生物
聚酮
基因簇
哈茨木霉
次生代谢物
聚酮合酶
次生代谢
木霉菌
基因
基因组
非核糖体肽
计算生物学
生物化学
生物合成
植物
生物病虫害防治
作者
Suhad A. A. Al-Salihi,Fabrizio Alberti
出处
期刊:Journal of Fungi
[Multidisciplinary Digital Publishing Institute]
日期:2023-08-31
卷期号:9 (9): 895-895
被引量:4
摘要
Fungi represents a rich repository of taxonomically restricted, yet chemically diverse, secondary metabolites that are synthesised via specific metabolic pathways. An enzyme’s specificity and biosynthetic gene clustering are the bottleneck of secondary metabolite evolution. Trichoderma harzianum M10 v1.0 produces many pharmaceutically important molecules; however, their specific biosynthetic pathways remain uncharacterised. Our genomic-based analysis of this species reveals the biosynthetic diversity of its specialised secondary metabolites, where over 50 BGCs were predicted, most of which were listed as polyketide-like compounds associated clusters. Gene annotation of the biosynthetic candidate genes predicted the production of many medically/industrially important compounds including enterobactin, gramicidin, lovastatin, HC-toxin, tyrocidine, equisetin, erythronolide, strobilurin, asperfuranone, cirtinine, protoilludene, germacrene, and epi-isozizaene. Revealing the biogenetic background of these natural molecules is a step forward towards the expansion of their chemical diversification via engineering their biosynthetic genes heterologously, and the identification of their role in the interaction between this fungus and its biotic/abiotic conditions as well as its role as bio-fungicide.
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