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暴露于裂解细菌会根据局部非生物条件促进或抑制邻近活细菌的生长。

Exposure to lysed bacteria can promote or inhibit growth of neighboring live bacteria depending on local abiotic conditions.

机构信息

Institute of Integrative Biology, Department of Environmental Systems Science, ETH Zürich, Universitätstrasse 16, 8092 Zürich, Switzerland.

出版信息

FEMS Microbiol Ecol. 2022 Mar 8;98(2). doi: 10.1093/femsec/fiac011.

Abstract

Microbial death is extremely common in nature, yet the ecological role of dead bacteria is unclear. Dead cells are assumed to provide nutrients to surrounding microbes, but may also affect them in other ways. We found that adding lysate prepared from dead bacteria to cultures of Escherichia coli in nutrient-rich conditions suppressed their final population density. This is in stark contrast with the notion that the primary role of dead cells is nutritional, although we also observed this type of effect when we added dead bacteria to cultures that were not supplied with other nutrients. We only observed the growth-suppressive effect of our dead-bacteria treatment after they had undergone significant lysis, suggesting a key role for cellular contents released during lysis. Transcriptomic analysis indicated changes in gene expression in response to dead cells in growing populations, particularly in genes involved in motility. This was supported by experiments with genetic knockouts and copy-number manipulation. Because lysis is commonplace in natural and clinical settings, the growth-suppressive effect of dead cells we describe here may be a widespread and previously unrecognized constraint on bacterial population growth.

摘要

微生物死亡在自然界中极为常见,但死亡细菌的生态作用尚不清楚。人们认为死亡细胞为周围的微生物提供养分,但也可能以其他方式影响它们。我们发现,在营养丰富的条件下,将从死亡细菌中制备的裂解物添加到大肠杆菌培养物中会抑制其最终种群密度。这与死亡细胞的主要作用是营养的观点形成鲜明对比,尽管当我们将死亡细菌添加到未提供其他营养物质的培养物中时,我们也观察到了这种类型的效应。只有在我们的死菌处理发生明显裂解后,我们才观察到对生长细菌的生长抑制作用,这表明裂解过程中释放的细胞内容物起着关键作用。转录组分析表明,生长菌群中对死亡细胞的基因表达发生了变化,特别是与运动性相关的基因。这得到了遗传敲除和拷贝数操作实验的支持。由于裂解在自然和临床环境中很常见,因此我们在这里描述的死细胞的生长抑制作用可能是对细菌种群生长的一种普遍且以前未被认识到的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c4d/8902688/3a2059c8fba6/fiac011fig1.jpg

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