Background <p>The gut microbiota of Testudines is fundamental to their digestion and overall health, yet remains a poorly investigated area in their biology, particularly in wild freshwater turtle (terrapins) and tortoise populations within South Africa. This study investigated the occurrence, diversity, virulence genes and antibiotic resistance of <i>Escherichia coli</i> isolated from Testudine gut microbiota and sediments at Timbavati Private Nature Reserve, South Africa.</p> Methods and results <p>Cloacal swab samples were collected from 36 wild Testudines and 20 sediment samples from temporary and permanent water bodies. Presumed <i>E. coli</i> isolates were confirmed by polymerase chain reaction (PCR) targeting the <i>β</i>-D glucuronidase (<i>uidA</i>) gene and further validated through <i>16&#xa0;S rRNA</i> gene sequencing. Phenotypic antibiotic resistance was evaluated with the Kirby-Bauer method, whilst resistance and virulence genes were identified using PCR assays. <i>E. coli</i> was detected in 54 (62%) of 87 isolates (23 Testudines and 31 sediments), confirmed by <i>uidA</i> PCR assay. Detected virulence genes included <i>eaeA</i> (42%), <i>virF</i> (22%), <i>stx1</i> (16%), and <i>stx2</i> (3%), and isolates exhibited resistance to erythromycin (53%), cephalothin (48%), and spectinomycin (40%). Resistance genes such as <i>mcr-4</i> (70%), <i>bla</i><sub>SHV</sub> (46%), <i>bla</i><sub>TEM</sub> (64%), <i>mcr-1</i> (42%), <i>qnrA</i> (16%), <i>mcr-2</i> (22%), <i>qnrD</i> (11%), and <i>tetW</i> (2%) were also detected.</p> Conclusions <p>This study demonstrates that wild Testudines harbour <i>E. coli</i> in their gut and that it also occurs in their surrounding environment, with notable antibiotic resistance and virulence potential. The findings underscore the complexity of host-microbial interactions and the influence of environmental and host factors on microbial diversity, informing potential conservation and health management strategies for these reptilian species.</p>

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Uncovering hidden threats: prevalence, antibiotic resistance and virulence gene profiles of Escherichia coli strains isolated from Testudines and their aquatic habitats

  • Lungile N. Mlangeni,
  • Tsepo Ramatla,
  • Cormac Price,
  • Oriel Thekisoe,
  • Che Weldon

摘要

Background

The gut microbiota of Testudines is fundamental to their digestion and overall health, yet remains a poorly investigated area in their biology, particularly in wild freshwater turtle (terrapins) and tortoise populations within South Africa. This study investigated the occurrence, diversity, virulence genes and antibiotic resistance of Escherichia coli isolated from Testudine gut microbiota and sediments at Timbavati Private Nature Reserve, South Africa.

Methods and results

Cloacal swab samples were collected from 36 wild Testudines and 20 sediment samples from temporary and permanent water bodies. Presumed E. coli isolates were confirmed by polymerase chain reaction (PCR) targeting the β-D glucuronidase (uidA) gene and further validated through 16 S rRNA gene sequencing. Phenotypic antibiotic resistance was evaluated with the Kirby-Bauer method, whilst resistance and virulence genes were identified using PCR assays. E. coli was detected in 54 (62%) of 87 isolates (23 Testudines and 31 sediments), confirmed by uidA PCR assay. Detected virulence genes included eaeA (42%), virF (22%), stx1 (16%), and stx2 (3%), and isolates exhibited resistance to erythromycin (53%), cephalothin (48%), and spectinomycin (40%). Resistance genes such as mcr-4 (70%), blaSHV (46%), blaTEM (64%), mcr-1 (42%), qnrA (16%), mcr-2 (22%), qnrD (11%), and tetW (2%) were also detected.

Conclusions

This study demonstrates that wild Testudines harbour E. coli in their gut and that it also occurs in their surrounding environment, with notable antibiotic resistance and virulence potential. The findings underscore the complexity of host-microbial interactions and the influence of environmental and host factors on microbial diversity, informing potential conservation and health management strategies for these reptilian species.