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Author Virginie Galindo, Michel Gosselin, Johann Lavaud, Christopher John Mundy, Brent Else, Jens Ehn, Marcel Babin, Søren Rysgaard doi  openurl
  Title Pigment composition and photoprotection of Arctic sea ice algae during spring Type Journal
  Year (down) 2017 Publication Marine Ecology Progress Series Abbreviated Journal  
  Volume 585 Issue Pages 49-69  
  Keywords Arctic Ice algae Light memory Photoacclimation Pigments Snow melt  
  Abstract From the beginning of spring to the melt period, ice algae in the bottom of Arctic sea ice experience a large irradiance range, varying from <0.1% up to 25–30% of the incoming visible radiation. The increase in spring is usually rapid, with a varying photoacclimative response by bottom ice algae to protect themselves against excess light, such as changes in cellular pigment composition. This study focused on the temporal variation in pigment composition of bottom ice algae under 2 contrasting snow depths (thin and thick) during spring. Controlled experiments were also carried out to investigate the photoprotective capacity of ice algae to relatively high irradiances during a short-term period (<6 h). Ice algae were able to photoacclimate rapidly and effectively to irradiance ranging from 10 to 100 µmol photons m-2 s-1. However, we observed contrasting responses in photoacclimation depending on the ice algal community composition and their light history. Our experimental results suggest that the xanthophyll cycle (diadinoxanthin to diatoxanthin conversion) and D1-protein recycling play an important role in stabilizing photoprotection in ice algae. In addition, bottom ice algae likely employed a ‘cellular light-exposure memory’ strategy in order to improve their photoacclimative response to changing light exposure. According to our data, this process could be maintained over at least 2 wk. Hence, ice algae may be more resilient to varying light conditions than previously thought and may be well-adapted for the expected future light regime changes associated with variability in snow and sea ice cover.  
  Programme 1164  
  Campaign  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0171-8630, 1616-1599 ISBN Medium  
  Area Expedition Conference  
  Notes Approved yes  
  Call Number Serial 8130  
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