首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Circadian clock genes frequency and white collar-1 are not essential for entrainment to temperature cycles in Neurospora crassa
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Circadian clock genes frequency and white collar-1 are not essential for entrainment to temperature cycles in Neurospora crassa

机译:昼夜节律基因频率和白领1并不是神经孢菌中夹带温度循环的必要条件

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摘要

The fungus Neurospora crassa is a model system for investigating the mechanism of circadian rhythmicity, and the core of its circadian oscillator is thought to be a transcription/translation feedback loop involving the products of the frq (frequency), wc-1 (white-collar-1) and wc-2 (white-collar-2) genes. Several reports of rhythmicity in frq and wc null mutants have raised questions about how central the FRQ/WC loop is to the circadian system of Neurospora. Several research groups have attempted to answer this question by looking for entrainment of the conidiation banding rhythm in frq null mutants. Because the frq mutants are blind to light and cannot be entrained to light/dark cycles, these groups have used symmetric temperature cycles of equal-duration cool and warm phases to entrain the rhythm. Under these conditions, the direct effects of temperature on conidiation (masking effects) can compromise observations of the endogenous rhythm. I have reexamined this question by using short heat pulses to clearly separate masking from endogenous rhythms, and I have assayed entrainment in both frq and wc-1 null mutants. I found similar patterns of entrainment in the wild type and both mutant strains. Strong masking effects were found in the frq mutant but not in the wc-1 mutant. I conclude that a rapidly damping temperature-entrainable oscillator is present in the null mutants. A single temperature-entrainable oscillator may drive the conidiation rhythm in all strains, and additional properties such as light sensitivity and temperature compensation may be conferred by the intact FRQ/WC loop in the WT strain.
机译:真菌Neurospora crassa是研究昼夜节律机制的模型系统,其昼夜节律振荡器的核心被认为是转录/翻译反馈回路,涉及frq(频率),wc-1(白领)的乘积。 -1)和wc-2(white-collar-2)基因。关于frq和wc null突变体的节律性的一些报道提出了关于FRQ / WC循环在Neurospora昼夜节律系统中的中心位置的疑问。几个研究小组试图通过在frq null突变体中寻找伴生带状节律来回答这个问题。由于frq突变体对光不了解,不能被光/暗周期所带走,因此这些群体已使用相等时间的凉爽和暖相的对称温度周期来带动节奏。在这些条件下,温度对分娩的直接影响(掩盖效应)会损害对内源性节律的观察。我已经通过使用短时热脉冲来清楚地将掩盖与内源性节律分开来重新审视了这个问题,并且我分析了frq和wc-1无效突变体的携带情况。我在野生型和两个突变株中都发现了相似的夹带模式。在frq突变体中发现了很强的掩盖作用,而在wc-1突变体中却没有。我得出的结论是,在无效突变体中存在一个快速阻尼的温度可携振荡器。单个可携带温度的振荡器可以驱动所有菌株的分娩节律,而WT菌株中完整的FRQ / WC回路可以赋予其他特性,例如光敏性和温度补偿。

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