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粗糙脉孢菌的昼夜节律:一个影响温度补偿的突变

Circadian rhythms in Neurospora crassa: a mutation affecting temperature compensation.

作者信息

Mattern D L, Forman L R, Brody S

出版信息

Proc Natl Acad Sci U S A. 1982 Feb;79(3):825-9. doi: 10.1073/pnas.79.3.825.

Abstract

The circadian rhythm of conidiation (spore formation) in Neurospora crassa is known to be temperature compensated, that is, the period is only slightly affected by the incubation temperature. Thus, the Q10 (the relative rate enhancement corresponding to a 10 degrees C rise in temperature) of the rhythm of the bd csp strain from 14 to 30 degrees C was 1.1, whereas the Q10 of the uncompensated growth rate in the same interval was 2.4. A mutation at the cel locus resulted in loss of the temperature-compensation property in cultures grown below 22 degrees C. The Q10 of the rhythm below 22 degrees C was 2.2, and periods of about 40 hr were observed. In contrast, the Q10 of the rhythm above 22 degrees C was 1.1, with circadian periods of 18-21 hr. Thus, cel displayed a threshold temperature or "break point" for the temperature compensation of its rhythm. Supplementation of cel strains, which require fatty acids, with unsaturated or short-chain fatty acids raised the threshold temperature to 26 degrees C, whereas supplementation with long-chain saturated fatty acids lowered it to 18 degrees C. These data suggest a role for fatty acids, as liquid components or as cellular metabolites, in the mechanism of temperature compensation.

摘要

粗糙脉孢菌产孢(孢子形成)的昼夜节律已知是温度补偿性的,也就是说,周期仅受培养温度的轻微影响。因此,bd csp菌株的节律在14至30摄氏度范围内的Q10(对应于温度升高10摄氏度的相对速率增强)为1.1,而相同区间内未补偿的生长速率的Q10为2.4。cel位点的突变导致在22摄氏度以下培养的菌株丧失温度补偿特性。在22摄氏度以下,节律的Q10为2.2,观察到周期约为40小时。相比之下,在22摄氏度以上,节律的Q10为1.1,昼夜周期为18 - 21小时。因此,cel在其节律的温度补偿方面表现出一个阈值温度或“断点”。用不饱和或短链脂肪酸补充需要脂肪酸的cel菌株,可将阈值温度提高到26摄氏度,而用长链饱和脂肪酸补充则将其降低到18摄氏度。这些数据表明脂肪酸作为液体成分或细胞代谢产物在温度补偿机制中发挥作用。

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