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海洋细菌的分类学:副溶血贝内克氏菌和解藻酸贝内克氏菌。

Taxonomy of marine bacteria: Beneckea parahaemolytica and Beneckea alginolytica.

作者信息

Baumann P, Baumann L, Reichelt J L

出版信息

J Bacteriol. 1973 Mar;113(3):1144-55. doi: 10.1128/jb.113.3.1144-1155.1973.

Abstract

A collection of 169 strains, including 91 obtained from cases of gastroenteritis and 41 from localized tissue infections and infections of the eye and ear, was submitted to an extensive nutritional, physiological, and morphological characterization. The nutritional and physiological data obtained from these strains, as well as data for strains of other species of the genus Beneckea, were submitted to a numerical analysis which grouped the strains into clusters on the basis of phenotypic similarity. Strains from cases of gastroenteritis formed a group of three clusters which linked at a similarity value of 68%. These three clusters could not, however, be separated from each other by universally positive or negative traits, and on the basis of their overall phenotypic similarity were assigned to a single species, B. parahaemolytica. The majority of the strains from human, nonenteric sources segregated into two distinct clusters, one designated B. alginolytica and the other unassigned with respect to species (group C-2). B. parahaemolytica, B. alginolytica, and group C-2 could be readily distinguished from one another as well as from the remaining species of the genus Beneckea by multiple, unrelated, phenotypic traits. Activities of selected enzymes of glucose and gluconate catabolism in cell-free extracts of B. parahaemolytica, B. alginolytica, and group C-2 suggested that these organisms utilized glucose primarily via the Embden-Meyerhof pathway and gluconate primarily via the Entner-Doudoroff pathway. Similar results were observed in the other members of the genus Beneckea.

摘要

收集了169株菌株,其中91株来自肠胃炎病例,41株来自局部组织感染以及眼耳感染病例,并对其进行了广泛的营养、生理和形态学特征分析。从这些菌株获得的营养和生理数据,以及来自贝内克氏菌属其他物种菌株的数据,都进行了数值分析,该分析根据表型相似性将菌株分组为不同的簇。来自肠胃炎病例的菌株形成了一组三个簇,它们在相似性值为68%时相连。然而,这三个簇不能通过普遍的阳性或阴性特征彼此分离,并且基于它们总体的表型相似性被归为一个单一物种,即副溶血弧菌。大多数来自人类非肠道来源的菌株分离成两个不同的簇簇,一个被指定为解藻朊弧菌,另一个在物种方面未被指定(C - 2组)。副溶血弧菌、解藻朊弧菌和C - 2组可以通过多种不相关的表型特征很容易地相互区分,也能与贝内克氏菌属的其他物种区分开来。副溶血弧菌、解藻朊弧菌和C - 2组无细胞提取物中葡萄糖和葡萄糖酸盐分解代谢的选定酶的活性表明,这些生物体主要通过糖酵解途径利用葡萄糖,主要通过恩特纳 - 杜德洛夫途径利用葡萄糖酸盐。在贝内克氏菌属的其他成员中也观察到了类似的结果。

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