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本文引用的文献

1
Temperature Stress Causes Host Cell Detachment in Symbiotic Cnidarians: Implications for Coral Bleaching.温度胁迫导致共生刺胞动物宿主细胞脱离:对珊瑚白化的影响
Biol Bull. 1992 Jun;182(3):324-332. doi: 10.2307/1542252.
2
Spatial and temporal patterns of mass bleaching of corals in the Anthropocene.人类世珊瑚大规模白化的时空模式。
Science. 2018 Jan 5;359(6371):80-83. doi: 10.1126/science.aan8048.
3
Cascading effects of thermally-induced anemone bleaching on associated anemonefish hormonal stress response and reproduction.热诱导海葵白化对相关海葵鱼激素应激反应和繁殖的级联效应。
Nat Commun. 2017 Oct 10;8(1):716. doi: 10.1038/s41467-017-00565-w.
4
Tropical dead zones and mass mortalities on coral reefs.热带死亡区和珊瑚礁大规模死亡。
Proc Natl Acad Sci U S A. 2017 Apr 4;114(14):3660-3665. doi: 10.1073/pnas.1621517114. Epub 2017 Mar 20.
5
Global warming and recurrent mass bleaching of corals.全球变暖与珊瑚的反复大规模白化。
Nature. 2017 Mar 15;543(7645):373-377. doi: 10.1038/nature21707.
6
Reef fishes can recognize bleached habitat during settlement: sea anemone bleaching alters anemonefish host selection.珊瑚礁鱼类在定居时能够识别白化栖息地:海葵白化会改变小丑鱼的宿主选择。
Proc Biol Sci. 2016 May 25;283(1831). doi: 10.1098/rspb.2015.2694.
7
The determination of standard metabolic rate in fishes.鱼类标准代谢率的测定
J Fish Biol. 2016 Jan;88(1):81-121. doi: 10.1111/jfb.12845.
8
Ecophysiology. Climate change tightens a metabolic constraint on marine habitats.生态生理学。气候变化使海洋生境的代谢约束更加紧张。
Science. 2015 Jun 5;348(6239):1132-5. doi: 10.1126/science.aaa1605.
9
Aerobic scope measurements of fishes in an era of climate change: respirometry, relevance and recommendations.鱼类在气候变化时代的需氧量范围测量:呼吸测量法、相关性和建议。
J Exp Biol. 2013 Aug 1;216(Pt 15):2771-82. doi: 10.1242/jeb.084251.
10
Repeatability of standard metabolic rate, active metabolic rate and aerobic scope in young brown trout during a period of moderate food availability.在中等食物可获得期内,年轻褐鳟标准代谢率、活跃代谢率和有氧范围的可重复性。
J Exp Biol. 2011 May 15;214(Pt 10):1668-75. doi: 10.1242/jeb.054205.

海葵白化会增加共生海葵鱼的代谢需求。

Anemone bleaching increases the metabolic demands of symbiont anemonefish.

机构信息

Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Graham Kerr Building, Glasgow G12 8QQ, UK

CRIOBE USR 3278 EPHE-CNRS-UPVD PSL, BP 1013 Moorea, 98729, French Polynesia.

出版信息

Proc Biol Sci. 2018 Apr 11;285(1876). doi: 10.1098/rspb.2018.0282.

DOI:10.1098/rspb.2018.0282
PMID:29643214
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5904320/
Abstract

Increased ocean temperatures are causing mass bleaching of anemones and corals in the tropics worldwide. While such heat-induced loss of algal symbionts (zooxanthellae) directly affects anemones and corals physiologically, this damage may also cascade on to other animal symbionts. Metabolic rate is an integrative physiological trait shown to relate to various aspects of organismal performance, behaviour and locomotor capacity, and also shows plasticity during exposure to acute and chronic stressors. As climate warming is expected to affect the physiology, behaviour and life history of animals, including ectotherms such as fish, we measured if residing in bleached versus unbleached sea anemones () affected the standard (i.e. baseline) metabolic rate and behaviour (activity) of juvenile orange-fin anemonefish () Metabolic rate was estimated from rates of oxygen uptake [Formula: see text], and the standard metabolic rate [Formula: see text] of anemonefish from bleached anemones was significantly higher by 8.2% compared with that of fish residing in unbleached anemones, possibly due to increased stress levels. Activity levels did not differ between fish from bleached and unbleached anemones. As [Formula: see text] reflects the minimum cost of living, the increased metabolic demands may contribute to the negative impacts of bleaching on important anemonefish life history and fitness traits observed previously (e.g. reduced spawning frequency and lower fecundity).

摘要

海洋温度升高正在导致全球热带地区的海葵和珊瑚大规模白化。虽然这种热诱导的藻类共生体(虫黄藻)损失直接影响海葵和珊瑚的生理机能,但这种损害也可能会扩散到其他动物共生体。代谢率是一种综合生理特征,与生物体的表现、行为和运动能力的各个方面有关,并且在暴露于急性和慢性应激源时也表现出可塑性。由于预计气候变暖将影响包括鱼类等变温动物在内的动物的生理机能、行为和生活史,我们测量了生活在白化和未白化海葵中的海葵鱼()是否会影响幼年橙色 fin 海葵鱼()的标准(即基线)代谢率和行为(活动)。代谢率是通过氧气摄取率[公式:见文本]来估算的,与生活在未白化海葵中的鱼类相比,白化海葵中的海葵鱼的标准代谢率[公式:见文本]高出 8.2%,这可能是由于压力水平升高所致。白化和未白化海葵中的鱼类的活动水平没有差异。由于[公式:见文本]反映了最低的生活成本,因此增加的代谢需求可能会导致白化对先前观察到的重要海葵鱼生活史和适应度特征的负面影响(例如,产卵频率降低和生育率降低)。