Your browser doesn't support javascript.
loading
Consequences of Warming and Acidification for the Temperate Articulated Coralline Alga, Calliarthron Tuberculosum (Florideophyceae, Rhodophyta).
Donham, Emily M; Hamilton, Scott L; Aiello, Ivano; Price, Nichole N; Smith, Jennifer E.
Afiliação
  • Donham EM; University of California Santa Cruz, Ecology and Evolutionary Biology, 130 McAllister Way, Santa Cruz, California, 95060, USA.
  • Hamilton SL; Moss Landing Marine Laboratories, San Jose State University, 8272 Moss Landing Rd, Moss Landing, California, 95039, USA.
  • Aiello I; Moss Landing Marine Laboratories, San Jose State University, 8272 Moss Landing Rd, Moss Landing, California, 95039, USA.
  • Price NN; Bigelow Laboratory for Ocean Sciences, 60 Dr, East Boothbay, Bigelow, Maine, 04544, USA.
  • Smith JE; Scripps Institution of Oceanography, 9500 Gilman Dr, La Jolla, California, 92093, USA.
J Phycol ; 58(4): 517-529, 2022 08.
Article em En | MEDLINE | ID: mdl-35657106
Global climate changes, such as warming and ocean acidification (OA), are likely to negatively impact calcifying marine taxa. Abundant and ecologically important coralline algae may be particularly susceptible to OA; however, multi-stressor studies and those on articulated morphotypes are lacking. Here, we use field observations and laboratory experiments to elucidate the impacts of warming and acidification on growth, calcification, mineralogy, and photophysiology of the temperate articulated coralline alga, Calliarthron tuberculosum. We conducted a 4-week fully factorial mesocosm experiment exposing individuals from a southern CA kelp forest to current and future temperature and pH/pCO2 conditions (+2°C, -0.5 pH units). Calcification was reduced under warming (70%) and further reduced by high pCO2 or high pCO2 x warming (~150%). Growth (change in linear extension and surface area) was reduced by warming (40% and 50%, respectively), high pCO2 (20% and 40%, respectively), and high pCO2 x warming (50% and 75%, respectively). The maximum photosynthetic rate (Pmax ) increased by 100% under high pCO2 conditions, but we did not detect an effect of pCO2 or warming on photosynthetic efficiency (α). We also did not detect the effect of warming or pCO2 on mineralogy. However, variation in Mg incorporation in cell walls of different cell types (i.e., higher mol % Mg in cortical vs. medullary) was documented for the first time in this species. These results support findings from a growing body of literature suggesting that coralline algae are often more negatively impacted by warming than OA, with the potential for antagonistic effects when factors are combined.
Assuntos
Palavras-chave

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Água do Mar / Rodófitas Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Água do Mar / Rodófitas Idioma: En Ano de publicação: 2022 Tipo de documento: Article