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构巢曲霉中在萌发和有性发育方面存在缺陷的显性孢子颜色突变体。

Dominant spore color mutants of Aspergillus nidulans defective in germination and sexual development.

作者信息

Kurtz M B, Champe S P

出版信息

J Bacteriol. 1981 Nov;148(2):629-38. doi: 10.1128/jb.148.2.629-638.1981.

Abstract

The ascomycete Aspergillus nidulans produces green conidia (asexual spores). Recessive mutants which produce yellow conidia have been previously isolated from haploid strains and have been shown to be deficient in laccase (diphenol oxidase), an enzyme that requires copper for activity. Using a diploid parent strain, we isolated dominant yellow conidial mutants which, in the haploid state, produced even less laccase activity than a recessive mutant. Three isolates of such mutants behaved similarly and define a single complementation group (yB) on chromosome VIII distinct from the yA locus on chromosome I defined by recessive mutants. Unlike yA mutants, whose only discernable phenotype is their conidial color, yB mutants are pleiotropic: conidial germination was delayed relative to the wild type, and sexual development was blocked at an early stage. The three phenotypes of yB mutants were expressed on yeast extract-glucose medium containing 1.6 microM of added copper. When copper was added to above 5 microM, all three phenotypes were remediated, and near wild-type levels of laccase were produced. We conclude that yB mutants have a reduced availability of copper. The dominance of yB mutants could result, for example, from an alteration in transport or storage of copper. Using an immunological assay, we detected no laccase antigenic cross-reacting material in yB mutants grown on medium of low copper content. We conclude that either the synthesis or the stability of laccase is copper dependent.

摘要

子囊菌构巢曲霉产生绿色分生孢子(无性孢子)。此前已从单倍体菌株中分离出产生黄色分生孢子的隐性突变体,这些突变体已被证明缺乏漆酶(双酚氧化酶),该酶的活性需要铜。利用一个二倍体亲本菌株,我们分离出了显性黄色分生孢子突变体,这些突变体在单倍体状态下产生的漆酶活性甚至比隐性突变体还要低。三个这样的突变体分离株表现相似,在第八条染色体上定义了一个单一的互补群(yB),与第一条染色体上由隐性突变体定义的yA位点不同。与yA突变体不同,yA突变体唯一可辨别的表型是它们的分生孢子颜色,而yB突变体是多效性的:分生孢子萌发相对于野生型延迟,有性发育在早期受阻。yB突变体的这三种表型在添加了1.6微摩尔铜的酵母提取物 - 葡萄糖培养基上表现出来。当铜添加量超过5微摩尔时,所有三种表型都得到修复,并产生接近野生型水平的漆酶。我们得出结论,yB突变体的铜可用性降低。yB突变体的显性可能是由于铜的运输或储存发生改变等原因导致的。使用免疫测定法,我们在低铜含量培养基上生长的yB突变体中未检测到漆酶抗原交叉反应物质。我们得出结论,漆酶的合成或稳定性是依赖铜的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7a8/216249/f07497e154b0/jbacter00264-0245-a.jpg

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