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The Response of Three Southern Ocean Phytoplankton Species to Ocean Acidification and Light Availability: A Transcriptomic Study
Authors:Sára Beszteri  Silke Thoms  Vladimir Benes  Lars Harms  Scarlett Trimborn
Affiliation:1. Alfred Wegener Institute Helmholtz Center for Marine and Polar Research, Am Handelshafen 12, Bremerhaven 27570, Germany;2. European Molecular Biology Laboratory, Heidelberg, Germany;3. Marine Botany, University of Bremen, Bremen, Germany
Abstract:
Keywords:6PGL  phosphogluconolactonase  6PGD  phosphogluconate dehydrogenase  ACEA  isocitrate lyase  AMB  BCAA  branched chain amino acid  B3AT  band 3 anion transport protein  CA  carbonic anhydrase  CCM  carbon concentrating mechanism  DIC  dissolved inorganic carbon  ETC  electron transport chain  FA  fatty acid  FCP  fucoxanthin-chlorophyll binding protein  F16P1  fructose-1,6-bisphosphatase  HL  high light  LHC  light harvesting chain protein  LL  low light  OA  ocean acidification  OPPP  oxidative pentose phosphate pathway  PEPCK  phosphoenolpyruvate carboxykinase  PFP  ATP-dependent phosphofructokinase  PGKH  phosphoglycerate kinase  POC  particulate organic carbon  PPDK  pyruvate, phosphate dikinase  PPP  pentose phosphate pathway  PRK  phosphoribulokinase  RNA  ribonucleic acid  rubisco  ribulose-1,5-bisphosphate carboxylase/oxygenase  SCA  succinate/fumarate mitochondrial transporter  SO  Southern Ocean  S4A8  Electroneutral sodium bicarbonate exchanger 1  TCA  tricarboxylic acid cycle  Diatom  climate change  multiple stressors  gene expression
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