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RNA dynamics in aging bacterial spores

机译:老化细菌孢子中的RNA动力学

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Upon starvation, the bacterium Bacillus subtilis enters the process of sporulation, lasting several hours and culminating in formation of a spore, the most resilient cell type known. We show that a few days following sporulation, the RNA profile of spores is highly dynamic. In aging spores incubated at high temperatures, RNA content is globally decreased by degradation over several days. This degradation might be a strategy utilized by the spore to facilitate its dormancy. However, spores kept at low temperature exhibit a different RNA profile with evidence supporting transcription. Further, we demonstrate that germination is affected by spore age, incubation temperature, and RNA state, implying that spores can acquire dissimilar characteristics at a time they are considered dormant. We propose that, in contrast to current thinking, entering dormancy lasts a few days, during which spores are affected by the environment and undergo corresponding molecular changes influencing their emergence from quiescence.
机译:饥饿后,枯草芽孢杆菌细菌进入孢子形成过程,持续数小时,最终形成孢子,这是已知的最具弹性的细胞类型。我们显示孢子形成后的几天,孢子的RNA分布是高度动态的。在高温下培养的老化孢子中,RNA的含量会因几天的降解而整体降低。这种降解可能是孢子用来促进其休眠的一种策略。然而,低温保存的孢子表现出不同的RNA谱,有证据支持转录。此外,我们证明了萌发受到孢子年龄,孵育温度和RNA状态的影响,这意味着孢子在被认为处于休眠状态时可以获得不同的特征。我们建议,与目前的想法相反,进入休眠状态要持续几天,在此期间,孢子会受到环境的影响,并经历相应的分子变化,从而影响其从静止状态出现。

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