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实验性黑腹果蝇种群中跨相反热环境的平行性状适应

Parallel trait adaptation across opposing thermal environments in experimental Drosophila melanogaster populations.

作者信息

Tobler Ray, Hermisson Joachim, Schlötterer Christian

机构信息

Institut für Populationsgenetik, Vetmeduni Vienna, Veterinärplatz 1, Vienna, A-1210, Austria.

Vienna Graduate School of Population Genetics, Vetmeduni Vienna, Veterinärplatz 1, Vienna, A-1210, Austria.

出版信息

Evolution. 2015 Jul;69(7):1745-59. doi: 10.1111/evo.12705. Epub 2015 Jul 14.

Abstract

Thermal stress is a pervasive selective agent in natural populations that impacts organismal growth, survival, and reproduction. Drosophila melanogaster exhibits a variety of putatively adaptive phenotypic responses to thermal stress in natural and experimental settings; however, accompanying assessments of fitness are typically lacking. Here, we quantify changes in fitness and known thermal tolerance traits in replicated experimental D. melanogaster populations following more than 40 generations of evolution to either cyclic cold or hot temperatures. By evaluating fitness for both evolved populations alongside a reconstituted starting population, we show that the evolved populations were the best adapted within their respective thermal environments. More strikingly, the evolved populations exhibited increased fitness in both environments and improved resistance to both acute heat and cold stress. This unexpected parallel response appeared to be an adaptation to the rapid temperature changes that drove the cycling thermal regimes, as parallel fitness changes were not observed when tested in a constant thermal environment. Our results add to a small, but growing group of studies that demonstrate the importance of fluctuating temperature changes for thermal adaptation and highlight the need for additional work in this area.

摘要

热应激是自然种群中一种普遍存在的选择因子,它会影响生物体的生长、生存和繁殖。黑腹果蝇在自然和实验环境中对热应激表现出多种假定的适应性表型反应;然而,通常缺乏对适应性的相应评估。在这里,我们对经过40多代循环冷或热温度进化的重复实验黑腹果蝇种群的适应性变化和已知的热耐受性特征进行了量化。通过评估进化种群与重组起始种群的适应性,我们表明进化种群在各自的热环境中适应性最佳。更引人注目的是,进化种群在两种环境中都表现出适应性增强,并且对急性热应激和冷应激的抵抗力也有所提高。这种意想不到的平行反应似乎是对驱动循环热环境的快速温度变化的一种适应,因为在恒定热环境中测试时未观察到平行的适应性变化。我们的研究结果补充了一小部分但数量不断增加的研究,这些研究证明了温度波动变化对热适应的重要性,并强调了在该领域开展更多工作的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9683/4755034/d9ecc8ba3da8/EVO-69-1745-g001.jpg

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