首页> 外文期刊>Journal of Insect Physiology >Environmentally-induced modulations of developmental rates do not affect the selection-mediated changes in pre-adult development time of fruit flies Drosophila melanogaster.
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Environmentally-induced modulations of developmental rates do not affect the selection-mediated changes in pre-adult development time of fruit flies Drosophila melanogaster.

机译:环境诱导的发育速率调节不会影响果蝇果蝇的成虫发育前选择介导的变化。

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In a previous study we had shown that 55 generations of selection for faster egg-to-adult development in fruit flies Drosophila melanogaster results in shortening of pre-adult duration by ~29-h (~12.5%) and speeding-up of circadian clock period ( tau ) by ~0.5-h, implying a positive correlation between development time and tau . In Drosophila, change in ambient temperature is known to alter the rate of pre-adult development but not the speed of circadian clocks whereas 12:12-h warm/cold (WC) cycles are likely to alter both pre-adult development rate and tau (via entrainment). To study the effect of overall speeding-up/slowing-down of pre-adult development and circadian clocks on the selection-mediated difference in pre-adult development time, we subjected developing flies to the following conditions: (i) different ambient temperatures (18, 25 and 29 degrees C) under constant darkness (DD) to alter the rate of pre-adult development, or (ii) cyclic WC conditions (WC1-25:18 or WC2-29:25 degrees C) to alter rate of development and tau . The results revealed that the selected (FD) stocks develop faster than controls (BD) by ~52, 28 and 21-h, at 18, 25 and 29 degrees C, respectively, and by 28 and 26-h under WC1 and WC2, respectively. The tau of activity/rest rhythm decreased considerably at 18 degrees C but it did not differ between the FD and BD flies, which suggests a break-down of correlation between development time and tau , seen under their normal rearing conditions (constant darkness - DD at 25 degrees C). While the absolute difference in development time between FD and BD stocks increased or decreased under cooler or warmer conditions, the relative difference in their pre-adult development time remained largely unaltered. These results suggest that manipulations in ambient conditions independently changes development time and tau , resulting in a break-down of the genetic correlation between them.
机译:在先前的研究中,我们表明,果蝇经55代的选育可加快卵到成虫的发育,从而将果蝇的成虫前持续时间缩短了约29小时(约12.5%),并加快了昼夜节律。周期(tau)〜0.5-h,表明发育时间和tau之间呈正相关。在果蝇中,已知环境温度的变化会改变成年前的发育速度,但不会改变昼夜节律的速度,而12:12-h的暖/冷(WC)周期可能会改变成年前的发育速度和tau (通过引诱)。为了研究成年前发育和昼夜节律的整体加速/减速对选择介导的成年前发育时间差异的影响,我们使成蝇经历以下条件:(i)不同的环境温度( 18、25和29摄氏度)在恒定黑暗(DD)下改变成年前发育的速率,或(ii)周期性WC条件(WC1-25:18或WC2-29:25摄氏度)来改变成年速率发展与牛头人。结果表明,选定的(FD)种群在18、25和29摄氏度时分别比对照(BD)快约52、28和21小时,而在WC1和WC2下分别增长28和26小时,分别。活动/休息节律的tau在18摄氏度时显着下降,但FD和BD苍蝇之间没有差异,这表明在正常饲养条件下(恒定黑暗-DD),发育时间和tau之间的相关性被打破。在25摄氏度)。尽管在凉爽或温暖的条件下,FD和BD种群之间发育时间的绝对差异会增加或减少,但它们成年前发育时间的相对差异仍基本保持不变。这些结果表明,在环境条件下的操作独立地改变了发育时间和tau,导致它们之间的遗传相关性破裂。

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