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The persistence of time: The lifespan of Bacillus anthracis spores in environmental reservoirs

Abstract

Anthrax is a lethal bacterial zoonosis primarily affecting herbivorous wildlife and livestock. Upon host death Bacillus anthracis vegetative cells form spores capable of surviving for years in soil. Anthrax transmission requires host exposure to large spore doses. Thus, conditions that facilitate higher spore concentrations or promote spore survival will increase the probability that a pathogen reservoir infects future hosts. We investigated abiotic and pathogen genomic variation in relation to spore concentrations in surface soils (0e1 cm depth) at 40 plains zebra (Equus quagga) anthrax carcass sites in Namibia. Specifically, how initial spore concentrations and spore survival were affected by seasonality associated with the timing of host mortality, local soil characteristics, and pathogen genomic variation. Zebras dying of anthrax in wet seasons-the peak season for anthrax in Etosha National Park-had soil spore concentrations 1.36 orders of magnitude higher than those that died in dry seasons. No other variables considered affected spore concentrations, and spore survival rates did not differ among sites. Surface soils at these pathogen reservoirs remained culture positive for a range of 3.8e10.4 years after host death. Future research could evaluate if seasonal patterns in spore concentrations are driven by differences in sporulation success or levels of terminal bacteremia.

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90° N90° S · 180° W ← longitude → 180° E
Source-reported bounding extent: -19.127116020049513° to -18.446804888155214° latitude; 15.631298273767158° to 16.808644648105826° longitude. This indicates report coverage, not an exact sampling location. View area on OpenStreetMap.

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BibTeXRIS

Zoe R. Barandongo, Amelie C. Dolfi, Spencer A. Bruce, Kristyna Rysava, Yen-Hua Huang, Hendrina Joel, Ayesha Hassim, Pauline L. Kamath, Henriette van Heerden, Wendy Christine Turner. 2023. The persistence of time: The lifespan of Bacillus anthracis spores in environmental reservoirs. https://doi.org/10.1016/j.resmic.2023.104029

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