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粗糙脉孢菌中硝酸盐同化作用的调控:nmr-1突变体的分离与遗传分析

The regulation of nitrate assimilation in Neurospora crassa: the isolation and genetic analysis of nmr-1 mutants.

作者信息

Tomsett A B, Dunn-Coleman N S, Garrett R H

出版信息

Mol Gen Genet. 1981;182(2):229-33. doi: 10.1007/BF00269662.

Abstract

Four mutants of Neurospora crassa have been isolated which have altered regulation of nitrate reductase. They each carry a mutation which results in derepressed synthesis of nitrate reductase even in the presence of glutamine. They map to a single locus which has been designated nmr-1 and which is located between am and gln on linkage group VR. The mutations appear to affect only nitrate assimilation. The nit-2, nit-3 and nit-4/5 mutations are epistatic to nmr-1 since the double mutants have the single nit mutant phenotype. For nitrate reductase synthesis, the nmr-1 mutation is epistatic to am such that the double mutant is derepressed even in the presence of glutamate or glutamine. In all other respects however, the double mutant exhibits the am phenotype. We suggest therefore that the nmr-1 mutations do not directly affect the regulation of nitrate reductase at the level of transcription but instead act post-transcriptionally.

摘要

已分离出四种粗糙脉孢菌突变体,它们的硝酸还原酶调控发生了改变。它们各自携带一个突变,即使在谷氨酰胺存在的情况下,也会导致硝酸还原酶的合成去阻遏。它们定位于一个单一基因座,该基因座已被命名为nmr - 1,位于连锁群VR上的am和gln之间。这些突变似乎仅影响硝酸盐同化。nit - 2、nit - 3和nit - 4/5突变对nmr - 1是上位性 的,因为双突变体具有单个nit突变体表型。对于硝酸还原酶的合成,nmr - 1突变对am是上位性的,以至于双突变体即使在谷氨酸或谷氨酰胺存在的情况下也会去阻遏。然而,在所有其他方面,双突变体表现出am表型。因此,我们认为nmr - 1突变不会在转录水平直接影响硝酸还原酶的调控,而是在转录后起作用。

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