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与果蝇周期基因融合的可诱导启动子有条件地挽救了成年周期基因突变体的心律失常。

An inducible promoter fused to the period gene in Drosophila conditionally rescues adult per-mutant arrhythmicity.

作者信息

Ewer J, Rosbash M, Hall J C

机构信息

Department of Biology, Brandeis University, Waltham, Massachusetts 02254.

出版信息

Nature. 1988 May 5;333(6168):82-4. doi: 10.1038/333082a0.

Abstract

The period (per) gene of Drosophila melanogaster is involved in the expression of circadian rhythms of locomotor activity in adult flies. Molecular studies of per (reviewed in ref. 2) have shown that the transcribed and translated products of this gene are present primarily at the embryonic, pupal and adult stages. Here we describe experiments with arrhythmic per mutants bearing an inducible form of this gene which indicate that strongly rhythmic adult behaviour can be obtained only if per expression is induced in the adult, independent of its history of expression earlier in development. Thus per-mutant locomotor-activity phenotypes seem not to result from abnormalities in the development of neural structures or in physiological processes that may be required at pre-adult stages for the expression of this circadian rhythm. Moreover, the action of per after light:dark cycle entrainment seems to be sufficient for activity rhythms to be exhibited in constant darkness; this suggests further that the per product is required only during the time that the rhythmic behaviour is being manifested. Our strategy used a heat-shock gene promotor fused to per coding sequences to obtain conditional gene expression. Heat-shock promoter-driven genes have previously been used to study the mode of action and tissue specificity of a variety of Drosophila genes; our experiments on circadian rhythms demonstrate the use of such gene constructions for the temporal manipulation of genes whose phenotypes, behavioural and otherwise, affect whole organisms.

摘要

黑腹果蝇的周期(per)基因参与成年果蝇运动活动昼夜节律的表达。对per基因的分子研究(参考文献2中有综述)表明,该基因的转录和翻译产物主要存在于胚胎、蛹和成虫阶段。在这里,我们描述了对带有该基因可诱导形式的无节律per突变体进行的实验,这些实验表明,只有在成年期诱导per表达,才能获得强烈的节律性成年行为,而与该基因在发育早期的表达历史无关。因此,per突变体的运动活动表型似乎不是由神经结构发育异常或成年前阶段表达这种昼夜节律可能需要的生理过程异常导致的。此外,在光暗周期同步化后per的作用似乎足以使活动节律在持续黑暗中表现出来;这进一步表明,per产物只在节律性行为表现的时间段内是必需的。我们的策略是使用与per编码序列融合的热休克基因启动子来获得条件性基因表达。热休克启动子驱动的基因此前已被用于研究多种果蝇基因的作用模式和组织特异性;我们关于昼夜节律的实验证明了这种基因构建可用于对其表型(行为型及其他类型)会影响整个生物体的基因进行时间调控。

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