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1
Some properties of heat-resistant and heat-sensitive strains of Clostridium perfringens. I. Heat resistance and toxigenicity.产气荚膜梭菌耐热和热敏菌株的一些特性。I. 耐热性和产毒性。
J Bacteriol. 1967 Jan;93(1):21-6. doi: 10.1128/jb.93.1.21-26.1967.
2
The lecithinase (alpha toxin) activity of strains of Clostridium perfringens.
Proc Soc Exp Biol Med. 1968 Mar;127(3):719-22. doi: 10.3181/00379727-127-32783.
3
Lecithinase-negative variants of Clostridium perfringens; the identity of C. plagarum with C. perfringens.
Can J Microbiol. 1976 Oct;22(10):1497-501. doi: 10.1139/m76-221.
4
Avirulent Clostridium perfringens strains obtained by euflavine treatment.通过依红黄素处理获得的无毒产气荚膜梭菌菌株。
J Bacteriol. 1967 Nov;94(5):1437-42. doi: 10.1128/jb.94.5.1437-1442.1967.
5
RELATIONSHIP BETWEEN TOXIGENICITY AND SPORULATING POTENCY OF CLOSTRIDIUM NOVYI.诺维氏梭菌的产毒性与芽孢形成能力之间的关系
J Bacteriol. 1965 Apr;89(4):993-5. doi: 10.1128/jb.89.4.993-995.1965.
6
Effect of heat activation on biomorphics, hemolysis and lecithinase activity of Clostridium perfringens type A.热激活对A型产气荚膜梭菌生物形态、溶血及卵磷脂酶活性的影响。
Zhonghua Min Guo Wei Sheng Wu Xue Za Zhi. 1974 Sep;7(3):109-13.
7
Production of phospholipase C (alpha-toxin), haemolysins and lethal toxins by Clostridium perfringens types A to D.A型至D型产气荚膜梭菌产生磷脂酶C(α毒素)、溶血素和致死毒素。
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8
Biochemical differentiation between enterotoxigenic heat-sensitive and heat-resistant Clostridium perfringens strains.
Microbiol Immunol. 1986;30(2):89-95. doi: 10.1111/j.1348-0421.1986.tb00924.x.
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Lecithinase activity of mutant and wild strains of Clostridium perfringens.产气荚膜梭菌突变株和野生株的卵磷脂酶活性。
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[De novo synthesis of lecithinase by Clostridium perfringens].[产气荚膜梭菌卵磷脂酶的从头合成]
Dokl Akad Nauk SSSR. 1967 Apr 11;173(5):1203-5.

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Comparative Genome Analysis and Spore Heat Resistance Assay Reveal a New Component to Population Structure and Genome Epidemiology Within Enterotoxin-Carrying Isolates.比较基因组分析和孢子耐热性测定揭示了携带肠毒素分离株群体结构和基因组流行病学的一个新组成部分。
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2
Comparative experiments to examine the effects of heating on vegetative cells and spores of Clostridium perfringens isolates carrying plasmid genes versus chromosomal enterotoxin genes.比较实验,以研究加热对携带质粒基因与染色体肠毒素基因的产气荚膜梭菌分离株的营养细胞和芽孢的影响。
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Heat resistance of spores of Clostridium welchii.魏氏梭菌芽孢的耐热性
J Hyg (Lond). 1967 Sep;65(3):359-65. doi: 10.1017/s0022172400045873.
4
Sporulation and the production of antibiotics, exoenzymes, and exotonins.孢子形成以及抗生素、外酶和外毒素的产生。
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Germination of heat- and alkali-altered spores of Clostridium perfringens type A by lysozyme and an initiation protein.溶菌酶和起始蛋白促使A型产气荚膜梭菌经热和碱处理改变后的孢子萌发
J Bacteriol. 1972 Feb;109(2):550-9. doi: 10.1128/jb.109.2.550-559.1972.
7
Factors affecting lecithinase activity and production in Clostridium welchii.影响产气荚膜梭菌卵磷脂酶活性及产生的因素。
J Hyg (Lond). 1969 Mar;67(1):153-62. doi: 10.1017/s002217240004153x.
8
Method for estimating the presence of Clostridium perfringens in food.食品中产气荚膜梭菌存在情况的估计方法。
Appl Microbiol. 1970 Dec;20(6):913-8. doi: 10.1128/am.20.6.913-918.1970.
9
Rabbit ileal loop response to strains of Clostridium perfringens.兔回肠袢对产气荚膜梭菌菌株的反应。
J Bacteriol. 1968 May;95(5):1560-6. doi: 10.1128/jb.95.5.1560-1566.1968.

本文引用的文献

1
The biochemistry of bacterial toxins: The lecithinase activity of Cl. welchii toxins.细菌毒素的生物化学:产气荚膜梭菌毒素的卵磷脂酶活性。
Biochem J. 1941 Sep;35(8-9):884-902. doi: 10.1042/bj0350884.
2
The biochemistry of the gas gangrene toxins: Estimation of the alpha toxin of Cl. welchii, type A.气性坏疽毒素的生物化学:A型魏氏梭菌α毒素的测定
Biochem J. 1941 Nov;35(10-11):1246-56. doi: 10.1042/bj0351246.
3
The anomalous heat inactivation of Clostridium perfringens lecithinase.产气荚膜梭菌卵磷脂酶的异常热失活
Arch Biochem. 1950 Jan;25(1):54-60.
4
RELATIONSHIP BETWEEN TOXIGENICITY AND SPORULATING POTENCY OF CLOSTRIDIUM NOVYI.诺维氏梭菌的产毒性与芽孢形成能力之间的关系
J Bacteriol. 1965 Apr;89(4):993-5. doi: 10.1128/jb.89.4.993-995.1965.
5
TAXONOMY OF CLOSTRIDIUM BIFERMENTANS AND CLOSTRIDIUM SORDELLII. II. TOXIGENIC AND SPORULATING POTENCIES IN SUBSTRAINS OF A CLOSTRIDIUM SORDELLII STRAIN.双酶梭菌与索氏梭菌的分类学。II. 索氏梭菌菌株各亚菌株的产毒能力与产孢能力
J Bacteriol. 1964 Dec;88(6):1647-51. doi: 10.1128/jb.88.6.1647-1651.1964.
6
TAXONOMY OF CLOSTRIDIUM BIFERMENTANS AND CLOSTRIDIUM SORDELLII. I. THEIR TOXIGENICITY, UREASE ACTIVITY, AND SPORULATING POTENCY.双发酵梭菌与索氏梭菌的分类学。I. 它们的产毒性、脲酶活性及芽孢形成能力。
J Bacteriol. 1964 Dec;88(6):1641-6. doi: 10.1128/JB.88.6.1641-1646.1964.
7
ISOLATION OF TOXIGENIC STRAINS OF CLOSTRIDIUM NOVYI FROM SOIL.从土壤中分离诺维氏梭菌产毒株
J Bacteriol. 1964 Dec;88(6):1636-40. doi: 10.1128/jb.88.6.1636-1640.1964.
8
ISOLATION OF TOXIGENIC STRAINS OF CLOSTRIDIUM PERFRINGENS FROM SOIL.从土壤中分离产气荚膜梭菌的产毒株
J Bacteriol. 1964 Sep;88(3):646-52. doi: 10.1128/jb.88.3.646-652.1964.
9
CHARACTERISTICS OF CLOSTRIDIUM PERFRINGENS STRAINS ASSOCIATED WITH FOOD AND FOOD-BORNE DISEASE.与食品及食源性疾病相关的产气荚膜梭菌菌株特性
J Bacteriol. 1963 May;85(5):1094-103. doi: 10.1128/jb.85.5.1094-1103.1963.
10
Phospholipase C-producing bacteria and food poisoning. An experimental study on Clostridium perfringens and Bacillus cereus.产磷脂酶C细菌与食物中毒。产气荚膜梭菌和蜡样芽孢杆菌的实验研究。
Acta Pathol Microbiol Scand Suppl. 1962;Suppl 160:1-88.

产气荚膜梭菌耐热和热敏菌株的一些特性。I. 耐热性和产毒性。

Some properties of heat-resistant and heat-sensitive strains of Clostridium perfringens. I. Heat resistance and toxigenicity.

作者信息

Weiss K F, Strong D H

出版信息

J Bacteriol. 1967 Jan;93(1):21-6. doi: 10.1128/jb.93.1.21-26.1967.

DOI:10.1128/jb.93.1.21-26.1967
PMID:4289809
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC314962/
Abstract

Heat resistance at 100 C (D-values), sporulating ratios, toxigenicity for mice, and lecithinase activity (as micrograms per milliliter of enzyme, ascertained by the lecithovitellin reaction) were determined for four strains of Clostridium perfringens. A definite inverse relationship between thermal resistance and toxigenicity was found. The D-values ranged from 17.6 for the most heat-resistant strain to 0.3 for the strain possessing the least heat resistance, with corresponding lecithinase activities from 25 to 133 mug/ml of enzyme. The sporulating ratios did not differ greatly between the strains. The heat stability of the toxin was greater at 100 C than at 75 C. There was a noticeable difference between the heat stabilities of the toxin in the culture fluids of the heat-sensitive and heat-resistant strains at pH 7.0 when the toxic filtrates were held at 100 C. At a holding temperature of 75 C, a similar but lesser difference was observed at pH 5.5. Heat resistance and lecithinase activity did not change when a substrain of the least heat-resistant parent strain was obtained through heat selection by a single transfer, or when the most heat-resistant strain was transferred serially 12 times.

摘要

对四株产气荚膜梭菌测定了其在100℃时的耐热性(D值)、产芽孢率、对小鼠的毒性以及卵磷脂酶活性(以每毫升酶的微克数表示,通过卵磷脂卵黄磷蛋白反应确定)。发现耐热性与毒性之间存在明确的负相关关系。D值范围从最耐热菌株的17.6到耐热性最差菌株的0.3,相应的卵磷脂酶活性为每毫升酶25至133微克。各菌株之间的产芽孢率差异不大。毒素在100℃时的热稳定性高于75℃。当毒性滤液在100℃保持时,在pH 7.0条件下,热敏菌株和耐热菌株培养液中毒素的热稳定性存在明显差异。在75℃的保持温度下,在pH 5.5时观察到类似但较小的差异。通过单次传代热选从耐热性最差的亲本菌株获得一个亚菌株时,或者当最耐热菌株连续传代12次时,耐热性和卵磷脂酶活性均未改变。