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首页> 外文期刊>Evolutionary Ecology Research >The effect of developmental temperature fluctuation on wing traits and stressed locomotor performance in Drosophila melanogaster, and its dependence on heterozygosity
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The effect of developmental temperature fluctuation on wing traits and stressed locomotor performance in Drosophila melanogaster, and its dependence on heterozygosity

机译:发育温度波动对果蝇翅膀性状和应激运动能力的影响及其对杂合性的依赖性

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摘要

Background: Natural environments fluctuate and all organisms experience some degree of environmental variance. Global climate models predict increasing environmental variance in the future. Yet we do not fully understand how environmental variation affects performance traits. Questions: Does temperature fluctuation during development affect adult size and wing shape in Drosophila melanogasterl If so, are the effects predictable? Do they depend on heterozygosity? Do fluctuations in developmental temperature affect adult physiological performance at high temperature? Methods: We tested the effect of one fluctuating (21°C/29°C) and several constant (21°C, 23°C, 25°C, 27°C, 29°C) developmental temperature regimes on three wing morphometric traits(wing length, wing width, and wing shape) in an experiment using three inbred lines of D. melanogaster and their first-generation hybrids. We also tested the effect of fluctuating and constant developmental temperature on adult locomotor performance atseveral high and stressful test temperatures (32°C, 34°C, 36°C, 38°C, 40°C). Results: Performance mostly declined if the flies were reared under the fluctuating temperature regime versus the constant temperature regime with the same mean (25°C). Heterozygosity level also affected the traits investigated, with crossbreds usually having higher trait values. Crossbred genotypes compared across constant temperatures also showed greater plasticity in wing aspect. Conclusion: The widespread use of constant developmental temperatures in laboratory experiments may lead to overestimation of performance.
机译:背景:自然环境动荡,所有生物体都经历了一定程度的环境变化。全球气候模型预测未来环境变化会越来越大。但是我们还没有完全了解环境变化如何影响绩效特征。问题:发育过程中的温度波动会影响果蝇的成虫大小和机翼形状吗?如果是,这种影响是否可以预测?它们是否依赖杂合性?发育温度的波动会影响成人在高温下的生理表现吗?方法:我们测试了一种波动的温度(21°C / 29°C)和几种恒定的温度(21°C,23°C,25°C,27°C,29°C)对三个机翼形态特征的影响(使用翼龙D. melanogaster的三个近交系及其第一代杂种进行的实验)(翼长,翼宽和翼形)。我们还测试了在几个高和高压力测试温度(32°C,34°C,36°C,38°C,40°C)下波动和恒定的发育温度对成年运动能力的影响。结果:如果果蝇在波动的温度条件下与恒温条件下以相同的平均值(25°C)饲养,则性能大多下降。杂合度水平也影响所研究的性状,杂种通常具有较高的性状值。在恒定温度下比较的杂种基因型在机翼方面也显示出更大的可塑性。结论:在实验室实验中广泛使用恒定的发育温度可能会导致对性能的高估。

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