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Q. Devresse et al.: Eddy-enhanced primary production sustains heterotrophic microbial activities 
5219 
Oxygen Fluxes in the Baltic Sea, Front. Mar. Sci., 6, 1-16, Solörzano, L.: Determination of Ammonia in Natural Waters by the 
https://doi.0rg/10.3389/fmars.2019.00581, 2019. Phenolhypochlorite Method, Limnol. Oceanogr., 14, 799-801. 
Rao, D. N., Chopra, M., Rajula, G. R., Durgadevi, D. 5. 1969. 
L., and Sarma, V. V. S. S.: Release of significant frac- Strickland, J. D. H. and Parsons, T. R.: A Practical Handbook of 
von of primary production as dissolved organic carbon Seawater Analysis, Bull. Fish. Res. Board Can., 167, 1311, 
in the Bay of Bengal, Deep-Sea Res. Pt. I, 168, 1-27, 1968. 
https://doi.org/10.1016/j.dsr.2020.103445, 2021. Thingstad, T. F., Hagström, Ä., and Rassoulzadegan, F.: Accumula- 
Regaudie-De-Gioux, A. and Dwuarte, C. M.: Tem- tion of degradable DOC in surface waters: Is it caused by a mal- 
perature dependence of planktonic metabolism in ‚unctioning microbial loop?, Limnol. Oceanogr., 42, 398-404. 
he ocean, Global Biogeochem. Cy., 26, GB1015, https://doi.org/10.4319/10.1997.42.2.0398, 1997. 
https://doi.org/10.1029/2010GB003907, 2012. Thomsen, S., Kanzow, T., Krahmann, G., Greatbatch, J. R., 
Reinthaler, T., Bakker, K., Manuels, R., van Ooijen, J., and Dengler, M., and Lavik, G. S.: The formation of a subsur- 
Herndl, G. J.: Erratum to Fully automated spectrophotometric face anticyclonic eddy in the Peru-Chile Undercurrent and 
approach to determine oxygen concentrations in seawater via its impact on the near-coastal salinity, oxygen, and nutri- 
continuous-flow analysis, Limnol. Oceanogr. Method., 5, 72-72, ent distributions, J. Geophys. Res.-Ocean., 121, 476-501. 
https://doi.0rg/10.4319/10m.2007.5.72, 2006. https://doi.org/10.1002/2015JC010878, 2016. 
Robinson C.: Heterotrophic bacterial respiration, in: Microbial Vaque, D., Alonso-Säez, L., Aristegui, J., Agusti, S., Duarte, 
ecology of the oceans, edited by: Kirchman, D. L., 2nd Edn., C. M., Montserrat Sala, M., Väzquez-Dominguez, E., and 
299-334, Wiley, 2008. Gasol, J. M.: Bacterial production and losses to predators 
Russell, J. B. and Cook, M. G.: Energetics of Bacterial Growth: along an Open ocean productivity gradient in the Subtropi- 
Balance of Anabolic and Catabolic Reactions, Microbiol Rev., cal North East Atlantic Ocean, J. Plank. Res., 36, 198-213. 
59, 48—62, 1995. https://doi.org/10.1093/plankt/£fbt085, 2014. 
Schlitzer, R.: Ocean Data View, https://odv.awi.de (last access: Wear, E. K., Carlson, C. A., and Church, M. J.: Bacterioplank- 
21 April 2022), 2020. ton metabolism of phytoplankton lysates across a cyclone- 
Schütte, F., Brandt, P., and Karstensen, J.: Occurrence and charac- anticyclone eddy dipole impacts the cycling of semi-labile or- 
teristics of mesoscale eddies in the tropical northeastern Atlantic ganic matter in the photic zone, Limnol. Oceanogr., 65, 1608- 
Ocean, Ocean Sci., 12, 663-685, https://doi.org/10.5194/o0s-12- 1622, https://doi.org/10.1002/lno.1 1409, 2020. 
663-2016, 2016. Wickham, H.: tidyverse: Easily Install and Load “Tidyverse” Pack- 
Simon, M. and Azam, F.: Protein content and protein synthesis rates ages, See https://cran.r-project.org/package=tidyverse (last ac- 
of planktonic marine bacteria, Mar. Ecol. Prog. Ser., 51, 201- cess: 4 May 2022), 2016. 
213, 1989. Wilhelm, W. L.: Die Bestimmung des im Wasser gelösten Sauer- 
Singh, A., Gandhi, N., Ramesh, R., and Prakash, S.: Role stoffes, Ber. Dtsch. Chem. Ges., 21, 2843-2854, 1888. 
of cyclonic eddy in enhancing primary and new pro- Xu, G., Dong, C., Liu, Y., Gaube, P., and Yang, J.: Chl a Rings 
duction in the Bay of Bengal, J. Sea Res., 97, 5-13, around Ocean Eddies in the North Pacific, Sci. Rep., 9, 1-8. 
https://doi.org/10.1016/j.seares.2014.12.002, 2015. https://doi.org/10.1038/s41598-018-38457-8, 2019. 
Smith, D. and Azam, F.: A simple, economical method for mea- 
suring bacterial protein synthesis rates in seawater using, Mar. 
Microb. Food Webs. 6. 107-114. 1992. 
https://doi.org/10.5194/bg-19-5199-2022 
Biogeosciences, 19, 51995219, 2022
	        
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