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Polymorphism of Listeria monocytogenes and Listeria innocua strainsisolated from short-ripened cheeses

机译:从短熟干酪中分离出单核细胞增生李斯特菌和无毒李斯特菌的多态性

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Thirty isolates of Listeria monocytogenes and 18 of L. innocua obtained from different short-ripened cheeses manufactured in Asturias (northern Spain), were compared with each other and with reference strains using serotype, phage type and pulsed-field restriction endonuclease digestion profiles analysis of the total DNA. Restriction enzymes ApaI and SmaI defined five clusters in L. monocytogenes (m1 to m5) and two main clusters in L. innocua (i1 and i2). Cluster i2 was further arranged into three subclusters (i2a, i2b and i2c) based on the different Eco52I (XmaIII) and Crf42I (SacII) patterns of its isolates. Clusters of L. innocua were clearly different whereas those of L. monocytogenes were more closely related to each other. In this latter species, serotype 4b isolates (m4 and m5) constituted a more homogeneous group than serogroup 1 isolates (m1, m2 and m3). Cluster m3 contained two strains of serotype 1/2a whereas mi and m2 harboured strains of both serotypes, 1/2a and 1/2b. Therefore, the combined use of restriction patterns and serotype may be useful to differentiate L. monocytogenes strains showing identical restriction profiles but differing in serotype. The cheese source of Listeria strains proved that isolates from cluster mi were repeatedly detected as a contaminant in the same type of cheese. Comparison of L. monocytogenes ApaI profiles showed a genetic proximity of m4 and m5 to the recognized pathogenic strains ATCC 13932 and NCTC 11994, responsible for meningitis cases in other countries. Finally bacteriophage typing data indicated that m4, the sole phage typable group, had a phage type resembling that of strains causing the Auckland (New Zealand) outbreak of listeriosis in 1969. These data suggest a wide distribution of closely related types which might cause, under several circumstances, sporadic cases of listeriosis.
机译:使用血清型,噬菌体类型和脉冲场限制性内切核酸酶消化谱分析法,比较了三十种李斯特菌分离株和从阿斯图里亚斯(西班牙北部)生产的不同短熟干酪中获得的李斯特菌30株,并与参考菌株进行了比较。总DNA。限制性内切酶ApaI和SmaI在单核细胞增生李斯特氏菌(m1至m5)中定义了五个簇,在无毒李斯特菌中(i1和i2)定义了两个主要簇。根据分离株的不同的Eco52I(XmaIII)和Crf42I(SacII)模式,将簇i2进一步分为三个子簇(i2a,i2b和i2c)。无害李斯特菌的簇明显不同,而单核细胞增生李斯特菌的簇彼此更紧密相关。在后一种物种中,血清型4b分离株(m4和m5)比血清型1分离株(m1,m2和m3)构成了更均一的基团。群集m3包含两个血清型1 / 2a的菌株,而mi和m2则包含两个血清型1 / 2a和1 / 2b的菌株。因此,限制模式和血清型的联合使用可能有助于区分单核细胞增生李斯特菌菌株,这些菌株显示出相同的限制谱,但血清型不同。李斯特菌菌株的干酪来源证明,在相同类型的干酪中,从簇mi分离出的细菌被重复检测为污染物。单核细胞增生李斯特氏菌ApaI图谱的比较显示,m4和m5与公认的致病株ATCC 13932和NCTC 11994的遗传接近性,在其他国家造成脑膜炎。最后,噬菌体分型数据表明,m4是唯一的可分型噬菌体组,其噬菌体类型类似于导致1969年奥克兰(新西兰)李斯特菌病暴发的菌株的噬菌体类型。这些数据表明,密切相关类型的广泛分布可能导致在几种情况下,偶发性李斯特菌病病例。

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