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松鼠葡萄球菌亚种的核糖分型、描述及其作为耐甲氧西林和葡萄球菌溶菌酶基因储存库的潜力。

Ribotype delineation and description of Staphylococcus sciuri subspecies and their potential as reservoirs of methicillin resistance and staphylolytic enzyme genes.

作者信息

Kloos W E, Ballard D N, Webster J A, Hubner R J, Tomasz A, Couto I, Sloan G L, Dehart H P, Fiedler F, Schubert K, de Lencastre H, Sanches I S, Heath H E, Leblanc P A, Ljungh A

机构信息

North Carolina State University, Raleigh 27695-7614, USA.

出版信息

Int J Syst Bacteriol. 1997 Apr;47(2):313-23. doi: 10.1099/00207713-47-2-313.

Abstract

Three subspecies of Staphylococcus sciuri, S. sciuri subsp. sciuri Kloos, Schleifer, and Smith 1976, 23AL emend. Kloos et al. 1997 [corrected], S. sciuri subsp. carnaticus subsp. nov., and S. sciuri subsp. rodentium subsp. nov., are described on the basis of their ribotype patterns, DNA-DNA liquid hybridization data, and phenotypic characteristics. Normalized ribotyping subdivided the S. sciuri patterns into three blocks of patterns, each corresponding to a subspecies. Each subspecies formed a separate, well-defined DNA similarity group when DNA-DNA hybridizations were conducted under stringent (70 degrees C) reassociation conditions. S. sciuri subsp. sciuri could be distinguished from the other subspecies on the basis of its ability to produce acid from D-cellobiose, alkaline phosphatase activity, and inability to produce either clumping factor or protein A. S. sciuri subsp. carnaticus could be distinguished by its ability to produce acid aerobically from D-xylose and maltose, inability to produce acid from D-melezitose, and smaller colony size on P agar. S. sciuri subsp. rodentium could be distinguished by its positive reaction in the latex agglutination test for clumping factor and/or protein A and generally higher frequencies and levels of oxacillin and methicillin resistance. All 40 strains of S. sciuri tested (including representatives of all three subspecies) hybridized with the mecA gene probe. All strains of S. sciuri subsp. sciuri, 79% of the strains of S. sciuri subsp. carnaticus and 89% of the strains of S. sciuri subsp. rodentium exhibited extracellular, staphylolytic enzyme activity. This activity was associated with an enzyme(s) that immunoblotted with a lysostaphin-specific monoclonal antibody; however, only three strains hybridized with a lysostaphin (end) gene probe. The type strain of S. sciuri subsp. carnaticus is DD 791 (= ATCC 700058), and the type strain of S. sciuri subsp. rodentium is DD 4761 (= ATCC 700061).

摘要

根据松鼠葡萄球菌(Staphylococcus sciuri)的核糖体分型模式、DNA-DNA液相杂交数据和表型特征,描述了松鼠葡萄球菌的三个亚种,即松鼠葡萄球菌松鼠亚种(S. sciuri subsp. sciuri)Kloos、Schleifer和Smith 1976年提出,23AL修订版,Kloos等人1997年[修正],卡纳蒂克松鼠葡萄球菌亚种(S. sciuri subsp. carnaticus)亚种新分类,以及啮齿动物松鼠葡萄球菌亚种(S. sciuri subsp. rodentium)亚种新分类。标准化核糖体分型将松鼠葡萄球菌的模式细分为三个模式组,每组对应一个亚种。在严格(70℃)复性条件下进行DNA-DNA杂交时,每个亚种形成一个单独的、定义明确的DNA相似性组。松鼠葡萄球菌松鼠亚种可根据其从D-纤维二糖产酸的能力、碱性磷酸酶活性以及不能产生凝聚因子或蛋白A来与其他亚种区分。卡纳蒂克松鼠葡萄球菌亚种可通过其在有氧条件下从D-木糖和麦芽糖产酸的能力、不能从D-松三糖产酸以及在P琼脂上菌落较小来区分。啮齿动物松鼠葡萄球菌亚种可通过其在凝聚因子和/或蛋白A乳胶凝集试验中的阳性反应以及通常较高的苯唑西林和甲氧西林耐药频率和水平来区分。所测试的40株松鼠葡萄球菌(包括所有三个亚种的代表)均与mecA基因探针杂交。所有松鼠葡萄球菌松鼠亚种菌株、79%的卡纳蒂克松鼠葡萄球菌亚种菌株和89%的啮齿动物松鼠葡萄球菌亚种菌株均表现出细胞外葡萄球菌溶解酶活性。该活性与一种能与溶葡萄球菌素特异性单克隆抗体免疫印迹的酶相关;然而,只有三株菌株与溶葡萄球菌素(末端)基因探针杂交。卡纳蒂克松鼠葡萄球菌亚种的模式菌株为DD 791(=ATCC 700058),啮齿动物松鼠葡萄球菌亚种的模式菌株为DD 4761(=ATCC 700061)。

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