Chronobiology Laboratory, Evolutionary and Organismal Biology Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore 560064, India.
J Insect Physiol. 2012 Feb;58(2):245-55. doi: 10.1016/j.jinsphys.2011.11.012. Epub 2011 Nov 25.
In Drosophila multiple circadian oscillators and behavioral rhythms are known to exist, yet most previous studies that attempted to understand circadian entrainment have focused on the activity/rest rhythm and to some extent the adult emergence rhythm. Egg laying behavior of Drosophila females also follows circadian rhythmicity and has been seen to deviate substantially from the better characterized rhythms in a few aspects. Here we report the findings of our study aimed at evaluating how circadian egg laying rhythm in fruit flies Drosophila melanogaster entrains to time cues provided by light and temperature. Previous studies have shown that activity/rest rhythm of flies entrains readily to light/dark (LD) and temperature cycles (TC). Our present study revealed that egg laying rhythm of a greater percentage of females entrains to TC compared to LD cycles. Therefore, in the specific context of our study this result can be taken to suggest that egg laying clocks of D. melanogaster entrains to TC more readily than LD cycles. However, when TC were presented along with out-of-phase LD cycles, the rhythm displayed two peaks, one occurring close to lights-off and the other near the onset of low temperature phase, indicating that upon entrainment by TC, LD cycles may be able to exert a greater influence on the phase of the rhythm. These results suggest that temperature and light associatively entrain circadian egg laying clocks of Drosophila.
在果蝇中,已知存在多个生物钟振荡器和行为节律,但大多数先前试图理解生物钟同步的研究都集中在活动/休息节律上,在某种程度上还集中在成年期出现节律上。果蝇雌性的产卵行为也遵循生物钟节律,并且在几个方面与特征更为明显的节律有很大差异。在这里,我们报告了我们的研究结果,旨在评估果蝇生物钟的产卵节律如何与光和温度提供的时间线索同步。先前的研究表明,果蝇的活动/休息节律很容易与光/暗(LD)和温度循环(TC)同步。我们目前的研究表明,与 LD 周期相比,更多比例的雌性产卵节律与 TC 同步。因此,在我们研究的具体背景下,这一结果可以表明,与 LD 周期相比,生物钟更容易与 TC 同步。然而,当 TC 与非同步的 LD 周期一起呈现时,节律显示出两个峰值,一个出现在熄灯附近,另一个出现在低温阶段开始附近,这表明在 TC 同步后,LD 周期可能对节律的相位施加更大的影响。这些结果表明,温度和光联合地使果蝇的生物钟同步。