Olsen Nanna Mee Coops, Røder Henriette Lyng, Russel Jakob, Madsen Jonas Stenløkke, Sørensen Søren Johannes, Burmølle Mette
Section of Microbiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Front Microbiol. 2019 Aug 23;10:1949. doi: 10.3389/fmicb.2019.01949. eCollection 2019.
The arrival order of different species to a habitat can strongly impact community assembly and succession dynamics, thus influencing functionality. In this study, we asked how prior colonization of one community member would influence the assembly of a synergistic multispecies biofilm community grown . We expected that the prior arrival would confer an advantage, in particular for good biofilm formers. Yet, we did not know if the cohabitants would be impaired or benefit from the pre-colonization of one member, depending on its ability to form biofilm. We used a consortium consisting of four soil bacteria; and . This consortium has been shown to act synergistically when grown together, thus increasing biofilm production. The results showed that the two good biofilm formers gained a fitness advantage (increase in abundance) when allowed prior colonization on an abiotic surface before the arrival of their cohabitants. Interestingly, the significantly higher number of the pre-colonized biofilm formers did not affect the resulting composition in the subsequent biofilm after 24 h.
不同物种到达栖息地的顺序会强烈影响群落组装和演替动态,进而影响功能。在本研究中,我们探讨了一个群落成员的先定植如何影响协同多物种生物膜群落的组装。我们预计先到达会带来优势,特别是对于良好的生物膜形成者。然而,我们不知道同居者是否会受到一个成员预定植的损害或从中受益,这取决于其形成生物膜的能力。我们使用了一个由四种土壤细菌组成的联合体;以及。已证明该联合体在共同生长时具有协同作用,从而增加生物膜产量。结果表明,当两个良好的生物膜形成者在其同居者到达之前被允许先在非生物表面定植时,它们获得了适应性优势(丰度增加)。有趣的是,预定植的生物膜形成者数量显著增加,在24小时后并未影响后续生物膜的最终组成。