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1.
J Fungi (Basel) ; 7(10)2021 Oct 09.
Article in English | MEDLINE | ID: mdl-34682266

ABSTRACT

Information about the fungal composition of bee bread, and the fermentation processes to which the fungi contribute significantly, is rather scarce or fragmentary. In this study, we performed an NGS-based metagenomics snapshot picture study of the fungal composition of bee bread in four locations in Bulgaria during the most active honeybee foraging period at the end of June 2020. The sampling locations were chosen to differ significantly in climatic conditions, landscape, and anthropogenic pressure, and the Illumina 2 × 250 paired-end reads platform was used for amplicon metagenomics study of the ITS2 region. We found that some of the already reported canonical beneficial core fungal species were present within the studied samples. However, some fungal genera such as Monilinia, Sclerotinia, Golovinomyces, Toxicocladosporium, Pseudopithomyces, Podosphaera and Septoriella were reported for the first time among the dominant genera for a honeybee related product. Anthropogenic pressure negatively influences the fungal composition of the bee bread in two different ways-urban/industrial pressure affects the presence of pathogenic species, while agricultural pressure is reflected in a decrease of the ratio of the beneficial fungi.

2.
FEMS Immunol Med Microbiol ; 47(3): 425-35, 2006 Aug.
Article in English | MEDLINE | ID: mdl-16872380

ABSTRACT

An experimental oral pig model was used to assess the pathogenic and immunogenic potential of Yersinia enterocolitica serotype O:8 wild-type strain 8081-L2 and its lipopolysaccharide (LPS) mutant derivatives: a spontaneous rough mutant 8081-R2, strain 8081-DeltawzzGB expressing O-antigen with uncontrolled chain lengths, and strain 8081-wbcEGB expressing semirough LPS with only one O-unit. Microbiological and immunological parameters of the infected pigs were followed from day 7 to 60 postinfection. The wild-type and all LPS mutant strains persisted in the lymphoid tissue of tonsils and small intestines, causing asymptomatic infection without any pathological changes. Although the pig is known as a reservoir of Yersiniae, a precise analysis of pathogenic and immunogenic parameters based on different in vitro tests (hematological response, killing ability of leukocytes and blood sera, antibody response, hydrogen peroxide production by macrophages, classical and alternative pathways of complement activation), revealed significant attenuation in the pathogenicity of the LPS mutant strains but not the loss of immunogenic potential. In comparison with the other strains, strain 8081-DeltawzzGB demonstrated more continuous leucocytosis with monocytosis, higher invasive potential, significant activation of hydrogen peroxide production by macrophages and an effective immunoglobulin G immune response accompanied by relevant histological immunomorphological rearrangements.


Subject(s)
O Antigens/genetics , Yersinia Infections/immunology , Yersinia Infections/microbiology , Yersinia enterocolitica/genetics , Animals , Antibodies, Bacterial/blood , Blood Bactericidal Activity , Complement Pathway, Alternative/immunology , Complement Pathway, Classical/immunology , Disease Models, Animal , Hydrogen Peroxide/metabolism , Immunoglobulins/blood , Macrophages, Peritoneal/metabolism , Mouth/microbiology , Mutation , Neutrophils/immunology , Swine , Viscera/microbiology , Yersinia enterocolitica/growth & development , Yersinia enterocolitica/immunology , Yersinia enterocolitica/pathogenicity
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