Environmental Gradients as a Dominant Force in the Macroevolution of a Host-Associated Marine Bacterium

Natural selection is imposed by both abiotic environmental filtering and biotic interactions, yet their relative roles in shaping the deep phylogeny of widespread, generalist host-associated bacteria remain unclear. Here, we integrate large-scale phylogenomics, environmental sequencing, functional genomics, and global metagenomic analysis to demonstrate that tidal zonation overrides host association as the dominant macroevolutionary force structuring the marine bacterial genus Ruegeria. Analysis of 533 genomes and 74 global coastal metagenomes reveals that the intertidal-subtidal boundary structures the deepest phylogenetic splits, driving the repeated evolution of distinct ecotypes through independent zonation transitions across global coastlines. These ecotypes possess divergent genomic toolkits: intertidal strains are enriched for genes coding for stress resistance and anaerobic metabolism, whereas subtidal strains specialize in high-affinity nutrient scavenging. Our findings establish that predictable physicochemical gradients act as filters that generate foundational diversity from which specialized host symbionts subsequently emerge, reframing how environmental gradients shape microbial evolution at the eco-evolutionary interface.

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Publication Details

Journal
The ISME Journal
Published
2026-09-15
DOI
https://doi.org/10.1093/ismejo/wrag244
Primary Topic
Microbial Community Ecology and Physiology
Type
article
Field-Weighted Citation Impact
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article

Environmental Gradients as a Dominant Force in the Macroevolution of a Host-Associated Marine Bacterium

Zenglei Song, Tianhua Liao, Ruizhi Liu, Xiaoke Hu et al.
The ISME Journal
Microbial Community Ecology and Physiology
article

Environmental Gradients as a Dominant Force in the Macroevolution of a Host-Associated Marine Bacterium

Zenglei Song, Tianhua Liao, Ruizhi Liu, Xiaoke Hu, Haiwei Luo, Yanyu Sun, Mei Xie, Christian R Voolstra, Xiaoyuan Feng, Yanyan Huang, Xin Liu, Xin Lv, Qing Liu
article en

Abstract

Natural selection is imposed by both abiotic environmental filtering and biotic interactions, yet their relative roles in shaping the deep phylogeny of widespread, generalist host-associated bacteria remain unclear. Here, we integrate large-scale phylogenomics, environmental sequencing, functional genomics, and global metagenomic analysis to demonstrate that tidal zonation overrides host association as the dominant macroevolutionary force structuring the marine bacterial genus Ruegeria. Analysis of 533 genomes and 74 global coastal metagenomes reveals that the intertidal-subtidal boundary structures the deepest phylogenetic splits, driving the repeated evolution of distinct ecotypes through independent zonation transitions across global coastlines. These ecotypes possess divergent genomic toolkits: intertidal strains are enriched for genes coding for stress resistance and anaerobic metabolism, whereas subtidal strains specialize in high-affinity nutrient scavenging. Our findings establish that predictable physicochemical gradients act as filters that generate foundational diversity from which specialized host symbionts subsequently emerge, reframing how environmental gradients shape microbial evolution at the eco-evolutionary interface.

The ISME Journal
Chinese University of Hong Kong (HK), Yantai University (CN), University of Konstanz (DE), Ministry of Ecology and Environment (CN), Yantai Automobile Engineering Professional College (CN), Yantai Institute of Coastal Zone Research (CN), Qingdao National Laboratory for Marine Science and Technology (CN), Chinese University of Hong Kong, Shenzhen (CN), Institute for Advanced Study (DE), Chinese Research Academy of Environmental Sciences (CN), University of Chinese Academy of Sciences (CN), Shandong Institute of Business and Technology (CN)
Life below water
Openalex Percentile: Top 11%
Microbial Community Ecology and Physiology
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