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Factors Contributing to Heat Resistance of Clostridium perfringens Endospores

机译:产气荚膜梭状芽孢杆菌内孢子耐热性的影响因素

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摘要

The endospores formed by strains of type A Clostridium perfringens that produce the C. perfringens enterotoxin (CPE) are known to be more resistant to heat and cold than strains that do not produce this toxin. The high heat resistance of these spores allows them to survive the cooking process, leading to a large number of food-poisoning cases each year. The relative importance of factors contributing to the establishment of heat resistance in this species is currently unknown. The present study examines the spores formed by both CPE+ and CPE strains for factors known to affect heat resistance in other species. We have found that the concentrations of DPA and metal ions, the size of the spore core, and the protoplast-to-sporoplast ratio are determining factors affecting heat resistance in these strains. While the overall thickness of the spore peptidoglycan was found to be consistent in all strains, the relative amounts of cortex and germ cell wall peptidoglycan also appear to play a role in the heat resistance of these strains.
机译:已知由产气荚膜梭菌肠毒素(CPE)的产气荚膜梭状芽孢杆菌A型菌株形成的内生孢子比不产生这种毒素的菌株对热和冷的抵抗力更高。这些孢子的高耐热性使其可以在蒸煮过程中幸存下来,每年导致大量食物中毒病例。目前尚不清楚在该物种中有助于建立耐热性的因素的相对重要性。本研究研究了由CPE + 和CPE -菌株形成的孢子中已知影响其他物种耐热性的因素。我们发现,DPA和金属离子的浓度,孢子核的大小以及原生质体与原生质体的比例是影响这些菌株耐热性的决定性因素。虽然孢子肽聚糖的总厚度在所有菌株中均一致,但皮质和生殖细胞壁肽聚糖的相对含量也似乎在这些菌株的耐热性中起作用。

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