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Acclimation and acute temperature effects on population differences in oxidative phosphorylation

机译:驯化和急性温度对氧化磷酸化种群差异的影响

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摘要

Temperature changes affect metabolism on acute, acclamatory, and evolutionary time scales. To better understand temperature's affect on metabolism at these different time scales, we quantified cardiac oxidative phosphorylation (OxPhos) in three Fundulus taxa acclimated to 12 and 28°C and measured at three acute temperatures (12, 20, and 28°C). The Fundulus taxa (northern Maine and southern Georgia F. heteroclitus, and a sister taxa, F. grandis) were used to identify evolved changes in OxPhos. Cardiac OxPhos metabolism was quantified by measuring six traits: state 3 (ADP and substrate-dependent mitochondrial respiration); E state (uncoupled mitochondrial activity); complex I, II, and IV activities; and LEAK ratio. Acute temperature affected all OxPhos traits. Acclimation only significantly affected state 3 and LEAK ratio. Populations were significantly different for state 3. In addition to direct effects, there were significant interactions between acclimation and population for complex I and between population and acute temperature for state 3. Further analyses suggest that acclimation alters the acute temperature response for state 3, E state, and complexes I and II: at the low acclimation temperature, the acute response was dampened at low assay temperatures, and at the high acclimation temperature, the acute response was dampened at high assay temperatures. Closer examination of the data also suggests that differences in state 3 respiration and complex I activity between populations were greatest between fish acclimated to low temperatures when assayed at high temperatures, suggesting that differences between the populations become more apparent at the edges of their thermal range.
机译:温度变化会在急性,适应性和进化时间尺度上影响新陈代谢。为了更好地了解温度在这些不同时间尺度上对代谢的影响,我们量化了在三个急性温度(12、20和28°C)下测量的三个眼底单元中的心脏氧化磷酸化水平(OxPhos)。眼底类群(缅因州北部和佐治亚州南部杂种菊,以及姊妹类群F. grandis)被用来鉴定OxPhos的进化变化。心脏的OxPhos代谢通过测量六个特征来量化:状态3(ADP和依赖底物的线粒体呼吸); E状态(线粒体活性不相关);复杂的I,II和IV活动;和泄漏率。急性温度会影响所有OxPhos性状。适应只会显着影响状态3和LEAK比率。状态3的种群显着不同。除了直接影响,复杂I的适应与种群之间以及状态3的种群与急性温度之间存在显着的相互作用。进一步的分析表明,适应改变了状态3的急性温度响应状态,以及配合物I和II:在较低的适应温度下,低测定温度下的急性反应减弱,而在较高的适应温度下,较高的测定温度下,急性反应被减弱。仔细检查数据还可以发现,在高温条件下进行适应化处理的鱼类在高温下时,种群之间的状态3呼吸和复杂I活动的差异最大,这表明种群之间的差异在其热范围的边缘处更加明显。

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