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Resistance and resilience of microbial communities - Temporal and spatial insurance against perturbations

机译:微生物群落的抵抗力和复原力-防止干扰的时空保障

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Bacteria play fundamental roles for many ecosystem processes; however, little empirical evidence is available on how environmental perturbations affect their composition and function. We investigated how spatial and temporal refuges affect the resistance and resilience of a freshwater bacterioplankton community upon a salinity pulse perturbation in continuous cultures. Attachment to a surface avoided the flushing out of cells and enabled re-colonization of the liquid phase after the perturbation, hence serving as a temporal refuge. A spatial refuge was established by introduction of bacteria from an undisturbed reservoir upstream of the continuous culture vessel, acting analogous to a regional species pool in a metacommunity. The salinity pulse affected bacterial community composition and the rates of respiration and the pattern of potential substrate utilization as well as the correlation between composition and function. Compared with the no-refuge treatment, the temporal refuge shortened return to pre-perturbation conditions, indicating enhanced community resilience. Composition and function were less disturbed in the treatment providing a spatial refuge, suggesting higher resistance. Our results highlight that spatial and temporal dynamics in general and refuges in particular need to be considered for conceptual progress in how microbial metacommunities are shaped by perturbations.
机译:细菌在许多生态系统过程中起着基本作用;但是,关于环境扰动如何影响其组成和功能的经验证据很少。我们调查了在连续培养中盐度脉冲扰动下,时空避难所如何影响淡水浮游植物群落的抵抗力和恢复力。附着在表面上避免了细胞的冲刷,并且在扰动后使液相能够重新定殖,因此可以作为临时避难所。通过从连续培养容器上游未受干扰的水库中引入细菌来建立空间避难所,其作用类似于超群落中的区域物种库。盐度脉冲影响细菌群落组成,呼吸速率和潜在底物利用方式以及组成与功能之间的相关性。与无避难所治疗相比,临时避难所缩短了返回到摄动前的条件,表明社区的适应力得到了增强。组成和功能在提供空间避难所的治疗中受到的干扰较小,表明耐药性更高。我们的研究结果表明,在扰动影响微生物元社区的概念上,需要整体上考虑时空动态,尤其是避难所。

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