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Whole-genome sequencing of Hyphopichia burtonii from isolated yeast recovered from zebra dove droppings in Thailand

Ngasaman, R.; Indoang, S.; Chumtong, S.; Prachantasena, S.; Wiriyaprom, R.; Surachart, K.; Promwisedc, R.

2024-11-23 molecular biology
10.1101/2024.11.22.624822 bioRxiv
Show abstract

This study aimed to characterise zoonotic yeasts from zebra dove (Geopelia striata) droppings in small farms in Songkhla province, Thailand. Four contaminated isolates were found with morphology and biochemical test results like those of Cryptococcus spp., but they exhibited different results from the positive control in nested polymerase chain reaction (PCR); the first step was negative, but the nested PCR step was positive. All isolates were subjected to antifungal susceptibility testing. The resistance isolate (Tip11) was subjected to whole genome sequencing. Only the Tip11 isolate showed high resistance to itraconazole and ketoconazole, with minimum inhibitory concentrations of >32.0 and 32.0 g/mL, respectively, corresponding to high levels of minimum fungicidal concentrations for both drugs (>32 g/mL). Consequently, Tip11 was selected as a representative of the contaminated isolates and subjected to whole-genome sequencing analysis. The results identified the Tip11 isolate as Hyphopichia burtonii (99.30% identity), with a genome length of 12,360,159 bp, a GC content of 35.16%, and 2,146 protein groups closely related to the Saccharomycetaceae family. This is the first report of H. burtonii in zebra doves in Thailand. This yeast has been previously identified as a cause of human infection leading to peritonitis in Thailand, and its resistance to antifungal drugs may pose a public health risk. Therefore, the application of biosecurity measures on farms, such as regular removal of droppings and cage sanitisation, should be implemented according to good agricultural practices. Moreover, further characterisation and functional analysis of the proteins identified should be considered.

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