生物
毒力
基因组
微生物学
基因
生物信息学
益生菌
遗传学
致病菌
全基因组测序
韦斯拉
细菌粘附素
抗生素耐药性
流动遗传元素
质粒
抗生素
细菌
乳酸菌
明串珠菌
作者
Hikmate Abriouel,Leyre Lavilla Lerma,María del Carmen Casado Muñoz,Beatriz Pérez Montoro,Jan Kabisch,Rohtraud Pichner,Gyu‐Sung Cho,Horst Neve,Vincenzina Fusco,Charles M. A. P. Franz,Antonio Gálvez,Nabil Benomar
标识
DOI:10.3389/fmicb.2015.01197
摘要
Despite the use of several Weissella (W.) strains for biotechnological and probiotic purposes, certain species of this genus were found to act as opportunistic pathogens, while strains of W. ceti were recognized to be pathogenic for farmed rainbow trout. Herein, we investigated the pathogenic potential of weissellas based on in silico analyses of the 13 whole genome sequences available to date in the NCBI database. Our screening allowed us to find several virulence determinants such as collagen adhesins, aggregation substances, mucus-binding proteins, and hemolysins in some species. Moreover, we detected several antibiotic resistance-encoding genes, whose presence could increase the potential pathogenicity of some strains, but should not be regarded as an excluding trait for beneficial weissellas, as long as these genes are not present on mobile genetic elements. Thus, selection of weissellas intended to be used as starters or for biotechnological or probiotic purposes should be investigated regarding their safety aspects on a strain to strain basis, preferably also by genome sequencing, since nucleotide sequence heterogeneity in virulence and antibiotic resistance genes makes PCR-based screening unreliable for safety assessments. In this sense, the application of W. confusa and W. cibaria strains as starter cultures or as probiotics should be approached with caution, by carefully selecting strains that lack pathogenic potential.
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