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粗糙脉孢菌frq-9突变体中昼夜节律周期长度的温度补偿丧失。

Loss of temperature compensation of circadian period length in the frq-9 mutant of Neurospora crassa.

作者信息

Loros J J, Feldman J F

机构信息

Thimann Laboratories, University of California, Santa Cruz 95064.

出版信息

J Biol Rhythms. 1986 Fall;1(3):187-98. doi: 10.1177/074873048600100302.

Abstract

A new circadian clock mutant of Neurospora crassa has been isolated, whose most distinctive characteristic is the complete loss of temperature compensation of its period length. The Q10 of the period length was found to be equal to about 2 in the temperature range from 18 degrees to 30 degrees C. The period length was also found to be dependent on the composition of the medium, including the nature and concentration of both the carbon source and the nitrogen source. Although the rate of the clock and the growth rate were directly related when affected by varying the temperature, they were inversely related when altered by changing the composition of the medium. Therefore, the mutation has not simply coupled clock rate to growth rate in this strain. The mutation maps to the frq locus, where seven other clock mutations previously studied also map. Therefore, this mutant has been called frq-9. Since several of the other frq mutants show partial loss in temperature compensation, it is suggested that the frq gene or its product is closely related to the temperature compensation mechanism of the circadian clock of Neurospora.

摘要

已分离出一种新的粗糙脉孢菌昼夜节律钟突变体,其最显著的特征是其周期长度完全丧失温度补偿。在18摄氏度至30摄氏度的温度范围内,发现周期长度的Q10约等于2。还发现周期长度取决于培养基的成分,包括碳源和氮源的性质及浓度。尽管当时钟速率和生长速率受温度变化影响时呈直接相关,但当通过改变培养基成分而改变时,它们呈负相关。因此,在该菌株中,该突变并非简单地将时钟速率与生长速率联系起来。该突变定位于frq位点,之前研究的其他七个时钟突变也定位于此。因此,该突变体被称为frq - 9。由于其他几个frq突变体显示出温度补偿部分丧失,因此表明frq基因或其产物与粗糙脉孢菌昼夜节律钟的温度补偿机制密切相关。

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