生物
生态学
捕食
趋同(经济学)
生态系统
分歧(语言学)
微生物群
微生物种群生物学
生物多样性
社区
分类单元
微生物生态学
群落结构
全球变化
捕食者
扩增子测序
收敛演化
食物网
食物链
物种丰富度
生态系统服务
作者
Rasit Asiloglu,Hayato Kuno,Mayu Fujino,Seda Özer Bodur,Murat Aycan,Hideo Ishizuka,Shiori Kazama,Shinya Iwasaki,Jun Murase,Naoki Harada,Miwa Arai,Kenta Ikazaki
标识
DOI:10.1038/s41467-026-70605-x
摘要
Understanding how microbial communities assemble is central to predicting ecosystem function. Although predators strongly influence bacterial communities through predation, the role of microbial predators in modulating global microbial divergence and convergence patterns remains largely neglected. Here, we integrated global-scale amplicon sequencing data, controlled field experiments, and reconstructions of natural and synthetic communities to examine predator-mediated community assembly mechanisms. We show that bacterivorous protists exert dual, scale-dependent effects on microbial communities: promoting local convergence by suppressing dominant bacterial taxa, while generating global divergence through species-specific predation effects. We find that predator identity and prey susceptibility jointly determine convergence outcomes. Communities dominated by predator-resistant taxa exhibit reduced convergence under predation pressure, revealing a predictable trait-based filtering mechanism. This work establishes bacterivorous protists as key, context-dependent agents of biogeography and suggests new opportunities for microbiome engineering, where targeted use of protists may steer microbial communities toward functional configurations that enhance soil health and ecosystem resilience.
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