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Worley, T. K.

Publications and source records attributed to Worley, T. K..

3 recordsLinked to original sources

Comparative genomics reveals phylogenetic intermixing of Stomoxys fly, manure, and bovine mastitis-associated bacteria in dairy settings

Stomoxys flies are highly ubiquitous blood-feeding pests on dairy farms and are suspected carriers of pathogenic bacteria due to their close association with both manure reservoirs and cattle hosts. While prior studies using amplicon sequencing and culture dependent methodologies have been used to characterize the composition of the Stomoxys microbiota, little is known about strain level genomic and functional diversity of Stomoxys-associated bacteria. In this study, we address this key gap in knowledge by using whole genome sequencing to provide the first comparative genomic analysis of Stomoxys-derived Escherichia coli, Klebsiella pneumoniae, and Staphylococcaceae isolates. Our results show that fly and manure isolates collected from the same farm system are phylogenetically interspersed, with subsequent pairwise genome alignments revealing near identical strains and plasmids shared between the two sources. We further identified a phylogenetic clade of Mammaliicoccus sciuri, which contains known mastitis agents that were associated with both flies and manure. Functional analysis revealed that this clade was highly enriched in xylose metabolism genes that were rare across other M. sciuri lineages, suggesting potential niche differentiation within the genus. Collectively, our results provide strong evidence for the acquisition of fecal-associated bacterial isolates by adult Stomoxys flies, confirming the link between biting muscid flies and manure habitats. The intermixing of fly and manure isolates in clinically relevant taxonomic groups strongly suggests that flies serve as carriers of opportunistic mastitis-causing or other fecal-borne pathogens, and that flies may serve as important vehicles of pathogen dissemination across the dairy farm environment. Author summaryBlood-feeding Stomoxys flies are a major pest species in dairy operations and have been implicated as carriers of fecal-borne pathogens responsible for bovine mastitis and other important cattle diseases. In a previous study, we generated a large collection of bacterial isolates from manure and Stomoxys flies collected from dairy barns. Most bacterial isolates derived from flies were identified as taxa associated with bovine mastitis, including Escherichia coli, Klebsiella pneumoniae, and non-aureus Staphylococcus; however, it is unknown if these represent bacterial strains acquired by flies from manure. Here, we examined this possibility directly by performing whole genome sequencing of a subset of potential mastitis pathogens derived primarily from flies and manure and supplemented this analysis with publicly available genomes on NCBI (including mastitis and additional fly and manure strains). Our results reveal significant interrelations between fly, manure, and clinically derived mastitis strains, suggesting that Stomoxys flies participate in the carriage and dissemination of bovine mastitis pathogens acquired from manure. Additionally, this work highlights the functional diversity of bacterial pathogens within the barn environment and greatly expands the available genomic data for understudied mastitis pathogens such as Mammaliicoccus sciuri.

microbiology↗

The complex development of psoralen-interstrand crosslink resistance in Escherichia coli requires AcrR inactivation, retention of a marbox sequence, and one of three MarA, SoxS, or Rob global regulators

Crosslinking agents, such as psoralen and UVA radiation, can be effectively used as antimicrobials and for treating several dysplastic conditions in humans, including some cancers. Yet, both cancer cells and bacteria can become resistant to these compounds, making it important to understand how resistance develops. Recently, several mutants were isolated that developed high-levels of resistance to these compounds through upregulation of components of the AcrAB-TolC-efflux pump. Here, we characterized these mutants and found that resistance specifically requires inactivating mutations of the acrR transcriptional repressor which also retain the marbox sequence found within this coding region. In addition, the presence of any one of three global regulators, MarA, SoxS, or Rob, is necessary and sufficient to bind to the marbox sequence and activate resistance. Notably, although psoralen is a substrate for the efflux pump, these regulators are not naturally responsive to this stress as neither psoralen, UVA, nor crosslink induction upregulates acrAB expression in the absence of mutation. HighlightsO_LIPsoralen crosslink resistance requires AcrR inactivation and MarA/SoxS/Rob activation C_LIO_LIPsoralen crosslink resistance is mediated by upregulating the AcrAB-TolC efflux pump C_LIO_LIAcrAB-TolC can utilize psoralen as a substrate but not upregulated by this stress C_LIO_LIAcquiring resistance to DNA interstrand crosslinks requires mutation C_LI

genetics↗

Prevalence of antimicrobial resistance phenotypes and genes in stable fly- and manure-derived bacterial isolates from clinically relevant taxa in dairy settings

AimsThis study aimed to characterize and compare the antimicrobial resistance (AMR) profiles of clinically relevant bacterial taxa isolated from biting stable flies (Stomoxys spp.) and bovine manure samples collected at a dairy research facility over the course of an entire fly breeding season. The presence of extended-spectrum beta-lactamase (ESBL) and other antimicrobial resistance genes (ARGs) was also examined. Methods and resultsA total of 606 fly- and 180 manure-derived strains were tested via disk diffusion for susceptibility to commonly administered antibiotics used in veterinary and human medicine. A small percentage of Enterobacterales exhibited resistance to the tested antimicrobials, including ceftiofur and other beta-lactam antibiotics. Extended spectrum beta-lactamase genes (TEM, CTX, OXA, CMY) were detected by PCR amplification in ceftiofur-resistant Escherichia coli, Klebsiella and Enterobacter spp. isolates. We additionally identified pirlimycin-resistant Staphylococcus and Mammaliicoccus spp. isolates encoding lnuA, a lincosamide resistance gene found primarily on small mobilizable plasmids. ConclusionsThese findings highlight the significance of stable flies in the carriage of antimicrobial-resistant bacterial strains and plasmid-associated ARGs on dairy farms.

microbiology↗