TY - JOUR
T1 - Expanding Tara Oceans Protocols for Underway, Ecosystemic Sampling of the Ocean-Atmosphere Interface During Tara Pacific Expedition (2016–2018)
AU - on behalf of Tara Pacific Consortium
AU - Gorsky, Gabriel
AU - Bourdin, Guillaume
AU - Lombard, Fabien
AU - Pedrotti, Maria Luiza
AU - Audrain, Samuel
AU - Bin, Nicolas
AU - Boss, Emmanuel
AU - Bowler, Chris
AU - Cassar, Nicolas
AU - Caudan, Loic
AU - Chabot, Genevieve
AU - Cohen, Natalie R.
AU - Cron, Daniel
AU - De Vargas, Colomban
AU - Dolan, John R.
AU - Douville, Eric
AU - Elineau, Amanda
AU - Flores, J. Michel
AU - Ghiglione, Jean Francois
AU - Haëntjens, Nils
AU - Hertau, Martin
AU - John, Seth G.
AU - Kelly, Rachel L.
AU - Koren, Ilan
AU - Lin, Yajuan
AU - Marie, Dominique
AU - Moulin, Clémentine
AU - Moucherie, Yohann
AU - Pesant, Stéphane
AU - Picheral, Marc
AU - Poulain, Julie
AU - Pujo-Pay, Mireille
AU - Reverdin, Gilles
AU - Romac, Sarah
AU - Sullivan, Mathew B.
AU - Trainic, Miri
AU - Tressol, Marc
AU - Troublé, Romain
AU - Vardi, Assaf
AU - Voolstra, Christian R.
AU - Wincker, Patrick
AU - Agostini, Sylvain
AU - Banaigs, Bernard
AU - Boissin, Emilie
AU - Forcioli, Didier
AU - Furla, Paola
AU - Galand, Pierre E.
AU - Gilson, Eric
AU - Reynaud, Stéphanie
AU - Sunagawa, Shinichi
AU - Thomas, Olivier P.
AU - Thurber, Rebecca Lisette Vega
AU - Zoccola, Didier
AU - Planes, Serge
AU - Allemand, Denis
AU - Karsenti, Eric
N1 - Publisher Copyright:
© Copyright © 2019 Gorsky, Bourdin, Lombard, Pedrotti, Audrain, Bin, Boss, Bowler, Cassar, Caudan, Chabot, Cohen, Cron, De Vargas, Dolan, Douville, Elineau, Flores, Ghiglione, Haëntjens, Hertau, John, Kelly, Koren, Lin, Marie, Moulin, Moucherie, Pesant, Picheral, Poulain, Pujo-Pay, Reverdin, Romac, Sullivan, Trainic, Tressol, Troublé, Vardi, Voolstra, Wincker, Agostini, Banaigs, Boissin, Forcioli, Furla, Galand, Gilson, Reynaud, Sunagawa, Thomas, Vega Thurber, Zoccola, Planes, Allemand and Karsenti.
PY - 2019/12/11
Y1 - 2019/12/11
N2 - Interactions between the ocean and the atmosphere occur at the air-sea interface through the transfer of momentum, heat, gases and particulate matter, and through the impact of the upper-ocean biology on the composition and radiative properties of this boundary layer. The Tara Pacific expedition, launched in May 2016 aboard the schooner Tara, was a 29-month exploration with the dual goals to study the ecology of reef ecosystems along ecological gradients in the Pacific Ocean and to assess inter-island and open ocean surface plankton and neuston community structures. In addition, key atmospheric properties were measured to study links between the two boundary layer properties. A major challenge for the open ocean sampling was the lack of ship-time available for work at “stations”. The time constraint led us to develop new underway sampling approaches to optimize physical, chemical, optical, and genomic methods to capture the entire community structure of the surface layers, from viruses to metazoans in their oceanographic and atmospheric physicochemical context. An international scientific consortium was put together to analyze the samples, generate data, and develop datasets in coherence with the existing Tara Oceans database. Beyond adapting the extensive Tara Oceans sampling protocols for high-resolution underway sampling, the key novelties compared to Tara Oceans’ global assessment of plankton include the measurement of (i) surface plankton and neuston biogeography and functional diversity; (ii) bioactive trace metals distribution at the ocean surface and metal-dependent ecosystem structures; (iii) marine aerosols, including biological entities; (iv) geography, nature and colonization of microplastic; and (v) high-resolution underway assessment of net community production via equilibrator inlet mass spectrometry. We are committed to share the data collected during this expedition, making it an important resource important resource to address a variety of scientific questions.
AB - Interactions between the ocean and the atmosphere occur at the air-sea interface through the transfer of momentum, heat, gases and particulate matter, and through the impact of the upper-ocean biology on the composition and radiative properties of this boundary layer. The Tara Pacific expedition, launched in May 2016 aboard the schooner Tara, was a 29-month exploration with the dual goals to study the ecology of reef ecosystems along ecological gradients in the Pacific Ocean and to assess inter-island and open ocean surface plankton and neuston community structures. In addition, key atmospheric properties were measured to study links between the two boundary layer properties. A major challenge for the open ocean sampling was the lack of ship-time available for work at “stations”. The time constraint led us to develop new underway sampling approaches to optimize physical, chemical, optical, and genomic methods to capture the entire community structure of the surface layers, from viruses to metazoans in their oceanographic and atmospheric physicochemical context. An international scientific consortium was put together to analyze the samples, generate data, and develop datasets in coherence with the existing Tara Oceans database. Beyond adapting the extensive Tara Oceans sampling protocols for high-resolution underway sampling, the key novelties compared to Tara Oceans’ global assessment of plankton include the measurement of (i) surface plankton and neuston biogeography and functional diversity; (ii) bioactive trace metals distribution at the ocean surface and metal-dependent ecosystem structures; (iii) marine aerosols, including biological entities; (iv) geography, nature and colonization of microplastic; and (v) high-resolution underway assessment of net community production via equilibrator inlet mass spectrometry. We are committed to share the data collected during this expedition, making it an important resource important resource to address a variety of scientific questions.
KW - IOP
KW - NCP
KW - aerosols
KW - microplastic
KW - neuston/plankton genomics/taxonomy/imaging
KW - trace metals
UR - https://www.scopus.com/pages/publications/85077258803
U2 - 10.3389/fmars.2019.00750
DO - 10.3389/fmars.2019.00750
M3 - Article
SN - 2296-7745
VL - 6
JO - Frontiers in Marine Science
JF - Frontiers in Marine Science
M1 - 750
ER -