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曲霉属物种中主要代谢途径的阐释:鉴定孤儿基因的孤立研究。

Elucidation of primary metabolic pathways in Aspergillus species: orphaned research in characterizing orphan genes.

作者信息

Andersen Mikael Rørdam

出版信息

Brief Funct Genomics. 2014 Nov;13(6):451-5. doi: 10.1093/bfgp/elu029. Epub 2014 Aug 11.

Abstract

Primary metabolism affects all phenotypical traits of filamentous fungi. Particular examples include reacting to extracellular stimuli, producing precursor molecules required for cell division and morphological changes as well as providing monomer building blocks for production of secondary metabolites and extracellular enzymes. In this review, all annotated genes from four Aspergillus species have been examined. In this process, it becomes evident that 80-96% of the genes (depending on the species) are still without verified function. A significant proportion of the genes with verified metabolic functions are assigned to secondary or extracellular metabolism, leaving only 2-4% of the annotated genes within primary metabolism. It is clear that primary metabolism has not received the same attention in the post-genomic area as many other research areas--despite its role at the very centre of cellular function. However, several methods can be employed to use the metabolic networks in tandem with comparative genomics to accelerate functional assignment of genes in primary metabolism. In particular, gaps in metabolic pathways can be used to assign functions to orphan genes. In this review, applications of this from the Aspergillus genes will be examined, and it is proposed that, where feasible, this should be a standard part of functional annotation of fungal genomes.

摘要

初级代谢影响丝状真菌的所有表型特征。具体例子包括对细胞外刺激作出反应、产生细胞分裂和形态变化所需的前体分子,以及为次级代谢产物和细胞外酶的产生提供单体构件。在本综述中,对四种曲霉属物种的所有注释基因进行了研究。在此过程中,很明显80% - 96%的基因(取决于物种)仍未得到功能验证。具有已验证代谢功能的基因中有很大一部分被归为次级或细胞外代谢,初级代谢中只有2% - 4%的注释基因。很明显,尽管初级代谢处于细胞功能的核心位置,但在后基因组领域,它并未像许多其他研究领域那样受到同等关注。然而,可以采用几种方法将代谢网络与比较基因组学结合使用,以加速初级代谢中基因的功能分配。特别是,代谢途径中的缺口可用于为孤儿基因分配功能。在本综述中,将研究曲霉属基因在此方面的应用,并提出在可行的情况下,这应成为真菌基因组功能注释的标准组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cda4/4239788/10dcc6c94cd3/elu029f1p.jpg

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