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稻瘟病菌 carS 基因的功能分析。

Functional analysis of the carS gene of Fusarium fujikuroi.

机构信息

Departamento de Genética, Universidad de Sevilla, Apartado 1095, 41080, Sevilla, Spain.

出版信息

Mol Genet Genomics. 2013 Apr;288(3-4):157-73. doi: 10.1007/s00438-013-0739-7. Epub 2013 Mar 30.

Abstract

The ascomycete fungus Fusarium fujikuroi is a model system in the investigation of the biosynthesis of some secondary metabolites, such as gibberellins, bikaverin, and carotenoids. Carotenoid-overproducing mutants, generically called carS, are easily obtained in this fungus by standard mutagenesis procedures. Here we report the functional characterization of gene carS, responsible for this mutant phenotype. The identity of the gene was demonstrated through the finding of mutations in six independent carS mutants and by the complementation of one of them. The F. fujikuroi carS gene was able to restore the control of carotenogenesis in a similar deregulated mutant of Fusarium oxysporum, but only partially at the transcription level, indicating an unexpected complexity in the regulation of the pathway. Due to the pleiotropic characteristics of this mutation, which also modifies the production of other secondary metabolites, we did a screening for carS-regulated genes by subtracted cDNA hybridization. The results show that the carS mutation affects the regulation of numerous genes in addition to those of carotenogenesis. The expression of the identified genes was usually enhanced by light, a regulatory effect also exhibited by the carS gene. However, in most cases, their mRNA levels in carS mutants were similar to those of the wild type, suggesting a regulation that affects mRNA availability rather than mRNA synthesis.

摘要

稻瘟病菌(Fusarium fujikuroi)中的子囊菌是研究某些次生代谢物生物合成的模式系统,如赤霉素、麦角固醇和类胡萝卜素。通过标准诱变程序,在这种真菌中很容易获得类胡萝卜素过量产生的突变体,通常称为 carS。在这里,我们报告了负责这种突变表型的基因 carS 的功能特征。通过在六个独立的 carS 突变体中发现突变以及对其中一个突变体进行互补,证明了该基因的存在。F. fujikuroi carS 基因能够恢复类似的 Fusarium oxysporum 去调控突变体中类胡萝卜素生物合成的控制,但仅在转录水平上部分恢复,表明该途径的调控具有出乎意料的复杂性。由于该突变具有多效性特征,也会改变其他次生代谢物的产生,因此我们通过消减 cDNA 杂交进行了 carS 调控基因的筛选。结果表明,carS 突变除了影响类胡萝卜素生物合成的基因调控外,还影响许多其他基因的调控。除了 carS 基因外,识别出的基因的表达通常受到光照的增强,这也是 carS 基因表现出的一种调控效应。然而,在大多数情况下,carS 突变体中的这些基因的 mRNA 水平与野生型相似,这表明一种影响 mRNA 可用性而不是 mRNA 合成的调控。

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