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The old 3-oxoadipate pathway revisited: New insights in the catabolism of aromatics in the saprophytic fungus Aspergillus nidulans

机译:重新探讨旧的3-氧代己二酸途径:腐生真菌曲霉曲霉中芳香族化合物分解代谢的新见解

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Aspergilli play major roles in the natural turnover of elements, especially through the decomposition of plant litter, but the end catabolism of lignin aromatic hydrocarbons remains largely unresolved. The 3-oxoadipate pathway of their degradation combines the catechol and the protocatechuate branches, each using a set of specific genes. However, annotation for most of these genes is lacking or attributed to poorly- or un-characterised families. Aspergillus nidulans can utilise as sole carbon/energy source either benzoate or salicylate (upstream aromatic metabolites of the protocatechuate and the catechol branches, respectively). Using this cultivation strategy and combined analyses of comparative proteomics, gene mining, gene expression and characterisation of particular gene-replacement mutants, we precisely assigned most of the steps of the 3-oxoadipate pathway to specific genes in this fungus. Our findings disclose the genetically encoded potential of saprophytic Ascomycota fungi to utilise this pathway and provide means to untie associated regulatory networks, which are vital to heightening their ecological significance. (C) 2014 Elsevier Inc. All rights reserved.
机译:曲霉菌在元素的自然转化中起主要作用,尤其是通过分解植物凋落物,但是木质素芳烃的最终分解代谢仍未解决。它们降解的3-氧代己二酸途径将邻苯二酚和原儿茶酸分支结合在一起,每个分支都使用一组特定基因。但是,大多数这些基因的注释缺乏或归因于不良或未鉴定的家族。构巢曲霉可以利用苯甲酸盐或水杨酸盐(分别为原儿茶酸盐和邻苯二酚分支的上游芳族代谢物)作为唯一的碳/能源。使用这种培养策略以及对比较蛋白质组学,基因挖掘,基因表达和特定基因替代突变体表征的综合分析,我们将3-氧代己二酸途径的大多数步骤精确分配给了这种真菌中的特定基因。我们的发现揭示了腐生的子囊真菌利用该途径的遗传编码潜力,并为解开相关的调控网络提供了手段,这对于提高其生态学意义至关重要。 (C)2014 Elsevier Inc.保留所有权利。

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