缺氧和高温作为相互作用的应激源:在变化的世界中,可塑性会促进鱼类的恢复力吗?

IF 2.1 4区 生物学 Q2 BIOLOGY Biological Bulletin Pub Date : 2022-10-01 DOI:10.1086/722115
Madison L Earhart, Tessa S Blanchard, Adam A Harman, Patricia M Schulte
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引用次数: 7

摘要

摘要确定物种或种群对气候变化压力源的适应能力是一项重要但困难的任务,因为适应能力既受遗传变异的影响,也受各种类型的表型可塑性的影响。此外,大多数已知的有机体反应是孤立的单一压力源,但环境变化涉及多个环境因素的联合作用。在这里,我们的目标是总结已知的鱼类对高温和低氧(缺氧)组合在多个时间尺度下的表型可塑性,并询问在面对气候变化时可塑性可以提供多少弹性。相对而言,研究这些环境压力因素共同作用下的可塑性的研究较少;但现有的数据表明,尽管鱼类有一定的能力调整其表型,并通过适应或发育可塑性来补偿急性暴露于高温和缺氧的负面影响,但补偿通常只是部分的。对代际和跨代影响知之甚少,尽管对每一种压力源的单独研究表明,积极和消极的影响都可能发生。总的来说,这两种应激源对表型可塑性的反应能力在物种之间是高度可变的,并且极度依赖于实验的特定背景,包括应激源暴露的程度和时间。这种可塑性的性质和程度的可变性表明,随着气候变暖,现有的表型可塑性不太可能充分缓冲鱼类对高温和缺氧的综合压力。
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Hypoxia and High Temperature as Interacting Stressors: Will Plasticity Promote Resilience of Fishes in a Changing World?

AbstractDetermining the resilience of a species or population to climate change stressors is an important but difficult task because resilience can be affected both by genetically based variation and by various types of phenotypic plasticity. In addition, most of what is known about organismal responses is for single stressors in isolation, but environmental change involves multiple environmental factors acting in combination. Here, our goal is to summarize what is known about phenotypic plasticity in fishes in response to high temperature and low oxygen (hypoxia) in combination across multiple timescales, to ask how much resilience plasticity may provide in the face of climate change. There are relatively few studies investigating plasticity in response to these environmental stressors in combination; but the available data suggest that although fish have some capacity to adjust their phenotype and compensate for the negative effects of acute exposure to high temperature and hypoxia through acclimation or developmental plasticity, compensation is generally only partial. There is very little known about intergenerational and transgenerational effects, although studies on each stressor in isolation suggest that both positive and negative impacts may occur. Overall, the capacity for phenotypic plasticity in response to these two stressors is highly variable among species and extremely dependent on the specific context of the experiment, including the extent and timing of stressor exposure. This variability in the nature and extent of plasticity suggests that existing phenotypic plasticity is unlikely to adequately buffer fishes against the combined stressors of high temperature and hypoxia as our climate warms.

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来源期刊
Biological Bulletin
Biological Bulletin 生物-海洋与淡水生物学
CiteScore
3.30
自引率
6.20%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The Biological Bulletin disseminates novel scientific results in broadly related fields of biology in keeping with more than 100 years of a tradition of excellence. The Bulletin publishes outstanding original research with an overarching goal of explaining how organisms develop, function, and evolve in their natural environments. To that end, the journal publishes papers in the fields of Neurobiology and Behavior, Physiology and Biomechanics, Ecology and Evolution, Development and Reproduction, Cell Biology, Symbiosis and Systematics. The Bulletin emphasizes basic research on marine model systems but includes articles of an interdisciplinary nature when appropriate.
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