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梭杆菌属中缺乏组成型β-葡萄糖苷酶(七叶苷酶)。

Lack of constitutive beta-glucosidase (esculinase) in the genus Fusobacterium.

作者信息

Edberg S C, Bell S R

出版信息

J Clin Microbiol. 1985 Sep;22(3):435-7. doi: 10.1128/jcm.22.3.435-437.1985.

Abstract

Esculin has been incorporated into both a medium and test with 20% bile for many years to differentiate Bacteroides from Fusobacterium organisms. After 24 to 48 h, all members of the Bacteroides fragilis group grow in 20% bile and hydrolyze esculin. Fusobacterium mortiferum can both grow in bile and hydrolyze esculin, thus limiting the use of the bile-esculin medium and test. The hypothesis that constitutive esculinase (beta-glucosidase) could differentiate Bacteroides from Fusobacterium organisms was investigated. Clinical isolates and American Type Culture Collection clones of the B. fragilis group and other species of Bacteroides and Fusobacterium were tested. All B. fragilis were positive within 30 min. In no case was a Fusobacterium organism positive for constitutive enzyme in a hydrolyzable substrate-based test. The percentage of positive results for other species of Bacteroides agreed with those published in the literature for the esculin test. The genus Fusobacterium can be separated from Bacteroides organisms based on a lack of constitutive beta-glucosidase in the former in a 30-min one-tube test.

摘要

多年来,七叶苷已被用于一种含20%胆汁的培养基和试验中,以区分拟杆菌属和梭杆菌属微生物。24至48小时后,脆弱拟杆菌群的所有成员都能在20%胆汁中生长并水解七叶苷。死亡梭杆菌既能在胆汁中生长又能水解七叶苷,因此限制了胆汁七叶苷培养基和试验的应用。本研究探讨了组成型七叶苷酶(β-葡萄糖苷酶)能否区分拟杆菌属和梭杆菌属微生物这一假说。对脆弱拟杆菌群以及其他拟杆菌属和梭杆菌属物种的临床分离株和美国模式培养物保藏中心的菌株进行了检测。所有脆弱拟杆菌在30分钟内呈阳性。在基于可水解底物的试验中,没有一株梭杆菌属微生物的组成型酶呈阳性。其他拟杆菌属物种的阳性结果百分比与文献中七叶苷试验报道的结果一致。基于在30分钟单管试验中梭杆菌属缺乏组成型β-葡萄糖苷酶,可将其与拟杆菌属微生物区分开来。

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Esculin hydrolysis reaction by Escherichia coli.大肠杆菌的七叶苷水解反应。
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