GSTDTAP  > 气候变化
DOI10.1111/gcb.13987
Antarctic emerald rockcod have the capacity to compensate for warming when uncoupled from CO2-acidification
Davis, Brittany E.1,2; Flynn, Erin E.1; Miller, Nathan A.1,3; Nelson, Frederick A.1,4; Fangue, Nann A.2; Todgham, Anne E.1
2018-02-01
发表期刊GLOBAL CHANGE BIOLOGY
ISSN1354-1013
EISSN1365-2486
出版年2018
卷号24期号:2页码:E655-E670
文章类型Article
语种英语
国家USA
英文摘要

Increases in atmospheric CO2 levels and associated ocean changes are expected to have dramatic impacts on marine ecosystems. Although the Southern Ocean is experiencing some of the fastest rates of change, few studies have explored how Antarctic fishes may be affected by co-occurring ocean changes, and even fewer have examined early life stages. To date, no studies have characterized potential trade-offs in physiology and behavior in response to projected multiple climate change stressors (ocean acidification and warming) on Antarctic fishes. We exposed juvenile emerald rockcod Trematomus bernacchii to three PCO2 treatments (similar to 450, similar to 850, and similar to 1,200 atm PCO2) at two temperatures (-1 or 2 degrees C). After 2, 7, 14, and 28 days, metrics of physiological performance including cardiorespiratory function (heart rate [f(H)] and ventilation rate [f(V)]), metabolic rate (MO2), and cellular enzyme activity were measured. Behavioral responses, including scototaxis, activity, exploration, and escape response were assessed after 7 and 14 days. Elevated PCO2 independently had little impact on either physiology or behavior in juvenile rockcod, whereas warming resulted in significant changes across acclimation time. After 14 days, f(H),f(V) and MO2 significantly increased with warming, but not with elevated PCO2. Increased physiological costs were accompanied by behavioral alterations including increased dark zone preference up to 14%, reduced activity by 12%, as well as reduced escape time suggesting potential trade-offs in energetics. After 28 days, juvenile rockcod demonstrated a degree of temperature compensation as f(V), MO2, and cellular metabolism significantly decreased following the peak at 14 days; however, temperature compensation was only evident in the absence of elevated PCO2. Sustained increases in f(V) and MO2 after 28 days exposure to elevated PCO2 indicate additive (f(V)) and synergistic (MO2) interactions occurred in combination with warming. Stressor-induced energetic trade-offs in physiology and behavior may be an important mechanism leading to vulnerability of Antarctic fishes to future ocean change.


英文关键词behavior cardiorespiratory physiology climate change metabolism ocean acidification polar temperature Trematomus bernacchii
领域气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000423994700023
WOS关键词ELEVATED CARBON-DIOXIDE ; OCEAN ACIDIFICATION ; CLIMATE-CHANGE ; TREMATOMUS-BERNACCHII ; NOTOTHENIOID FISH ; FORAGING BEHAVIOR ; RED DRUM ; THERMAL-ACCLIMATION ; HOMING ABILITY ; TEMPERATURE
WOS类目Biodiversity Conservation ; Ecology ; Environmental Sciences
WOS研究方向Biodiversity & Conservation ; Environmental Sciences & Ecology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/17049
专题气候变化
资源环境科学
作者单位1.Univ Calif Davis, Dept Anim Sci, Davis, CA 95616 USA;
2.Univ Calif Davis, Dept Wildlife Fish & Conservat Biol, Davis, CA 95616 USA;
3.San Francisco State Univ, Romberg Tiburon Ctr, Tiburon, CA USA;
4.Howard Univ, Dept Biol, Washington, DC 20059 USA
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GB/T 7714
Davis, Brittany E.,Flynn, Erin E.,Miller, Nathan A.,et al. Antarctic emerald rockcod have the capacity to compensate for warming when uncoupled from CO2-acidification[J]. GLOBAL CHANGE BIOLOGY,2018,24(2):E655-E670.
APA Davis, Brittany E.,Flynn, Erin E.,Miller, Nathan A.,Nelson, Frederick A.,Fangue, Nann A.,&Todgham, Anne E..(2018).Antarctic emerald rockcod have the capacity to compensate for warming when uncoupled from CO2-acidification.GLOBAL CHANGE BIOLOGY,24(2),E655-E670.
MLA Davis, Brittany E.,et al."Antarctic emerald rockcod have the capacity to compensate for warming when uncoupled from CO2-acidification".GLOBAL CHANGE BIOLOGY 24.2(2018):E655-E670.
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