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自然热条件下评估黑腹果蝇运动活性遗传参数的昼夜变化。

Diurnal variation in genetic parameters for locomotor activity in Drosophila melanogaster assessed under natural thermal conditions.

机构信息

Department of Chemistry and Bioscience, Aalborg University, Aalborg, Denmark.

Department of Health Science and Technology, Aalborg University, Aalborg, Denmark.

出版信息

J Evol Biol. 2024 Mar 1;37(3):336-345. doi: 10.1093/jeb/voae020.

Abstract

In nature, organisms are exposed to variable and occasionally stressful environmental conditions. Responses to diurnal and seasonal fluctuations, such as temperature and food accessibility, involve adaptive behavioural and physiological changes. While much work has been done on understanding the genetic architecture and evolutionary potential of stress tolerance traits under constant thermal conditions, there has been less focus on the quantitative genetic background in variable environments. In this study, we use the Drosophila Genetic Reference Panel (DGRP) to investigate the locomotor activity, a key behavioural trait, under variable natural thermal conditions during the summer in a temperate environment. Male flies from 100 DGRP lines were exposed to natural thermal and light conditions in Drosophila activity monitors across three experimental days. We found that activity was highly temperature and time dependent and varied between lines both within and between days. Furthermore, we observed variation in genetic and environmental variance components, with low to moderate estimates of the heritability for locomotor activity, consistently peaking in the afternoons. Moreover, we showed that the estimated genetic correlations of locomotor activity between two time points decreased, as the absolute differences in ambient temperature increased. In conclusion, we find that the genetic background for locomotor activity is environment specific, and we conclude that more variable and unpredictable future temperatures will likely have a strong impact on the evolutionary trajectories of behavioural traits in ectotherms.

摘要

在自然界中,生物体暴露于多变且偶尔充满压力的环境条件下。生物体对昼夜和季节性波动(如温度和食物可获得性)的反应涉及适应性的行为和生理变化。虽然已经做了大量工作来了解恒温条件下耐受压力特质的遗传结构和进化潜力,但对变环境下的数量遗传背景关注较少。在这项研究中,我们使用果蝇遗传参考面板(DGRP)来研究在温带环境中夏季的自然变热条件下,运动活性这一关键行为特征。在三个实验日期间,100 条 DGRP 系的雄性果蝇在果蝇活动监测器中暴露于自然热和光照条件下。我们发现,活动高度依赖于温度和时间,并且在不同天和不同系之间存在差异。此外,我们观察到遗传和环境方差分量的变化,运动活性的遗传力估计值较低到中等,始终在下午达到峰值。此外,我们表明,随着环境温度的绝对差异增加,两个时间点之间运动活性的遗传相关性估计值降低。总之,我们发现运动活性的遗传背景是特定于环境的,我们得出结论,更具变异性和不可预测性的未来温度可能会对变温动物行为特征的进化轨迹产生强烈影响。

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