High latitude fish in a high CO2 world: Synergistic effects of elevated temperature and carbon dioxide on the metabolic rates of Antarctic notothenioids.
about
Ocean acidification exerts negative effects during warming conditions in a developing Antarctic fish.Transcriptome wide analyses reveal a sustained cellular stress response in the gill tissue of Trematomus bernacchii after acclimation to multiple stressors.De novo assembly and characterization of tissue specific transcriptomes in the emerald notothen, Trematomus bernacchiiPlastic and evolutionary responses to climate change in fishAre global warming and ocean acidification conspiring against marine ectotherms? A meta-analysis of the respiratory effects of elevated temperature, high CO2 and their interaction.Abiotic versus biotic drivers of ocean pH variation under fast sea ice in McMurdo Sound, Antarctica.Mitochondrial acclimation capacities to ocean warming and acidification are limited in the antarctic Nototheniid Fish, Notothenia rossii and Lepidonotothen squamifrons.Peroxiredoxin 6 from the Antarctic emerald rockcod: molecular characterization of its response to warming.Effect of elevated carbon dioxide on shoal familiarity and metabolism in a coral reef fishAcid-base physiology, neurobiology and behaviour in relation to CO2-induced ocean acidification.Effects of ocean acidification on embryonic respiration and development of a temperate wrasse living along a natural CO2 gradient.Elevated CO2 increases energetic cost and ion movement in the marine fish intestineImpact of ocean acidification on the hypoxia tolerance of the woolly sculpin, Clinocottus analis.Effects of warming rate, acclimation temperature and ontogeny on the critical thermal maximum of temperate marine fish larvae.Synergistic effects of acute warming and low pH on cellular stress responses of the gilthead seabream Sparus aurata.The effects of elevated temperature and ocean acidification on the metabolic pathways of notothenioid fish.Thermal windows and metabolic performance curves in a developing Antarctic fish.Experimental methods in aquatic respirometry: the importance of mixing devices and accounting for background respiration.Antarctic emerald rockcod have the capacity to compensate for warming when uncoupled from CO2 -acidification.Modelling climate change impacts on marine fish populations: process-based integration of ocean warming, acidification and other environmental driversTemperature-dependent metabolism in Antarctic fish: Do habitat temperature conditions affect thermal tolerance ranges?
P2860
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P2860
High latitude fish in a high CO2 world: Synergistic effects of elevated temperature and carbon dioxide on the metabolic rates of Antarctic notothenioids.
description
2012 nî lūn-bûn
@nan
2012年の論文
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2012年学术文章
@wuu
2012年学术文章
@zh
2012年学术文章
@zh-cn
2012年学术文章
@zh-hans
2012年学术文章
@zh-my
2012年学术文章
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2012年學術文章
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2012年學術文章
@zh-hant
name
High latitude fish in a high C ...... es of Antarctic notothenioids.
@en
High latitude fish in a high C ...... es of Antarctic notothenioids.
@nl
type
label
High latitude fish in a high C ...... es of Antarctic notothenioids.
@en
High latitude fish in a high C ...... es of Antarctic notothenioids.
@nl
prefLabel
High latitude fish in a high C ...... es of Antarctic notothenioids.
@en
High latitude fish in a high C ...... es of Antarctic notothenioids.
@nl
P2093
P1476
High latitude fish in a high C ...... es of Antarctic notothenioids.
@en
P2093
Laura A Enzor
Mackenzie L Zippay
Sean P Place
P304
P356
10.1016/J.CBPA.2012.07.016
P577
2012-08-03T00:00:00Z