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Dark spore manray
Dark spore manray







The findings presented in this study have great implications for practices in the food industry, where heat treatments are commonly used to inactivate pathogenic and spoilage microbes, including bacterial spore formers. In contrast, no relation was found between transcription levels of main germination genes and spore germination phenotypes. Moreover, spores that germinated inefficiently in AGFK contained specific changes in sequences of the GerB and GerK germinant receptors, which are involved in this germination response. The distinct HA requirements of these two spore germination pathways are likely related to differences in properties of specific germinant receptors. The optimal spore HA requirements additionally depended on the nutrients used to trigger germination, l-alanine ( l-Ala), or a mixture of l-asparagine, d-glucose, d-fructose, and K + (AGFK). We show that high-level-heat-resistant spores harboring spoVA 2mob required higher HA temperatures for efficient germination than spores lacking spoVA 2mob.

dark spore manray

In this study, we further investigate the correlation between the presence of this operon in high-level-heat-resistant spores and their germination efficiencies before and after exposure to various sublethal heat treatments (heat activation, or HA), which are known to significantly improve spore responses to nutrient germinants.

dark spore manray

High-level heat resistance and slow germination of spores of some natural Bacillus subtilis isolates, encountered in foods, have been attributed to the occurrence of the spoVA 2mob operon carried on the Tn 1546 transposon. Large interstrain variation in these properties makes prediction and control of spore behavior challenging. Spore heat resistance, germination, and outgrowth are problematic bacterial properties compromising food safety and quality.









Dark spore manray