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Hernandez, D. J.

Publications and source records attributed to Hernandez, D. J..

2 recordsLinked to original sources

Multidimensional specialization and generalization are pervasive in soil prokaryotes with generalists dominating communities and specialists more central in networks

Habitat specialization underpins biological processes from species distributions to speciation. However, organisms are often described as specialists or generalists based on a single niche axis, despite facing complex, multidimensional environments. Here, we analyzed 236 prokaryotic communities across the United States demonstrating for the first time that 90% of >1,200 prokaryotes followed one of two trajectories: specialization on all niche axes (multidimensional specialization) or generalization on all axes (multidimensional generalization). We then documented that this pervasive multidimensional specialization/generalization had a wide range of ecological and evolutionary consequences. First, multidimensional specialization and generalization are highly conserved with very few transitions between these two trajectories. Second, multidimensional generalists dominated communities because they were 73 times more abundant than specialists. Lastly, multidimensional specialists played important roles in community structure with [~]220% more connections in microbiome networks. These results indicate that multidimensional generalization and specialization are evolutionarily stable with multidimensional generalists supporting larger populations and multidimensional specialists playing important roles within communities likely stemming from their overrepresentation among pollutant detoxifiers and nutrient cyclers. Taken together, we demonstrate that the vast majority of soil prokaryotes are restricted to one of two multidimensional niche trajectories, multidimensional specialization or multidimensional generalization, which then has far-reaching consequences for evolutionary transitions, microbial dominance, and community roles. One-Sentence SummaryPervasive multidimensional specialization and generalization impacts evolutionary trajectories, microbial dominance, and community roles.

microbiology↗

Hub taxa are keystone microbes during early succession

Microorganisms underpin numerous ecosystem processes and support biodiversity globally, yet we understand surprisingly little about what structures environmental microbiomes themselves. Combining culturing, sequencing, and microbial networks, we identified central (highly-connected, hub taxa), intermediate (moderately-connected), and peripheral (weakly/un-connected) microbes and experimentally evaluated their effects on soil microbiome assembly during early succession. Our results demonstrate central early colonizers significantly (1) enhanced biodiversity, (2) increased recruitment of additional influential, hub taxa, and (3) shaped microbiome assembly trajectories. This work elucidates fundamental principles of network theory in microbial ecology and demonstrates for the first time in nature that central, hub microbes are keystones.

microbiology↗