Publications
Found 35 results
Author Title Type [ Year
] Filters: First Letter Of Last Name is L [Clear All Filters]
.
2025. High Protistan Parasite Occurrence During Fall in a Warm, Low Sea Ice Year in the Eastern Bering Sea.. J Eukaryot Microbiol. 72(4):e70018.
.
2025. High Protistan Parasite Occurrence During Fall in a Warm, Low Sea Ice Year in the Eastern Bering Sea.. J Eukaryot Microbiol. 72(4):e70018.
.
2025. Illuminating deep-sea considerations and experimental approaches for mCDR proposals. Environmental Research Letters. 20(6):061003.
.
2025. Illuminating deep-sea considerations and experimental approaches for mCDR proposals. Environmental Research Letters. 20(6):061003.
.
2023. Characterization of the molecular mechanisms of silicon uptake in coccolithophores. Environmental Microbiology. Journal Volume: 25(Journal Issue: 2)
.
2023. Food for all? Wildfire ash fuels growth of diverse eukaryotic plankton. Proc Biol Sci. 290(2010):20231817.
.
2023. Integrating phytoplankton pigment and DNA meta-barcoding observations to determine phytoplankton composition in the coastal ocean. Limnology and Oceanography.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2019. Formation, Development, and Propagation of a Rare Coastal Coccolithophore Bloom. Journal of Geophysical Research: Oceans. 124:3298-3316.
.
2019. Molecular and biochemical basis for the loss of bioluminescence in the dinoflagellate Noctiluca scintillans along the west coast of the U.S.A.. Limnology and Oceanography. 64(6):2709-2724.
.
2018. Spatial and Temporal Variability of Coccolithophore Blooms in the Eastern Bering Sea. JGR Oceans. 123(12):9119-9136.
.
2017. Coccolithophore growth and calcification in a changing ocean. Progress in Oceanography. 159:276-295.
.
2017. Physiological responses of coccolithophores to abrupt exposure of naturally low pH deep seawater. PLOS ONE. 12:1-20.
.
2016. Bioluminescent Microalgae. Microalgae: Current research and applications.
.
2013. The effect of nitrate and phosphate availability on Emiliania huxleyi (NZEH) physiology under different CO2 scenarios. Frontiers in microbiology. 4
.
2013. Pan genome of the phytoplankton Emiliania underpins its global distribution. Nature. 499:209–213.
.
2012. Removal of organic magnesium in coccolithophore calcite. Geochimica et Cosmochimica Acta. 89:226–239.
.
2011. Elemental carbonate chemistry selectivity in coccolithophores in present and future oceans. European Journal of Phycology.
.
2010. Global contribution of echinoderms to the marine carbon cycle: CaCO3 budget and benthic compartments. Ecological Monographs. 80(3):441–467.
.
2010. Global contribution of echinoderms to the marine carbon cycle: CaCO3 budget and benthic compartments. Ecological Monographs. 80(3):441–467.
.
2010. Sea stars suck up carbon. Nature news.
