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Fully Codon-Optimized luciferase Uncovers Novel Temperature Characteristics of the Neurospora Clock

机译:完全密码子优化的萤光素酶揭示了神经孢子钟的新型温度特征

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We report the complete reconstruction of the firefly luciferase gene, fully codon optimized for expression in Neurospora crassa. This reporter enhances light output by approximately 4 log orders over that with previously available versions, now producing light that is visible to the naked eye and sufficient for monitoring the activities of many poorly expressed genes. Time lapse photography of strains growing in race tubes, in which the frq or eas/ccg-2 promoter is used to drive luciferase, shows the highest levels of luciferase activity near the growth front and newly formed conidial bands. Further, we have established a sorbose medium colony assay that will facilitate luciferase-based screens. The signals from sorbose-grown colonies of strains in which the frq promoter drives luciferase exhibit the properties of circadian rhythms and can be tracked for many days to weeks. This reporter now makes it possible to follow the clock in real time, even in strains or under conditions in which the circadian rhythm in conidial banding is not expressed. This property has been used to discover short, ca. 15-h period rhythms at high temperatures, at which banding becomes difficult to observe in race tubes, and to generate a high-resolution temperature phase-response curve.
机译:我们报告了萤火虫萤光素酶基因的完全重建,该基因完全密码子优化用于 Neurospora crassa 中的表达。与以前的版本相比,该报告基因将光输出提高了约4个对数级,现在产生的光对肉眼可见,足以监视许多表达不良的基因的活性。竞赛管中生长的菌株的延时摄影,其中使用 frq eas / ccg-2 启动子驱动荧光素酶。靠近生长前沿和新形成的分生孢子带的荧光素酶活性最高。此外,我们已经建立了可促进基于荧光素酶的筛选的山梨糖培养基菌落测定。来自 frq 启动子驱动荧光素酶的菌株的山梨糖生长菌落的信号具有昼夜节律的特性,可以跟踪许多天到几周。现在,即使在菌株中或在未显示分生孢子带的昼夜节律的条件下,记者也可以实时跟踪时钟。此属性已用于发现短约ca。高温下15小时周期节律,在此情况下,在竞赛管中很难观察到条带,并产生高分辨率的温度相位响应曲线。

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