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首页> 外文期刊>Functional Ecology >Differential plasticity of metabolic rate phenotypes in a tropical fish facing environmental change
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Differential plasticity of metabolic rate phenotypes in a tropical fish facing environmental change

机译:面对环境变化的热带鱼中代谢率表型的差异可塑性

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1. Individual differences in metabolic rate have been linked with variations in behaviour and key life-history traits and can affect ecological patterns within animal populations. Yet, almost nothing is known of the plasticity of the metabolic response under dynamically changing conditions that are representative of the natural environment. This is surprising since the capacity for animals to cope with rapidly changing environments depends on phenotypic variation and plasticity among members of the population. 2. We measured the standard metabolic rate (SMR), maximum metabolic rate (MMR) and aerobic scope (AS) of 60 juvenile barramundi (Lates calcarifer) under acclimation conditions (35ppt salinity, 29 degrees C, normoxia) and when the fish were sequentially faced with low salinity (10ppt), high temperature (35 degrees C) and hypoxia (45% air saturation) with each treatment separated by approximate to 12days. 3. The overall degree of interindividual variation in body-mass-standardised SMR, MMR and AS changed with environmental conditions, and a metabolic coupling was revealed between SMR and MMR when the fish were faced with the environmental changes. The metabolic response to environmental change differed widely and predictably at an individual level. Individuals that had elevated metabolic attributes under acclimation conditions showed little change in SMR, MMR or AS in response to low salinity and high temperature, but MMR and AS were greatly depressed by hypoxia. In contrast, individuals with low-metabolic attributes under acclimation conditions displayed a substantial increase in SMR, MMR and AS in response to high temperature and (to a lesser extent) low salinity, but hypoxia had very little effect. 4. These findings reveal how phenotypic diversity in key physiological traits can create differential plasticity towards environmental change within a population by showing how individual fish can remain metabolically insensitive to one environmental stressor at the cost of being highly sensitive to another.
机译:1.代谢率的个体差异与行为和主要生活史特征的变化有关,并可能影响动物种群的生态模式。然而,在代表自然环境的动态变化的条件下,几乎没有人知道代谢反应的可塑性。这是令人惊讶的,因为动物应对迅速变化的环境的能力取决于表型变异和种群成员之间的可塑性。 2.我们测量了在适应条件(35ppt盐度,29摄氏度,正常氧水平)下以及在鱼类生长的条件下,60只幼年尖吻鲈(Lates calcarifer)的标准代谢率(SMR),最大代谢率(MMR)和有氧范围(AS)。依次面对低盐度(10ppt),高温(35摄氏度)和缺氧(45%空气饱和度)的情况,每次处理间隔约12天。 3.身体质量标准化的SMR,MMR和AS个体间总体变化程度随环境条件而变化,当鱼类面对环境变化时SMR和MMR之间存在代谢耦合。对环境变化的代谢反应在个体水平上差异很大且可预测。在低盐度和高温下,在适应条件下具有较高代谢特性的个体的SMR,MMR或AS几乎没有变化,但缺氧会极大地抑制MMR和AS。相比之下,在高温条件下具有低代谢属性的个体在高温和低盐度下表现出SMR,MMR和AS的显着增加,但低氧影响很小。 4.这些发现揭示了关键生理性状的表型多样性如何通过显示单个鱼如何保持对一种环境应激物的代谢不敏感,而以对另一种环境应激物的高度敏感为代价,从而在种群内部产生差异的可塑性。

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