1. Investigation of extramammary sources of Group BStreptococcusreveals its unusual ecology and epidemiology in camels
- Author
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Ruth N. Zadoks, Emelie Lejon Flodin, Nduhiu Gitahi, Chiara Crestani, Dinah Seligsohn, and Erika Chenais
- Subjects
Serotype ,endocrine system ,Molecular epidemiology ,Ecology ,Biology ,medicine.disease_cause ,medicine.disease ,Mastitis ,Carriage ,Streptococcus agalactiae ,medicine ,Herd ,Camel milk ,Sample collection - Abstract
Camels are vital to food production in the drylands of the Horn of Africa, with milk as their main contribution to food security. A major constraint to camel milk production is mastitis, inflammation of the mammary gland. The condition negatively impacts milk yield and quality as well as household income. The leading cause of mastitis in dairy camels isStreptococcus agalactiae,group BStreptococcus(GBS), which is also a commensal and pathogen of humans. It has been suggested that extramammary reservoirs for this pathogen may contribute to the occurrence of mastitis in camels. We explored the molecular epidemiology of GBS in camels using a cross-sectional study design for sample collection and phenotypic, genomic and phylogenetic analysis of isolates. Among 88 adult camels and 93 calves from six herds in Laikipia County, Kenya, GBS was detected in 20% of 50 milk samples, 25% of 152 nasal swabs, 8% of 90 oral swabs and 3% of 90 rectal swabs, but not in vaginal swabs. Per camel herd, two to four sequence types (ST) were present. More than half of the isolates belonged to ST617 or its single-locus variant, ST1652, with these STs found across all sample types. Serotype VI was detected in 30 of 58 isolates. In three herds, identical STs were detected in milk and swab samples, suggesting that extramammary sources of GBS may contribute to the maintenance and spread of GBS within camel herds. This needs to be considered when developing prevention and control strategies. In addition, the high nasal carriage rate, low recto-vaginal carriage rate, and high prevalence of serotype VI for GBS in camels are in stark contrast to the distribution of GBS in humans and reveal hitherto unknown ecological and molecular features of this bacterial species.
- Published
- 2021