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Use of a quantitative oxidase test for characterizing oxidative metabolism in bacteria.使用定量氧化酶试验来表征细菌中的氧化代谢。
Appl Environ Microbiol. 1976 May;31(5):668-79. doi: 10.1128/aem.31.5.668-679.1976.
2
Tetramethyl-p-phenylenediamine oxidase reaction in Azotobacter vinelandii.棕色固氮菌中的四甲基对苯二胺氧化酶反应。
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[The Influence of the Permeability of the Cell Membrane on TMPD Oxydase Activity (author's transl)].
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[The cytochrome cbo from the obligate methylotroph Methylobacillus flagellatus KT is a cytochrome-c oxidase].来自专性甲基营养菌鞭毛甲基杆菌KT的细胞色素cbo是一种细胞色素c氧化酶。
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DITERMINAL OXIDATION OF LONG-CHAIN ALKANES BY BACTERIA.细菌对长链烷烃的末端氧化
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A classification of micrococci and staphylococci based on physiological and biochemical tests.基于生理和生化测试的微球菌和葡萄球菌分类
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Modified benzidine test for the detection of cytochrome-containing respiratory systems in microorganisms.改良联苯胺试验用于检测微生物中含细胞色素的呼吸系统。
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Cytochrome oxidase in cells of the genus Brucella.布鲁氏菌属细胞中的细胞色素氧化酶。
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Practical laboratory test for the identification of Pseudomonas aeruginosa.用于鉴定铜绿假单胞菌的实用实验室检测方法。
J Bacteriol. 1957 Sep;74(3):356-8. doi: 10.1128/jb.74.3.356-358.1957.
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Identification of Pseudomonas pyocyanea by the oxidase reaction.通过氧化酶反应鉴定绿脓杆菌。
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8
The taxonomic significance of fermentative versus oxidative metabolism of carbohydrates by various gram negative bacteria.各种革兰氏阴性菌对碳水化合物的发酵代谢与氧化代谢的分类学意义。
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Oxidation through the cytochrome system of substituted phenylenediamines.通过细胞色素系统对取代苯二胺进行氧化。
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Cytochromes of Pseudomonas syringae.丁香假单胞菌的细胞色素
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使用定量氧化酶试验来表征细菌中的氧化代谢。

Use of a quantitative oxidase test for characterizing oxidative metabolism in bacteria.

作者信息

Jurtshuk P, McQuitty D N

出版信息

Appl Environ Microbiol. 1976 May;31(5):668-79. doi: 10.1128/aem.31.5.668-679.1976.

DOI:10.1128/aem.31.5.668-679.1976
PMID:1275489
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC291174/
Abstract

It was possible to quantitate the terminal oxidase(s) reaction using bacterial resting-cell suspensions and demonstrate the usefulness of this reaction for taxonomic purposes. Resting-cell suspensions of physiologically diverse bacteria were examined for their capabilities of oxidizing N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD) using a manometric assay. For organisms having this capability, it was possible to calculate the conventional TMPD oxidase Q(O2) value (microliters of O2 consumed per hour per milligram [dry weight]). All cultures were grown heterotrophically at 30 C, under identical nutritional conditions, and were harvested at the late-logarithmic growth phase. The TMPD oxidase Q(O2) values showed perfect correlation with the Kovacs oxidase test and, in addition, it was possible to define quantitatively that point which separated oxidase-positive from oxidase-negative bacteria. Oxidase-negative bacteria exhibited a TMPD oxidase Q(O2) value (after correcting for the endogenous by substraction) of less than or equal 33 and had an uncorrected TMPD/endogenous ratio of less than or equal 5. The TMPD oxidase Q(O2) values were also correlated with the data obtained for the Hugh-Leifson Oxferm test. In general, bacteria that exhibited a respiratory mechanism had high TMPD oxidase values, whereas fermentative organsims had low TMPD oxidase activity. All exceptions to this are noted. This quantitative study also demonstrated that organisms that (i) lack a type c cytochrome, or (ii) lack a cytochrome-containing electron transport system, like the lactic acid bacteria, exhibited low or negligible TMPD oxidase Q(O2) values. From the 79 bacterial species (36 genera) examined, it appears that this quantitative oxidase test has taxonomic value that can differentiate the oxidative relationships between bacteria at the subspecies, species, and genera levels.

摘要

利用细菌静息细胞悬液对末端氧化酶反应进行定量分析,并证明该反应在分类学上的实用性是可行的。使用压力测定法检测了生理特性各异的细菌静息细胞悬液氧化N,N,N′,N′-四甲基对苯二胺(TMPD)的能力。对于具有这种能力的生物体,可以计算传统的TMPD氧化酶Q(O₂)值(每小时每毫克[干重]消耗的O₂微升数)。所有培养物均在30℃下、相同营养条件下进行异养生长,并在对数生长后期收获。TMPD氧化酶Q(O₂)值与科瓦茨氧化酶试验显示出完美的相关性,此外,还可以定量定义区分氧化酶阳性和氧化酶阴性细菌的点。氧化酶阴性细菌的TMPD氧化酶Q(O₂)值(扣除内源性后校正)小于或等于33,未校正的TMPD/内源性比率小于或等于5。TMPD氧化酶Q(O₂)值也与休-利夫森氧化发酵试验获得的数据相关。一般来说,具有呼吸机制的细菌TMPD氧化酶值较高,而发酵型生物体的TMPD氧化酶活性较低。所有例外情况均已注明。这项定量研究还表明,(i)缺乏c型细胞色素或(ii)缺乏含细胞色素的电子传递系统的生物体,如乳酸菌,其TMPD氧化酶Q(O₂)值较低或可忽略不计。在所检测的79种细菌(36个属)中,这种定量氧化酶试验似乎具有分类学价值,能够在亚种、种和属水平上区分细菌之间的氧化关系。