Laboratory of Ecology of Aquatic Systems, Brussels Bioengineering School, Université Libre de Bruxelles, 1050, Brussels, Belgium.
Laboratory of Molecular Bacteriology (Rega Institute), Department of Microbiology, Immunology and Transplantation, KU Leuven, 3000, Louvain, Belgium.
Curr Microbiol. 2023 Jun 9;80(8):238. doi: 10.1007/s00284-023-03342-9.
The dynamics of a community of four planktonic bacterial strains isolated from river water was followed in R2 broth for 72 h in batch experiments. These strains were identified as Janthinobacterium sp., Brevundimonas sp., Flavobacterium sp. and Variovorax sp. 16S rRNA gene sequencing and flow cytometry analyses were combined to monitor the change in abundance of each individual strain in bi-cultures and quadri-culture. Two interaction networks were constructed that summarize the impact of the strains on each other's growth rate in exponential phase and carrying capacity in stationary phase. The networks agree on the absence of positive interactions but also show differences, implying that ecological interactions can be specific to particular growth phases. Janthinobacterium sp. was the fastest growing strain and dominated the co-cultures. However, its growth rate was negatively affected by the presence of other strains 10 to 100 times less abundant than Janthinobacterium sp. In general, we saw a positive correlation between growth rate and carrying capacity in this system. In addition, growth rate in monoculture was predictive of carrying capacity in co-culture. Taken together, our results highlight the necessity to take growth phases into account when measuring interactions within a microbial community. In addition, evidence that a minor strain can greatly influence the dynamics of a dominant one underlines the necessity to choose population models that do not assume a linear dependency of interaction strength to abundance of other species for accurate parameterization from such empirical data.
从河水中分离出的 4 株浮游细菌在 R2 肉汤中进行了 72 小时的批式实验,研究了它们的群落动态。这些菌株被鉴定为 Janthinobacterium sp.、Brevundimonas sp.、Flavobacterium sp. 和 Variovorax sp.。16S rRNA 基因测序和流式细胞术分析相结合,监测了双培养物和四培养物中每个单菌株丰度的变化。构建了两个相互作用网络,总结了菌株在指数生长期和静止期对彼此生长速率的影响。这两个网络都同意不存在正相互作用,但也存在差异,这意味着生态相互作用可能特定于特定的生长阶段。Janthinobacterium sp. 是生长最快的菌株,主导着共培养物。然而,它的生长速率受到其他菌株的存在的负面影响,这些菌株的丰度比 Janthinobacterium sp. 低 10 到 100 倍。总的来说,我们在这个系统中看到了生长速率和承载能力之间存在正相关关系。此外,在单培养物中的生长速率可以预测在共培养物中的承载能力。总之,我们的研究结果强调了在测量微生物群落内部相互作用时必须考虑生长阶段。此外,证据表明,一个次要菌株可以极大地影响一个优势菌株的动态,这突显了必须选择不假设相互作用强度与其他物种丰度呈线性依赖关系的种群模型,以便从这些经验数据中进行准确的参数化。