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1.
Ecotoxicol Environ Saf ; 263: 115277, 2023 Sep 15.
Article in English | MEDLINE | ID: mdl-37499390

ABSTRACT

Numerous antibiotic resistance genes (ARGs) and virulence factors (VFs) found in animal manure pose significant risks to human health. However, the effects of graphene sodium selenite (GSSe), a novel chemical nano-Selenium, and biological nano-Selenium (BNSSe), a new bioaugmentation nano-Se, on bacterial Se metabolism, chemotaxis, ARGs, and VFs in animal manure remain unknown. In this study, we investigated the effects of GSSe and BNSSe on ARGs and VFs expression in broiler manure using high-throughput sequencing. Results showed that BNSSe reduced Se pressure during anaerobic fermentation by inhibiting bacterial selenocompound metabolism pathways, thereby lowering manure Selenium pollution. Additionally, the expression levels of ARGs and VFs were lower in the BNSSe group compared to the Sodium Selenite and GSSe groups, as BNSSe inhibited bacterial chemotaxis pathways. Co-occurrence network analysis identified ARGs and VFs within the following phyla Bacteroidetes (genera Butyricimonas, Odoribacter, Paraprevotella, and Rikenella), Firmicutes (genera Lactobacillus, Candidatus_Borkfalkia, Merdimonas, Oscillibacter, Intestinimonas, and Megamonas), and Proteobacteria (genera Desulfovibrio). The expression and abundance of ARGs and VFs genes were found to be associated with ARGs-VFs coexistence. Moreover, BNSSe disruption of bacterial selenocompound metabolism and chemotaxis pathways resulted in less frequent transfer of ARGs and VFs. These findings indicate that BNSSe can reduce ARGs and VFs expression in animal manure by suppressing bacterial selenocompound metabolism and chemotaxis pathways.


Subject(s)
Selenium , Humans , Animals , Selenium/pharmacology , Manure/analysis , Genes, Bacterial , Anti-Bacterial Agents/pharmacology , Chemotaxis/genetics , Sodium Selenite/pharmacology , Chickens/genetics , Bacteria , Drug Resistance, Microbial/genetics , Bacteroidetes , Firmicutes
2.
Appl Microbiol Biotechnol ; 99(14): 5985-96, 2015 Jul.
Article in English | MEDLINE | ID: mdl-25794873

ABSTRACT

Heat-labile enterotoxin (LT) of enterotoxigenic Escherichia coli (ETEC) is one of the major virulence factors for causing diarrhea in piglets, and LT is a strong immunogen. Thus, LT represents an important target for development of vaccines and diagnostic tests. In this study, bioinformatic tools were used to predict six antigenic B cell epitopes in the B subunit of LT protein (LTB) of ETEC strains. Then, seven antigenic B cell epitopes of LTB were identified by polyclonal antisera (polyclonal antibody (PAb)) using a set of LTB-derived peptides expressed as maltose-binding protein (MBP) fusion protein. In addition, one LTB-specific monoclonal antibody (MAb) was generated and defined its corresponding epitope as mentioned above. This MAb was able to specifically bind with native LT toxin and has no cross-reaction with LT-II (type II heat-labile enterotoxin), Stx1 (Shiga toxin I), Stx2 (Shiga toxin II), STa (heat-stable enterotoxin I), and STb (heat-stable enterotoxin II) toxins. Further, this MAb was able to interrupt LT toxin specific binding to GM1 receptor, indicating that the corresponding epitope is the specific binding region to GM1 receptor. Moreover, in vitro and in vivo assay showed that the MAb was able to neutralize the native LT toxin. Diarrheal suckling pigs challenged with LT-positive ETEC strain recovered when an enema with this purified MAb was administered. This study will provide the foundation for further studies about the interaction between LT toxin and GM1 receptor and about the developing of epitope-based vaccines and specific therapeutic agent.


Subject(s)
Antibodies, Bacterial/immunology , Antibodies, Neutralizing/immunology , Bacterial Toxins/immunology , Enterotoxins/immunology , Epitopes, B-Lymphocyte/immunology , Escherichia coli Proteins/immunology , Animals , Antibodies, Monoclonal/immunology , Antibodies, Monoclonal/isolation & purification , Bacterial Toxins/genetics , Computational Biology , Diarrhea/therapy , Enema , Enterotoxins/genetics , Epitopes, B-Lymphocyte/genetics , Escherichia coli Infections/therapy , Escherichia coli Infections/veterinary , Escherichia coli Proteins/genetics , Immunization, Passive/methods , Neutralization Tests , Protein Binding , Receptors, Cell Surface/metabolism , Swine , Swine Diseases/therapy , Treatment Outcome
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