4.3 Article

Shift towards larger diatoms in a natural phytoplankton assemblage under combined high-CO2 and warming conditions

期刊

JOURNAL OF PLANKTON RESEARCH
卷 40, 期 4, 页码 391-406

出版社

OXFORD UNIV PRESS
DOI: 10.1093/plankt/fby018

关键词

ocean acidification; warming; diatoms; spring bloom; mesocosms

资金

  1. EU-FP7 project MESOAQUA [228224]
  2. German Federal Ministry of Science and Education (BMBF)

向作者/读者索取更多资源

An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidification and warming on the species composition and biogeochemical element cycling during a winter/spring bloom with a natural phytoplankton assemblage from the Kiel fjord, Germany. The experimental setup consisted of a Control (ambient temperature of similar to 4.8 degrees C and similar to 535 +/- 25 mu atm pCO(2)), a High-CO2 treatment (ambient temperature and initially 1020 +/- 45 mu atm pCO(2)) and a Greenhouse treatment (similar to 8.5 degrees C and initially 990 +/- 60 mu atm pCO(2)). Nutrient replete conditions prevailed at the beginning of the experiment and light was provided at in situ levels upon reaching pCO(2) target levels. A diatom-dominated bloom developed in all treatments with Skeletonema costatum as the dominant species but with an increased abundance and biomass contribution of larger diatom species in the Greenhouse treatment. Conditions in the Greenhouse treatment accelerated bloom development with faster utilization of inorganic nutrients and an earlier peak in phytoplankton biomass compared to the Control and High CO2 but no difference in maximum concentration of particulate organic matter (POM) between treatments. Loss of POM in the Greenhouse treatment, however, was twice as high as in the Control and High CO2 treatment at the end of the experiment, most likely due to an increased proportion of larger diatom species in that treatment. We hypothesize that the combination of warming and acidification can induce shifts in diatom species composition with potential feedbacks on biogeochemical element cycling.

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