首页> 外文期刊>Journal of Clinical Microbiology >Pasteurella multocida subsp.multocida and P. multocida subsp.septica Differentiation by PCR Fingerprinting and α-Glucosidase Activity
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Pasteurella multocida subsp.multocida and P. multocida subsp.septica Differentiation by PCR Fingerprinting and α-Glucosidase Activity

机译:PCR指纹图谱和α-葡萄糖苷酶活性鉴定多杀巴斯德氏菌多菌种和败血巴斯德氏菌亚种

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Pasteurella multocida is composed of three subspecies that are often differentiated by fermentation of sorbitol and dulcitol. We studied 35 dulcitol-negative P. multocida isolates from infected dog and cat bite wounds, 16 of which yielded weak and/or conflicting fermentation reactions in Andrades sorbitol, thus making it difficult to distinguish between the two dulcitol-negative subspecies of P. multocida, i.e.,P. multocida subsp. multocida andP. multocida subsp. septica. All isolates and two control strains were further analyzed using a PCR fingerprinting technique with a single primer (M13 core) and assessed for α-glucosidase (α-Glu) activity. Although the PCR fingerprint patterns and α-Glu activity did not correlate well with the sorbitol fermentation reactions, they did correlate well with each other. All strains identified as P. multocida subsp.septica were positive for α-Glu activity and exhibited the group I PCR fingerprint profile. All strains categorized asP. multocida subsp. multocida displayed either the group II or group III PCR fingerprint profile; 9 of 11 of these isolates were α-Glu negative. These data suggest that both PCR fingerprinting and α-Glu activity provide reliable means for differentiating P. multocida subsp.multocida from P. multocida subsp.septica, particularly in strains that produce weak and/or discrepant sorbitol fermentation reactions.
机译:多杀巴斯德氏菌由三个亚种组成,通常通过山梨糖醇和二甘醇的发酵来区分。我们研究了35甘露糖醇阴性的 P。从感染的狗和猫咬伤中分离出多杀菌,其中16个在Andrades山梨糖醇中产生弱和/或相互矛盾的发酵反应,因此很难区分 P的两个二糖醇阴性亚种。多杀菌,即 P。多杀菌亚种 multocida P。多杀菌亚种败血症。使用带有单个引物(M13核心)的PCR指纹技术进一步分析所有分离物和两个对照菌株,并评估其α-葡萄糖苷酶(α-Glu)活性。尽管PCR指纹图谱和α-Glu活性与山梨糖醇发酵反应没有很好的相关性,但它们确实有很好的相关性。鉴定为 P的所有菌株。败血性败血病亚种败血病对α-Glu活性呈阳性,并显示出I组PCR指纹图谱。所有菌株归类为 P。多杀菌亚种 multocida 显示II组或III组PCR指纹图谱;这些分离物中的11个中有9个是α-Glu阴性。这些数据表明,PCR指纹图谱和α-Glu活性均提供了区分 P的可靠方法。来自 P的多杀菌亚种 multocida 。败血性败血病亚种败血病,特别是在产生弱和/或差异性山梨醇发酵反应的菌株中。

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