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Two oscillators might control the locomotor activity rhythm of the high-altitude himalayan strain of Drosophila Helvetica

机译:两个振荡器可能控制果蝇Helvetica的高空喜马拉雅菌株的运动活动节律

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The properties of the pacemaker controlling the adult locomotor activity rhythm of the high-altitude Himalayan (haH) strain (Hemkund Sahib, 4121 in above sea level) of Drosophila helvetica are strikingly different from those of the low-altitude Himalayan (laH) strain (Birahi, 1132 in above sea level) of the same species. The haH strain has a unimodal activity pattern with a delayed peak occurring about 4.5 h after lights-on of the entraining light-dark (LD) cycle, while the laH strain has a bimodal activity pattern with the morning and evening peaks. It is rather unusual for a wild type strain of any Drosophila species to have a unimodal activity pattern during entrainment as observed in the haH strain. The single activity peak of the hahr strain is regarded as a consequence of delayed morning peak merging with the evening one. Three experiments were performed to test this hypothesis. The first experiment examined whether the single activity peak could be dissociated into two components by LD cycles in which photoperiods varied from 10 to 16 h per 24 h. The haH strain again exhibited a unimodal activity pattern with a delayed peak in 10, 12, and 14 h photoperiods but a bimodal activity pattern in 16 h photoperiod. The laH strain had bimodality in 10 and 12 It photoperiods, unimodality in a 14 h photoperiod, but complete arrhythmicity in a 16 h photoperiod. In the second experiment, the haH flies were transferred from LD 16:8 to LL at 5 lux to confirm whether the bimodality of this strain in LD 16:8 cycles was not the result of masking by the long photoperiod of 16 h. Bimodality of the haH strain persisted in LL too; moreover, the morning component free-ran with period (7) < 24 h, while the evening component free-ran with tau > 24 h. The third experiment examined the LL-induced splitting of activity peak of the haft strain. Flies were transferred from LD 12:12 cycles to LL at 0, 1, 5, and 15 lux. The haH strain was rhythmic in LL at 0 and I lux with a unimodal activity pattern. It was also rhythmic in LL at 5 lux, but the single activity peak was split into two discrete components; the morning component free-ran with tau < 24 h, while the evening component free-ran with tau > 24 h. This strain, however, was completely arrhythmic in LL at 15 lux. The laH strain was uniformly arrhythmic in LL at all levels of light intensity. These results suggest that the single but late activity component of the haH strain during entrainment appears
机译:控制果蝇高海拔喜马拉雅(haH)菌株(海姆肯德·萨希布(Hemkund Sahib,海拔4121以上))的成年运动能力节律的起搏器的特性与低海拔喜马拉雅(laH)菌株的起搏器显着不同(比拉希(Birahi,海拔1132)。 haH菌株具有单峰活动模式,在诱捕的明暗(LD)周期点亮后约4.5 h出现延迟峰,而laH菌株则具有早高峰和晚高峰的双峰活动模式。如在haH菌株中观察到的那样,任何果蝇物种的野生型菌株在夹带过程中具有单峰活性模式是非常不寻常的。 hahr菌株的单个活性峰被认为是延迟的早晨峰与晚上的峰合并的结果。进行了三个实验以检验该假设。第一个实验检查了单个活性峰是否可以通过LD循环分解为两个组分,其中LD周期每24 h从10到16 h不等。 haH菌株再次表现出单峰活性模式,在10、12和14 h光周期中出现峰延迟,而在16 h光周期中出现双峰活性模式。 laH菌株在10和12 It光周期中具有双峰性,在14 h光周期中具有单峰性,但在16 h光周期中具有完全心律失常。在第二个实验中,将haH蝇以5勒克斯从LD 16:8转移到LL,以确认该菌株在LD 16:8循环中的双峰性是否不是16 h长光周期掩盖的结果。 haH菌株的双峰性在LL中也持续存在。此外,早晨部分在周期(7)<24小时内自由运行,而晚上部分在tau> 24小时内自由运行。第三实验检查了LL诱导的柄菌株的活性峰分裂。将果蝇以0、1、5和15勒克斯从LD 12:12循环转移到LL。 haH菌株在LL在0和I lux时具有节律性,具有单峰活动模式。 LL在5 lux时也有节律,但单个活性峰分为两个离散成分;上午部分在tau <24 h时自由运行,而晚上部分在tau> 24 h时自由运行。但是,该菌株在15 lux的LL中完全没有心律不齐。在所有水平的光强度下,laH株在LL中均出现心律不齐。这些结果表明,在夹带过程中出现了haH菌株的单一但晚期活性成分

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