Sporulation environment influences spore properties in Bacillus: evidence and insights on underlying molecular and physiological mechanisms

孢子 生物 内孢子 细菌孢子 休眠 发芽 孢子萌发 芽孢杆菌(形态) 孢子发生 微生物学 植物
作者
Christelle Bressuire-Isoard,Véronique Broussolle,Frédéric Carlin
出处
期刊:Fems Microbiology Reviews [Oxford University Press]
卷期号:42 (5): 614-626 被引量:149
标识
DOI:10.1093/femsre/fuy021
摘要

Bacterial spores are resistant to physical and chemical insults, which makes them a major concern for public health and industry. Spores help bacteria to survive extreme environmental conditions that vegetative cells cannot tolerate. Spore resistance and dormancy are important properties for applications in medicine, veterinary health, food safety, crop protection and other domains. The resistance of bacterial spores results from a protective multilayered structure and from the unique composition of the spore core. The mechanisms of sporulation and germination, the first stage after breaking of dormancy, and organization of spore structure have been extensively studied in Bacillus species. This review aims to illustrate how far the structure, composition and properties of spores are shaped by the environmental conditions in which spores form. We look at the physiological and molecular mechanisms underpinning how sporulation media and environment deeply affect spore yield, spore properties like resistance to wet heat and physical and chemical agents, germination and further growth. For example, spore core water content decreases as sporulation temperature increases, and resistance to wet heat increases. Controlling the fate of Bacillus spores is pivotal to controlling bacterial risks and process efficiencies in, for example, the food industry, and better control hinges on better understanding how sporulation conditions influence spore properties.

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