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Cryptochrome-positive and -negative clock neurons in drosophila entrain differentially to light and temperature

机译:果蝇中隐花色素阳性和阴性时钟神经元对光和温度的差异吸收

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The blue-light photoreceptive protein Cryptochrome (CRY) plays an important role in the light synchronization of the Drosophila circadian clock. Previously, we found that among the approximately 150 clock neurons, many but not all neurons express CRY. We speculated that the CRY-positive pacemaker neurons may be especially important for light entrainment, whereas the CRY-negative neurons may be important for other environmental cues, for example, temperature. To investigate this hypothesis, we tested the entrainability of the clock neurons to out-of-phase light and temperature cycles. When light-dark or light-dim light cycles were shifted by 12 h with respect to temperature cycles, behavioral rhythms of wild-type flies were re-entrained by the light cycles. In this condition, we found that TIMELESS (TIM) level was strongly influenced by the temperature cycles in many CRY-negative clock neurons, suggesting that the CRY-negative neurons have higher sensitivity to temperature. Under the same conditions, cry-null mutants entrained to the temperature cycles or very slowly re-entrained to light-dark cycles. Our results suggest that there are 2 types of clock neurons having differential sensitivities to light and temperature, and CRY is a key component for the preferential entrainment to light.
机译:蓝光感光蛋白隐色素(CRY)在果蝇生物钟的光同步中起重要作用。以前,我们发现在大约150个时钟神经元中,许多但不是全部神经元都表达CRY。我们推测,CRY阳性起搏器神经元对于光的夹带可能尤其重要,而CRY阴性的神经元对其他环境线索(例如温度)可能很重要。为了研究这个假设,我们测试了时钟神经元对异相光和温度循环的可携带性。当相对于温度周期将明暗或明暗光周期改变12小时时,野生型果蝇的行为节律被光周期重新夹带。在这种情况下,我们发现TIMELESS(TIM)水平受许多CRY阴性时钟神经元的温度周期的强烈影响,这表明CRY阴性神经元对温度的敏感性更高。在相同条件下,null-null突变体被夹带到温度循环中,或者非常缓慢地被重新夹带到明暗循环中。我们的结果表明,有两种类型的时钟神经元对光和温度具有不同的敏感性,而CRY是优先夹带光的关键成分。

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