CSIRO Food and Nutritional Sciences, P.O. Box 52, North Ryde, New South Wales 1670, Australia.
J Food Prot. 2012 Apr;75(4):779-92. doi: 10.4315/0362-028X.JFP-11-391.
The putrefactive anaerobe Clostridium sporogenes PA 3679 has been widely used as a nontoxigenic surrogate for proteolytic Clostridium botulinum in the validation of thermal processes for low-acid shelf-stable foods, as a target organism in the derivation of thermal processes that reduce the risk of spoilage of such foods to an acceptable level, and as a research model for proteolytic strains of C. botulinum. Despite the importance of this organism, our knowledge of it has remained fragmented. In this article we draw together the literature associated with PA 3679 and discuss the identity of this organism, the phylogenetic relationships that exist between PA 3679 and various strains of C. sporogenes and proteolytic C. botulinum, the heat resistance characteristics of PA 3679, the advantages and limitations associated with its use in the derivation of thermal processing schedules, and the knowledge gaps and opportunities that exist with regard to its use as a research model for proteolytic C. botulinum. Phylogenetic analysis reviewed here suggests that PA 3679 is more closely related to various strains of proteolytic C. botulinum than to selected strains, including the type strain, of C. sporogenes. Even though PA 3679 is demonstrably nontoxigenic, the genetic basis of this nontoxigenic status remains to be elucidated, and the genetic sequence of this microorganism appears to be the key knowledge gap remaining to be filled. Our comprehensive review of comparative heat resistance data gathered for PA 3679 and proteolytic strains of C. botulinum over the past 100 years supports the practice of using PA 3679 as a (typically fail-safe) thermal processing surrogate for proteolytic C. botulinum.
生孢梭菌 PA3679 是一种腐败性厌氧菌,已被广泛用作低酸性货架稳定食品热力杀菌验证中无毒性的替代物,用于衍生可将此类食品腐败风险降低到可接受水平的热力处理工艺,以及作为研究模式用于研究产蛋白酶肉毒梭菌。尽管该生物体很重要,但我们对它的了解仍然支离破碎。本文汇集了与 PA3679 相关的文献,并讨论了该生物体的身份、PA3679 与各种生孢梭菌和产蛋白酶肉毒梭菌菌株之间存在的系统发育关系、PA3679 的耐热特性、在衍生热力处理方案时使用 PA3679 的优点和局限性,以及在将其用作产蛋白酶肉毒梭菌的研究模型方面存在的知识空白和机会。本文回顾的系统发育分析表明,PA3679 与各种产蛋白酶肉毒梭菌菌株的亲缘关系比与某些生孢梭菌菌株(包括模式菌株)更为密切。尽管 PA3679 明显无毒性,但这种非毒性状态的遗传基础仍有待阐明,并且该微生物的遗传序列似乎是有待填补的关键知识空白。我们对过去 100 年来为 PA3679 和产蛋白酶肉毒梭菌菌株收集的比较耐热性数据进行了全面回顾,支持将 PA3679 用作产蛋白酶肉毒梭菌的(通常是可靠的)热力处理替代物的做法。