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粗糙脉孢菌生物钟生长缓慢突变体的遗传和生理特征

Genetic and physiological characteristics of a slow-growing circadian clock mutant of Neurospora crassa.

作者信息

Feldman J F, Atkinson C A

出版信息

Genetics. 1978 Feb;88(2):255-65. doi: 10.1093/genetics/88.2.255.

Abstract

A circadian clock mutant of Neurospora crassa with a period length of about 25.8 hours (4 hr longer than wild type) has been isolated after mutagenesis of the band strain. This mutant, called frq-5, segregates as a single nuclear gene, maps near the centromere on linkage group III, and is unlinked to four previously described clock mutants clustered on linkage group VII R (Feldman and Hoyle 1973, 1976). frq-5 differs from the other clock mutants in at least two other respects: (1) it is recessive in heterokaryons, and (2) it grows at about 60% the rate of the parent band strain on both minimal and complete media. Double mutants between frq-5 and each of the other clock mutants show additivity of period length--two long period mutants produce a double mutant whose period length is longer than either of the two single mutants, while a long and a short period double mutant has an intermediate period length. Although slow growth and long periodicity of frq-5 have segregated together among more than 300 progeny, slow growth per se is not responsible for the long period, since all the double mutants have the slow growth characteristic of frq-5, but have period lengths both shorter and longer than wild type.

摘要

在用条带菌株诱变后,分离出了一种粗糙脉孢菌的昼夜节律时钟突变体,其周期长度约为25.8小时(比野生型长4小时)。这个突变体称为frq - 5,作为一个单基因进行分离,定位于连锁群III的着丝粒附近,并且与连锁群VII R上聚集的四个先前描述的时钟突变体不连锁(费尔德曼和霍伊尔,1973年,1976年)。frq - 5在至少其他两个方面与其他时钟突变体不同:(1)它在异核体中是隐性的,(2)它在基本培养基和完全培养基上的生长速度约为亲本条带菌株的60%。frq - 5与其他每个时钟突变体之间的双突变体显示周期长度具有加和性——两个长周期突变体产生一个双突变体,其周期长度比两个单突变体中的任何一个都长,而一个长周期和一个短周期双突变体具有中间周期长度。尽管在300多个后代中,frq - 5的生长缓慢和长周期一直是一起分离的,但生长缓慢本身并不是导致长周期的原因,因为所有双突变体都具有frq - 5的生长缓慢特征,但周期长度既有比野生型短的,也有比野生型长的。

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本文引用的文献

1
Effects of medium composition and carbon dioxide on circadian conidiation in neurospora.
Plant Physiol. 1972 Jul;50(1):171-5. doi: 10.1104/pp.50.1.171.
2
Circadian rhythms and the circadian organization of living systems.
Cold Spring Harb Symp Quant Biol. 1960;25:159-84. doi: 10.1101/sqb.1960.025.01.015.
3
Mutants of the biological clock in Chlamydomonas reinhardi.
Genetics. 1972 Apr;70(4):537-48. doi: 10.1093/genetics/70.4.537.

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