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Factors influencing distribution of Coccidioides immitis in soil, Washington State, 2016

November 3, 2021

Coccidioides immitis and Coccidioides posadasii are causative agents of Valley fever, a serious fungal disease endemic to regions with hot, arid climate in the United States, Mexico, and Central and South America. The environmental niche of Coccidioides spp. is not well defined, and it remains unknown whether these fungi are primarily associated with rodents or grow as saprotrophs in soil. To better understand the environmental reservoir of these pathogens, we used a systematic soil sampling approach, quantitative PCR (qPCR), culture, whole-genome sequencing, and soil chemical analysis to identify factors associated with the presence of C. immitis at a known colonization site in Washington State linked to a human case in 2010. We found that the same strain colonized an area of over 46,000 m2 and persisted in soil for over 6 years. No association with rodent burrows was observed, as C. immitis DNA was as likely to be detected inside rodent holes as it was in the surrounding soil. In addition, the presence of C. immitis DNA in soil was correlated with elevated levels of boron, calcium, magnesium, sodium, and silicon in soil leachates. We also observed differences in the microbial communities between C. immitis-positive and -negative soils. Our artificial soil inoculation experiments demonstrated that C. immitis can use soil as a sole source of nutrients. Taken together, these results suggest that soil parameters need to be considered when modeling the distribution of this fungus in the environment.

Publication Year 2021
Title Factors influencing distribution of Coccidioides immitis in soil, Washington State, 2016
DOI 10.1128/mSphere.00598-21
Authors Nancy A. Chow, David Kangiser, Lalitha Gade, Orion Z. McCotter, Steven Hurst, Amy Salamone, Ron Wohrle, Wayne Clifford, Sunkyung Kim, Zainab Salah, Hanna N. Oltean, Geoffrey S. Plumlee, Anastasia P. Litvintseva
Publication Type Article
Publication Subtype Journal Article
Series Title mSphere
Index ID 70280080
Record Source USGS Publications Warehouse
USGS Organization Office of the Director USGS
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