Department of Fundamental Microbiology, University of Lausanne, CH-1015 Lausanne, Switzerland.
Department of Fundamental Microbiology, University of Lausanne, CH-1015 Lausanne, Switzerland;
Proc Natl Acad Sci U S A. 2019 Aug 6;116(32):15979-15984. doi: 10.1073/pnas.1906172116. Epub 2019 Jul 3.
Competition between microbes is extremely common, with many investing in mechanisms to harm other strains and species. Yet positive interactions between species have also been documented. What makes species help or harm each other is currently unclear. Here, we studied the interactions between 4 bacterial species capable of degrading metal working fluids (MWF), an industrial coolant and lubricant, which contains growth substrates as well as toxic biocides. We were surprised to find only positive or neutral interactions between the 4 species. Using mathematical modeling and further experiments, we show that positive interactions in this community were likely due to the toxicity of MWF, whereby each species' detoxification benefited the others by facilitating their survival, such that they could grow and degrade MWF better when together. The addition of nutrients, the reduction of toxicity, or the addition of more species instead resulted in competitive behavior. Our work provides support to the stress gradient hypothesis by showing how harsh, toxic environments can strongly favor facilitation between microbial species and mask underlying competitive interactions.
微生物之间的竞争非常普遍,许多微生物都投入了机制来伤害其他菌株和物种。然而,物种之间的积极相互作用也有记录。目前还不清楚是什么导致了物种之间的帮助或伤害。在这里,我们研究了 4 种能够降解金属加工液(MWF)的细菌之间的相互作用,MWF 是一种工业冷却剂和润滑剂,其中包含生长基质和有毒杀生剂。我们惊讶地发现,这 4 种细菌之间只有正相互作用或中性相互作用。通过数学建模和进一步的实验,我们表明,该群落中的正相互作用可能是由于 MWF 的毒性所致,即每种物种的解毒作用通过促进其他物种的生存而使它们受益,从而使它们能够更好地一起生长和降解 MWF。添加营养物质、降低毒性或添加更多的物种反而会导致竞争行为。我们的工作通过展示恶劣、有毒的环境如何强烈促进微生物物种之间的促进作用并掩盖潜在的竞争相互作用,为应激梯度假说提供了支持。