Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
about
Coralline algae in a naturally acidified ecosystem persist by maintaining control of skeletal mineralogy and sizeInorganic carbon physiology underpins macroalgal responses to elevated CO2.DNA sequencing, anatomy, and calcification patterns support a monophyletic, subarctic, carbonate reef-forming Clathromorphum (Hapalidiaceae, Corallinales, Rhodophyta).Contrasting effects of ocean acidification on tropical fleshy and calcareous algaeElemental variability in the coralline alga Lithophyllum yemenense as an archive of past climate in the Gulf of Aden (NW Indian Ocean).Eukaryotic Life Inhabits Rhodolith-forming Coralline Algae (Hapalidiales, Rhodophyta), Remarkable Marine Benthic MicrohabitatsImpact of high CO2 on the geochemistry of the coralline algae Lithothamnion glaciale.Greenhouse conditions induce mineralogical changes and dolomite accumulation in coralline algae on tropical reefs.In situ changes of tropical crustose coralline algae along carbon dioxide gradients.Multiple phases of mg-calcite in crustose coralline algae suggest caution for temperature proxy and ocean acidification assessment: lessons from the ultrastructure and biomineralization in Phymatolithon (Rhodophyta, Corallinales)1.Coralline algae elevate pH at the site of calcification under ocean acidification.Slow-flow habitats as refugia for coastal calcifiers from ocean acidification.Aragonite infill in overgrown conceptacles of coralline Lithothamnion spp. (Hapalidiaceae, Hapalidiales, Rhodophyta): new insights in biomineralization and phylomineralogy.First evidence of chitin in calcified coralline algae: new insights into the calcification process of Clathromorphum compactum.Presence of skeletal banding in a reef-building tropical crustose coralline algaDiscovery of the mineral brucite (magnesium hydroxide) in the tropical calcifying alga Polystrata dura (Peyssonneliales, Rhodophyta).Microsensor studies on Padina from a natural CO2 seep: implications of morphology on acclimation to low pH.Persistent natural acidification drives major distribution shifts in marine benthic ecosystems.Interactive effects of ocean acidification and warming on coral reef associated epilithic algal communities under past, present-day and future ocean conditionsGrowth rates and ecology of coralline rhodoliths from the Ras Ghamila back reef lagoon, Red SeaRhodoliths in Brazil: Current knowledge and potential impacts of climate changePhysical basis of coastal adaptation on tropical small islands
P2860
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P2860
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
description
im Dezember 2012 veröffentlichter wissenschaftlicher Artikel
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wetenschappelijk artikel
@nl
наукова стаття, опублікована в грудні 2012
@uk
name
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@en
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@nl
type
label
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@en
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@nl
prefLabel
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@en
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@nl
P2093
P2860
P356
P1476
Dolomite-rich coralline algae in reefs resist dissolution in acidified conditions
@en
P2093
B. D. Russell
B. N. Opdyke
D. I. Kline
J. Prichard
M. C. Nash
M. Gardner
U. Troitzsch
W. H. Adey
P2860
P2888
P304
P356
10.1038/NCLIMATE1760
P577
2012-12-09T00:00:00Z