Area of research
Ecology · Molecular Biology
Research interest
Research interests include Environmental DNA in Biodiversity Studies, Microbial Community Ecology and Physiology, Protist diversity and phylogeny, and Marine Biology and Ecology Research.
Global branches and local states of the human gut microbiome define associations with environmental and intrinsic factors
Standardized multi-omics of Earth’s microbiomes reveals microbial and metabolite diversity
Phylogeny-Aware Analysis of Metagenome Community Ecology Based on Matched Reference Genomes while Bypassing Taxonomy
Patterns of eukaryotic diversity from the surface to the deep-ocean sediment
Environmental RNA outperforms eDNA metabarcoding in assessing impact of marine pollution: A chromium-spiked mesocosm test
Environmental DNA metabarcoding for benthic monitoring: A review of sediment sampling and DNA extraction methods
A posteriori dietary patterns better explain variations of the gut microbiome than individual markers in the American Gut Project
Eukaryotic Biodiversity and Spatial Patterns in the Clarion-Clipperton Zone and Other Abyssal Regions: Insights From Sediment DNA and RNA Metabarcoding
Enhanced monitoring of life in the sea is a critical component of conservation management and sustainable economic growth
The Biodiversity and Distribution of Abyssal Benthic Foraminifera and Their Possible Ecological Roles: A Synthesis Across the Clarion-Clipperton Zone
Consumption of Fermented Foods Is Associated with Systematic Differences in the Gut Microbiome and Metabolome
Climate change considerations are fundamental to management of deep‐sea resource extraction
Global Observing Needs in the Deep Ocean
Effects of the microalgae Chlamydomonas on gastrointestinal health
Ancient DNA from marine sediments: Precautions and considerations for seafloor coring, sample handling and data generation
SLIM: a flexible web application for the reproducible processing of environmental DNA metabarcoding data
Predicting the Ecological Quality Status of Marine Environments from eDNA Metabarcoding Data Using Supervised Machine Learning
Accurate multiplexing and filtering for high-throughput amplicon-sequencing
High-throughput sequencing and morphology perform equally well for benthic monitoring of marine ecosystems
Environmental monitoring through protist next‐generation sequencing metabarcoding: assessing the impact of fish farming on benthic foraminifera communities