首页> 外文期刊>Journal of bacteriology >METABOLIC CHARACTERIZATION OF THE GENUS BRUCELLA III. Oxidative Metabolism of Strains That Show Anomalous Characteristics by Conventional Determinative Methods
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METABOLIC CHARACTERIZATION OF THE GENUS BRUCELLA III. Oxidative Metabolism of Strains That Show Anomalous Characteristics by Conventional Determinative Methods

机译:布鲁氏菌属的代谢特征III。通过常规测定方法显示异常特征的菌株的氧化代谢

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Meyer, Margaret E. (University of California, Davis). Metabolic characterization of the genus Brucella. III. Oxidative metabolism of strains that show anomalous characteristics by conventional determinative methods. J. Bacteriol. >82:401–410. 1961.—The oxidative metabolic patterns were determined on 83 strains of brucellae that had been described as “atypical” because they differed in one or more characteristics or because they had been isolated from an abnormal host (other than the natural reservoir for that species). Of the 83 strains examined, 44 displayed the metabolic pattern for Brucella melitensis. A comparison was then made between the results of identifying these strains metabolically and by the conventional methods. It was found that a few strains of B. melitensis showed a decreased tolerance to basic fuchsin and thionin, but none of the strains that was identified metabolically as B. melitensis produced H2S or required CO2. No biotypes have been reported for this species, since only slight quantitative variation in dye tolerances occurs among strains of B. melitensis, and no metabolic variants were found. It is concluded that B. melitensis is a homogenous species and can be identified with certainty by its oxidative metabolic pattern, irrespective of its host or geographic source. Of the remaining strains, 38 displayed the metabolic pattern singular for Brucella abortus. Evidence was presented to support the conclusion that in this species the characteristics of dye tolerance, H2S production, and CO2 required for initial growth vary independently of each other, and strains that differ from the species description by these criteria can be identified correctly by their oxidative metabolic pattern. Of the 83 atypical strains examined, 24 were strains of Brucella described as a new species, Brucella intermedia (Renoux). Of these 24 strains, 10 were identified as Brucella melitensis, 13 as Brucella abortus, and one as Brucella suis. Evidence was presented to support the conclusion that B. intermedia (Renoux) cannot be considered as a new species.
机译:玛格丽特·迈尔(Meyer),玛格丽特E.(加州大学戴维斯分校)。布鲁氏菌属的代谢特征。三,通过常规测定方法显示异常特性的菌株的氧化代谢。 J.细菌。 > 82: 401-410。 1961年。确定了83株布鲁氏菌的氧化代谢模式,这些菌株被描述为“非典型”,因为它们的一个或多个特征不同,或者因为它们是从异常宿主中分离的(该物种的天然贮藏库除外) 。在检查的83株菌株中,有44株表现出布鲁氏菌的代谢模式。然后在代谢上鉴定这些菌株的结果与通过常规方法鉴定的结果之间进行比较。发现一些 B菌株。 melitensis 对碱性品红和硫蛋白的耐受性降低,但没有一株在代谢上被鉴定为 B的菌株。棉铃虫会产生H 2 S或所需的CO 2 。没有针对该物种的生物型报道,因为在 B菌株中仅出现了少量的染料耐性变异。 melitensis ,未发现代谢变体。结论是 B。蜂是一种同源物种,可以通过其氧化代谢模式确定其身份,而与宿主或地理来源无关。在其余的菌株中,有38种显示流产布鲁氏菌的代谢模式奇异。提出的证据支持以下结论:在该物种中,初始生长所需的染料耐受性,H 2 S产生和CO 2 的特征彼此独立地变化,并且可以通过其氧化代谢模式正确识别与这些标准所描述的物种不同的菌株。在检查的83个非典型菌株中,有24个是被描述为新种<中间>布鲁氏菌(Renoux)的 Brucella 菌株。在这24个菌株中,有10个被鉴定为布鲁氏菌,有13个被鉴定为 Brucella abortus ,其中一个被鉴定为 Brucella suis 。提出了证据支持 B。 intermedia (Renoux)不能被视为新物种。

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