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Physiological and Transcriptional Responses of Different Industrial Microbes at Near-Zero Specific Growth Rates

机译:近零比增长率下不同工业微生物的生理和转录响应

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摘要

The current knowledge of the physiology and gene expression of industrially relevant microorganisms is largely based on laboratory studies under conditions of rapid growth and high metabolic activity. However, in natural ecosystems and industrial processes, microbes frequently encounter severe calorie restriction. As a consequence, microbial growth rates in such settings can be extremely slow and even approach zero. Furthermore, uncoupling microbial growth from product formation, while cellular integrity and activity are maintained, offers perspectives that are economically highly interesting. Retentostat cultures have been employed to investigate microbial physiology at (near-)zero growth rates. This minireview compares information from recent physiological and gene expression studies on retentostat cultures of the industrially relevant microorganisms Lactobacillus plantarum, Lactococcus lactis, Bacillus subtilis, Saccharomyces cerevisiae, and Aspergillus niger. Shared responses of these organisms to (near-)zero growth rates include increased stress tolerance and a downregulation of genes involved in protein synthesis. Other adaptations, such as changes in morphology and (secondary) metabolite production, were species specific. This comparison underlines the industrial and scientific significance of further research on microbial (near-)zero growth physiology.
机译:工业相关微生物的生理学和基因表达的当前知识主要基于在快速生长和高代谢活性条件下的实验室研究。然而,在自然生态系统和工业过程中,微生物经常遇到严重的卡路里限制。结果,在这种环境下微生物的生长速度可能非常缓慢,甚至接近零。此外,在维持细胞完整性和活性的同时,将微生物生长与产物形成脱钩,提供了经济上非常有趣的观点。曾使用Retentostat培养物以(接近)零的生长速率研究微生物生理学。这份小型回顾报告比较了近期有关工业相关微生物植物乳杆菌,乳酸乳球菌,枯草芽孢杆菌,酿酒酵母和黑曲霉的维持性生长的生理和基因表达研究的信息。这些生物对(接近)零增长率的共同反应包括增加的胁迫耐受性和参与蛋白质合成的基因的下调。其他适应性,例如形态变化和(次生)代谢产物的产生,是特定于物种的。这种比较强调了进一步研究微生物(接近零生长)生理的工业和科学意义。

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