Area of research
Ecology · Molecular Biology
Research interest
Research interests include Biology, Prochlorococcus, Vesicle, Ecology, Bacteria, and Synechococcus.
Novel integrative elements and genomic plasticity in ocean ecosystems
Environmental and Taxonomic Drivers of Bacterial Extracellular Vesicle Production in Marine Ecosystems
Siderophores as an iron source for picocyanobacteria in deep chlorophyll maximum layers of the oligotrophic ocean
Characterization of membrane vesicles in <i>Alteromonas macleodii</i> indicates potential roles in their copiotrophic lifestyle
Evaluating and Improving Small Subunit rRNA PCR Primer Coverage for Bacteria, Archaea, and Eukaryotes Using Metagenomes from Global Ocean Surveys
<i>Prochlorococcus</i> extracellular vesicles: molecular composition and adsorption to diverse microbes
Deep-sea microbes as tools to refine the rules of innate immune pattern recognition
Charting the Complexity of the Marine Microbiome through Single-Cell Genomics
Marine microbial metagenomes sampled across space and time
Single cell genomes of Prochlorococcus, Synechococcus, and sympatric microbes from diverse marine environments
Investigating the Heterogeneous Ice Nucleation of Sea Spray Aerosols Using <i>Prochlorococcus</i> as a Model Source of Marine Organic Matter
Membrane vesicles in sea water: heterogeneous DNA content and implications for viral abundance estimates
Survival of <i>Prochlorococcus</i> in extended darkness
Torn apart and reunited: impact of a heterotroph on the transcriptome of <i>Prochlorococcus</i>
Contribution of cyanobacterial alkane production to the ocean hydrocarbon cycle
Prochlorococcus: the structure and function of collective diversity
Single-Cell Genomics Reveals Hundreds of Coexisting Subpopulations in Wild <i>Prochlorococcus</i>
Bacterial Vesicles in Marine Ecosystems
Physiology and evolution of nitrate acquisition in <i>Prochlorococcus</i>
Genomes of diverse isolates of the marine cyanobacterium Prochlorococcus
Global Biodiversity of Aquatic Ammonia-Oxidizing Archaea is Partitioned by Habitat