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Stability of Adult Emergence and Activity/Rest Rhythms in Fruit Flies Drosophila melanogaster under Semi-Natural Condition

机译:成虫羽化和活性稳定性/休息节律果蝇下半自然条件果蝇

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摘要

Here we report the results of a study aimed at examining stability of adult emergence and activity/rest rhythms under semi-natural conditions (henceforth SN), in four large outbred fruit fly Drosophila melanogaster populations, selected for emergence in a narrow window of time under laboratory (henceforth LAB) light/dark (LD) cycles. When assessed under LAB, selected flies display enhanced stability in terms of higher amplitude, synchrony and accuracy in emergence and activity rhythms compared to controls. The present study was conducted to assess whether such differences in stability between selected and control populations, persist under SN where several gradually changing time-cues are present in their strongest form. The study revealed that under SN, emergence waveform of selected flies was modified, with even more enhanced peak and narrower gate-width compared to those observed in the LAB and compared to control populations in SN. Furthermore, flies from selected populations continued to exhibit enhanced synchrony and accuracy in their emergence and activity rhythms under SN compared to controls. Further analysis of zeitgeber effects revealed that enhanced stability in the rhythmicity of selected flies under SN was primarily due to increased sensitivity to light because emergence and activity rhythms of selected flies were as stable as controls under temperature cycles. These results thus suggest that stability of circadian rhythms in fruit flies D. melanogaster, which evolved as a consequence of selection for emergence in a narrow window of time under weak zeitgeber condition of LAB, persists robustly in the face of day-to-day variations in cycling environmental factors of nature.
机译:在这里,我们报告了一项研究结果,该研究旨在检查在四个自然交配的果蝇果蝇(Drosophila melanogaster)种群中,在半自然条件下(以下简称SN),其成年和活动/休息节律的稳定性。实验室(此后称为LAB)亮/暗(LD)周期。在LAB评估下,与对照相比,所选果蝇在振幅,同步性以及出苗和活动节律的准确性方面表现出更高的稳定性。进行本研究是为了评估所选人群和对照人群之间稳定性的这种差异是否在SN下持续存在,SN以最强的形式出现几种逐渐变化的时间线索。研究表明,在SN中,与LAB中观察到的和与SN中的对照种群相比,选定果蝇的出现波形被修改,具有更大的峰值和更窄的门宽。此外,与对照组相比,来自部分种群的果蝇在SN下的出苗和活动节律继续表现出更高的同步性和准确性。对Zeitgeber效应的进一步分析显示,在SN下选定果蝇的节律性增强的稳定性主要归因于对光的敏感性增加,因为选定果蝇的出苗和活动节律在温度循环下与对照一样稳定。因此,这些结果表明,果蝇D. melanogaster的昼夜节律稳定性是由于在LAB弱zeitgeber条件下在狭窄的时间范围内选择出现而进化的结果,在面对日常变化的情况下仍能稳定地维持在自然环境的循环因素中。

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