A Chromosome-Scale Genome of Trametes versicolor and Transcriptome-Based Screening for Light-Induced Genes That Promote Triterpene Biosynthesis.

IF 4.2 2区 生物学 Q2 MICROBIOLOGY Journal of Fungi Pub Date : 2025-01-20 DOI:10.3390/jof11010081
Yang Yang, Xuebo Hu
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Abstract

Trametes versicolor is an important fungus with medicinal properties and a significant role in lignocellulose degradation. In this study, we constructed a high-quality chromosome-level genome of T. versicolor using Illumina, PacBio HiFi, and Hi-C sequencing technologies. The assembled genome is 47.42 Mb in size and contains 13,307 protein-coding genes. BUSCO analysis revealed genome and gene completeness results of 95.80% and 95.90%, respectively. Phylogenetic analysis showed that T. versicolor is most closely related to T. pubescens, followed by T. cinnabarina and T. coccinea. Comparative genomic analysis identified 266 syntenic blocks between T. versicolor and Wolfiporia cocos, indicating a conserved evolutionary pattern between the two species. Gene family analysis highlighted the expansion and contraction of genes in functional categories related to the biosynthesis of secondary metabolites, including several T. versicolor-specific genes. Key genes involved in lignocellulose degradation and triterpene production were identified within the CAZyme and CYP450 gene families. Transcriptomic analysis under dark and light conditions revealed significant changes in the expression of genes related to secondary metabolism, suggesting that light signals regulate metabolic pathways. A total of 2577 transporter proteins and 2582 membrane proteins were identified and mapped in the T. versicolor genome, and 33 secondary metabolite gene clusters were identified, including two light-sensitive triterpene biosynthesis clusters. This study offers a comprehensive genomic resource for further investigation into the functional genomics, metabolic regulation, and triterpene biosynthesis of T. versicolor, providing valuable insights into fungal evolution and biotechnological applications.

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彩板藓染色体尺度基因组及促进三萜生物合成的光诱导基因转录组筛选。
木栓菌(Trametes versicolor)是一种重要的药用真菌,在木质纤维素降解中起着重要作用。在这项研究中,我们利用Illumina, PacBio HiFi和Hi-C测序技术构建了高质量的T. versicolor染色体水平基因组。组装的基因组大小为47.42 Mb,包含13307个蛋白质编码基因。BUSCO分析显示,基因组和基因的完整性分别为95.80%和95.90%。系统发育分析表明,花型T.与短毛T.亲缘关系最密切,其次是朱砂T.和球菌T.。比较基因组分析发现,花斑绦虫和椰子Wolfiporia cocos之间存在266个同源片段,表明两者之间存在保守的进化模式。基因家族分析强调了与次生代谢物生物合成相关的功能类别中基因的扩增和收缩,包括几个T. versicolor特异性基因。在CAZyme和CYP450基因家族中确定了参与木质纤维素降解和三萜生产的关键基因。暗、光条件下的转录组学分析显示,次生代谢相关基因的表达发生了显著变化,表明光信号调节了代谢途径。共鉴定和定位了2577个转运蛋白和2582个膜蛋白,鉴定了33个次生代谢产物基因簇,其中包括2个光敏三萜生物合成基因簇。该研究为进一步研究花色霉的功能基因组学、代谢调控和三萜生物合成提供了全面的基因组资源,为真菌进化和生物技术应用提供了有价值的见解。
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来源期刊
Journal of Fungi
Journal of Fungi Medicine-Microbiology (medical)
CiteScore
6.70
自引率
14.90%
发文量
1151
审稿时长
11 weeks
期刊介绍: Journal of Fungi (ISSN 2309-608X) is an international, peer-reviewed scientific open access journal that provides an advanced forum for studies related to pathogenic fungi, fungal biology, and all other aspects of fungal research. The journal publishes reviews, regular research papers, and communications in quarterly issues. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on paper length. Full experimental details must be provided so that the results can be reproduced.
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