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Biology subjects

Silva, B. B. I.

Publications and source records attributed to Silva, B. B. I..

2 recordsLinked to original sources

Genetic diversity of domestic cat hepadnavirus in Taiwan

Domestic cat hepadnavirus (DCH) is an infectious disease associated with chronic hepatitis in cats, suggesting a similarity with hepatitis B virus infection in humans. Since its first identification in Australia in 2018, DCH has been reported in several countries with varying prevalence rates, but its prevalence in Taiwan has not yet been investigated. Here, we aimed to identify the presence and prevalence of DCH infections in Taiwan. Among 71 samples tested, eight (11.27%) were positive for DCH. Of these positive cases, three cats had elevated levels of alanine transaminase (ALT) and aspartate transaminase (AST), suggesting an association between DCH infection and chronic hepatitis. Four DCH-positive samples were also tested for feline immunodeficiency virus (FIV) and feline leukemia virus (FeLV) co-infection, one (25%) was positive for FIV while none for FeLV (0%). In addition, we performed whole genome sequencing of six samples to determine the viral genome sequences. Phylogenetic analyses identified a distinct lineage compared with previously reported sequences. Considering the recent findings suggesting the potential risk of DCH for interspecies or zoonotic transmission, this study suggests the importance of continuous surveillance of DCH and further research to elucidate the pathophysiology and transmission route of DCH.

genetics↗

Bacteriophage cocktails displayed protective effects against soft rot-causing Pectobacterium sp.

Soft rot caused by Pectobacterium sp. is responsible for significant losses in vegetable production worldwide. Methods for the effective control of soft rot are limited and are primarily based on good agricultural practices. The use of bacteriophages as biocontrol agents appears to be a promising alternative to combat phytopathogens. In this study, we investigated the efficacy of lytic phages recovered from symptomatic tissues and environmental samples against soft rot caused by Pectobacterium carotovorum subsp. carotovorum. Three bacteriophage isolates, designated as vB_PcaP-A3, vB_PcaM-D1, and vB_PcaM-J3, were observed to effectively lyse P. carotovorum subsp. carotovorum. Phage vB_PcaP-A3 exhibited virion morphology similar to the members of the podovirus group, while phages vB_PcaM-D1 and vB_PcaM-J3 showed myovirus morphology based on transmission electron microscopy. The optimal multiplicity of infection (MOI) differed greatly among the three phages. All three phages survived incubations at 30{degrees}C, 40{degrees}C and 50{degrees}C and pH conditions ranging from 3.0 to 9.0, but were all inactivated at 60{degrees}C and at pH 12. Both monophage and cocktail preparations were effective in inhibiting the growth of P. carotovorum subsp. carotovorum in the in vitro challenge tests. In the semi-in planta assays, while treatment with cocktail preparations completely inhibited the development of soft rot in tissue slices, monophage treatments not only resulted in significant reduction of tissue maceration in slices, but also showed protective effect against soft rot in tubers. Overall, these results demonstrate the efficacy of phages vB_PcaP-A3, vB_PcaM-D1, and vB_PcaM-J3 for the biocontrol of soft rot caused by P. carotovorum subsp. carotovorum.

microbiology↗