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影响非蛋白水解性肉毒梭菌热处理孢子生长的因素。

Factors affecting growth from heat-treated spores of non-proteolytic Clostridium botulinum.

作者信息

Peck M W, Fairbairn D A, Lund Barbara M

机构信息

AFRC Institute of Food Research, Norwich Laboratory, Norwich Research Park, Colney, Norwich NR4 7UA, UK.

出版信息

Lett Appl Microbiol. 1992 Oct;15(4):152-155. doi: 10.1111/j.1472-765X.1992.tb00750.x.

Abstract

Heat treatment of spores of non-proteolytic Clostridium botulinum at 85°C for 120 min followed by enumeration of survivors on a medium containing lysozyme resulted in a 4.1 and 4.8 decimal reduction in numbers of spores of strains 17B (type B) and Beluga (type E), respectively. Only a small proportion of heated spores formed colonies on medium containing lysozyme; this proportion could be increased by treatments designed to increase the permeability of heated spores. The results indicate that the germination system in spores of non-proteolytic Cl. botulinum was destroyed by heating, that lysozyme could replace this germination system, and that treatments that increased the permeability of the spore coat could increase the proportion of heated spores that germinated on medium containing lysozyme. These results are important in relation to the assessment of heat-treatments required to reduce the risk of survival and growth of non-proteolytic Clostridium botulinum in processed (pasteurized) refrigerated foods for extended storage.

摘要

将非蛋白水解性肉毒梭菌的孢子在85°C下热处理120分钟,然后在含有溶菌酶的培养基上对存活菌进行计数,结果显示17B菌株(B型)和白鲸菌株(E型)的孢子数量分别减少了4.1和4.8个对数单位。只有一小部分受热孢子能在含有溶菌酶的培养基上形成菌落;通过旨在增加受热孢子通透性的处理,这一比例可以提高。结果表明,非蛋白水解性肉毒梭菌孢子中的萌发系统被加热破坏,溶菌酶可以替代该萌发系统,并且增加孢子外壁通透性的处理可以提高在含有溶菌酶的培养基上萌发的受热孢子比例。这些结果对于评估为降低非蛋白水解性肉毒梭菌在经过加工(巴氏杀菌)的冷藏食品中长期储存时存活和生长风险所需的热处理至关重要。

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