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Biofilm-forming associated genotypic and phenotypic characteristics of Staphylococcus spp. isolated from animals and air.

机译:生物膜形成相关的葡萄球菌属的基因型和表型特征。与动物和空气隔离。

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摘要

Biological monitoring is performed to detect and analyze microorganisms that have continuously made an effort to survive in the environment. Of such microorganisms, Staphylococcus spp. is considered a common cause of nosocomial and environmental infections., Microbial Surface Components Recognizing Adhesive Matrix Molecules (MSCRAMMs) are required for the adhesion and biofilm formation of Staphylococci. Thirty-six and thirty-five Staphylococci isolated from animals and air, respectively, were analyzed. Biofilm formation and ten MSCRAMM genes were investigated using Congo red agar, tissue culture plate methods, and PCR. Airborne isolates were shown to have higher adherence and stronger biofilm formation than those from animals. The prevalence of MSCRAMM genes from air isolates was also higher than those from animals. Of the genes, eno was mainly associated with biofilm formation in both animals and airborne isolates (P<0.05). Moreover, the rate of airborne isolates harboring the eno gene was higher than in animal isolates. These results indicated that analysis of MSCRAMM genes with a phenotypic assay might be a helpful bacterial control system for the environment.
机译:进行生物监视以检测和分析不断努力在环境中生存的微生物。在这些微生物中,葡萄球菌属。被认为是医院和环境感染的常见原因。识别葡萄球菌的粘附和生物膜形成需要识别粘附基质分子(MSCRAMM)的微生物表面成分。分析了分别从动物和空气中分离出的36株和35株葡萄球菌。使用刚果红琼脂,组织培养板方法和PCR研究了生物膜形成和十个MSCRAMM基因。空气中分离株被证明比动物分离株具有更高的粘附性和更强的生物膜形成。来自空气分离株的MSCRAMM基因的患病率也高于来自动物的MSCRAMM基因。在基因中,eno主要与动物和空气传播的分离物中的生物膜形成有关(P <0.05)。此外,携带eno基因的空气传播分离株的比率高于动物分离株。这些结果表明,用表型分析对MSCRAMM基因进行分析可能是有益于环境的细菌控制系统。

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