148:. She is currently the Principal Investigator of The Rocap Lab of the University of Washington. Her work focuses on the evolution and ecology of marine bacteria and how these organisms contribute to the Earth's carbon and nutrient cycling process. She was the Chief Scientist of several research explorations that were deployed off the coast of
159:, they found arsenic-breathing microbes and these included two genetic pathways that are able to gain energy by converting arsenic-based molecules. According to Rocap, this discovery demonstrates "a whole new metabolism for the open ocean.”
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Gabrielle Rocap et al. "Cyanophage host‐derived genes reflect contrasting selective pressures with depth in the oxic and anoxic water column of the
Eastern Tropical North Pacific."
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Saunders, Jaclyn K., and
Gabrielle Rocap. "Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations."
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Together with Jaclyn
Saunders, Rocap studied organisms in parts of the ocean that have no measurable oxygen. Based on samples collected near
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Moore, Lisa R., Gabrielle Rocap, and Sallie W. Chisholm. "Physiology and molecular phylogeny of coexisting
Prochlorococcus ecotypes."
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Rocap, Gabrielle et al. "Genome divergence in two
Prochlorococcus ecotypes reflects oceanic niche differentiation."
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to survive. She is currently a professor in the
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Rocap conducts marine research in various locations such as
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361:"Microbes in the Pacific Ocean survive on arsenic"
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309:"Gabrielle Rocap | BCO-DMO"
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163:Selected publications
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402:American scientists
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