella spp. isolates, followed by the blaTEM (two out of eight) and blaCXT-M (one out of eight) genes.These findings represent an important contribution to the implementation of appropriate strategies to prevent foodborne diseases.© 2021 The Authors. Veterinary Medicine and Science published by John Wiley & Sons Ltd.RíosRosmaryRCentro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.FloresByronBhttps://orcid.org/0000-0002-1932-3227Centro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.Mora-SánchezBrendaBCentro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.TorresDayanaDCentro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.Sheleby-ElíasJessicaJCentro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.JirónWilliamWCentro Veterinario de Diagnóstico e Investigación (CEVEDI), Departamento de Veterinaria y Zootecnia, Escuela de Ciencias Agrarias y Veterinarias, Universidad Nacional Autónoma de Nicaragua-León (UNAN-León), León, Nicaragua.BalcázarJosé LJLhttps://orcid.org/0000-0002-6866-9347Catalan Institute for Water Research (ICRA), Girona, Spain.University of Girona, Girona, Spain.engCase Reports20211006EnglandVet Med Sci1016788372053-1095IMSalmonellaantimicrobialsfoodborne diseasesiguanameat hygiene20211061738202110760202110760aheadofprint3461429210.1002/vms3.654REFERENCES, 2021</i></font><br><font 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