Area of research
Ecology · Molecular Biology
Research interest
Research interests include Microbial Community Ecology and Physiology, Genomics and Phylogenetic Studies, Methane Hydrates and Related Phenomena, and Gut microbiota and health.
Toward an integrative framework for monitoring biodegradation of environmental contaminants across scales.
Blueprints for sustainable plant production through the utilization of crop wild relatives and their microbiomes
Northern peatland microbial communities exhibit resistance to warming and acquire electron acceptors from soil organic matter
Blueprints for sustainable plant production through the utilization of crop wild relatives and their microbiomes.
Northern peatland microbial communities exhibit resistance to warming and acquire electron acceptors from soil organic matter.
Unraveling the ecological success of <i>Iodidimonas</i> in a bioreactor treating oil and gas produced water.
Legacy Effects of Cropping System and Precipitation Influence the Core <i>Camelina sativa</i> Microbiome
The gut microbiome of the Passalid beetle has high cellulolytic potential and constitutes an unrecognized system for production of greenhouse gasses in neotropical forests
Breeding of microbiomes conferring salt tolerance to plants
A global atlas of soil viruses reveals unexplored biodiversity and potential biogeochemical impacts.
Multiple microbial guilds mediate soil methane cycling along a wetland salinity gradient.
Root-associated bacterial communities and root metabolite composition are linked to nitrogen use efficiency in sorghum.
Microbial Ecology and Site Characteristics Underlie Differences in Salinity‐Methane Relationships in Coastal Wetlands
Genomic insights into redox-driven microbial processes for carbon decomposition in thawing Arctic soils and permafrost.
Disentangling the effects of sulfate and other seawater ions on microbial communities and greenhouse gas emissions in a coastal forested wetland.
Northern peatland microbial networks exhibit resilience to warming and acquire electron acceptor from soil organic matter
Northern peatland microbial networks exhibit resilience to warming and acquire electron acceptor from soil organic matter
Abiotic Stress Reorganizes Rhizosphere and Endosphere Network Structure of <i>Sorghum bicolor</i>
One Health, climate change, and infectious microbes: a joint effort between AGU and ASM to understand impacts of changing climate and microbes on human well-being across scales.
Unraveling the functional dark matter through global metagenomics.
Methyl-Based Methanogenesis: an Ecological and Genomic Review.
Highly diverse and unknown viruses may enhance Antarctic endoliths’ adaptability
Highly diverse and unknown viruses may enhance Antarctic endoliths' adaptability.
Long-Term Persistence of Three Microbial Wildfire Biomarkers in Forest Soils
Conservation of beneficial microbes between the rhizosphere and the cyanosphere.
Poisson hurdle model-based method for clustering microbiome features.
<i>Iodidimonas</i> , a bacterium unable to degrade hydrocarbons, thrives in a bioreactor treating oil and gas produced water
Metagenomics untangles metabolic adaptations of Antarctic endolithic bacteria at the fringe of habitability
Root associated bacterial communities and root metabolite composition are linked to nitrogen use efficiency in sorghum
Dataset of 143 metagenome-assembled genomes from the Arctic and Atlantic Oceans, including 21 for eukaryotic organisms.