首页> 外文期刊>Journal of Insect Physiology >A nondiapausing variant of the flesh fly, Sarcophaga bullata, that shows arrhythmic adult eclosion and elevated expression of two circadian clock genes, period and timeless
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A nondiapausing variant of the flesh fly, Sarcophaga bullata, that shows arrhythmic adult eclosion and elevated expression of two circadian clock genes, period and timeless

机译:蝇蝇的非致死变体,Sarcophaga bullata,显示心律不齐的成虫羽化和两个昼夜节律基因的表达升高,即周期和永恒

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摘要

We describe a variant of the flesh fly, Sarcophaga bullata, which fails to enter pupal diapause in response to short daylength and low temperatures. This fly also has an arrhythmic adult eclosion pattern: rather than eclosing in early photophase, the variant ecloses arrhythmically throughout the photophase and scotophase. The loss of both diapause (photoperiodic response) and the gating of adult eclosion (presumably a circadian response) suggests that the same clock system is involved in these two responses. An examination of the expression patterns of the clock genes period and timeless demonstrates that both genes are present in the nondiapausing variant, but surprisingly, both genes are expressed at higher levels. This abnormality we observe, possibly the consequence of an upstream clock gene malfunction or a malfunction of the autoregulatory loop, results in disruption of a component of the clock system that is apparently needed for both photoperiodism and circadian rhythmicity.
机译:我们描述了一个果蝇的变种,Sarcophaga bullata,它不能响应短日照和低温而进入p滞育期。该蝇还具有心律失常的成虫羽化模式:该变种不是在早期的光合作用阶段就闭合,而是在整个光合作用阶段和暗合阶段都进行了心律失常闭合。滞育(光周期反应)和成年脱落的门控(大概是昼夜节律反应)的丧失表明,这两种反应都涉及相同的时钟系统。对时钟基因周期和永恒的表达模式的检查表明,这两个基因都存在于非停滞变体中,但令人惊讶的是,这两个基因均以更高的水平表达。我们观察到这种异常,可能是上游时钟基因故障或自动调节回路故障的结果,导致时钟周期的一个组件的破坏,这显然是光周期和昼夜节律所必需的。

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