Shaanxi Key Laboratory of Natural Products & Chemical Biology, College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi, China.
Yangling Zhijun Fungi Biotechnology Engineering Co., Ltd., Yangling, Shaanxi, China.
Microbiol Spectr. 2022 Oct 26;10(5):e0243922. doi: 10.1128/spectrum.02439-22. Epub 2022 Oct 6.
Laetiporus sulphureus mushroom is a complementary and alternative medicine that has anticancer, antioxidation, and analgesic effects and immunomodulatory activity; it is used as a treatment for cough and rheumatism and is a functional food that can improve physical fitness. Even though L. sulphureus has garnered considerable biotechnological and pharmacological interest due to its excellent cellulose-degrading ability and diverse biological activities, its biosynthetic potential regarding polysaccharides and secondary metabolites has not been thoroughly examined. In this study, we sequenced and assembled the whole genome of a wild isolate, NWAFU-1, from the Qinling Mountains in China. Comparative genomes analysis revealed genomic differences between subspecies, and phylogenomic analysis revealed evolutionary divergence as well as genome expansion and contraction of individual Polyporaceae family species. Bioinformatics investigation identified candidate genes associated with mating type, polysaccharide synthesis, carbohydrate-active enzymes, and secondary-metabolite biosynthesis, which included multiple terpenoids, nonribosomal peptides, and polyketides. The locations of biosynthetic core genes were mapped and displayed on chromosomes and contigs. Totals of 143 proteins from 126 coding genes were identified and divided into 14 cytochrome P450 families. Furthermore, the biosynthetic network of tetracyclic triterpenoid active components was postulated by genome mining of related genes combined with the molecular network of metabolites. The genome analysis of in this study improves the understanding of the biosynthesis of active compounds, which will lay a theoretical foundation for subsequent research on active-compound biosynthesis and promote the application of in the field of drug research and functional-food creation. is a parasitic basidiomycete fungus that causes brown rot. The fruiting bodies of are used as ancient medicines in China and Europe to cure cancer, analgesia, cough, and rheumatism and are considered a functional food that regulates the body and improves health. was inferred to be a tetrapolar system based on a high-quality genome, which will aid molecular breeding and artificial farming. Screening polysaccharide synthesis candidate genes and comparing carbohydrate-associated genes in brown-rot basidiomycetes help understand their growth. Identifying core genes for secondary-metabolite biosynthesis, gene cluster family analysis, and comparative cluster analysis will guide heterologous-biosynthesis investigations of these genes and help elucidate the biosynthetic pathways for bioactive natural components. The biosynthesis network of tetracyclic triterpenes was mapped using metabolite profiling and genome scanning. This work explores the biosynthetic capacity of -derived natural products and lays the foundation for biosynthetic studies of them.
硫色多孔菌是一种具有抗癌、抗氧化、镇痛作用和免疫调节活性的补充和替代医学;它被用作治疗咳嗽和风湿的药物,是一种功能性食品,可以改善身体健康。尽管硫色多孔菌因其出色的纤维素降解能力和多种生物活性而引起了相当大的生物技术和药理学兴趣,但它在多糖和次生代谢物方面的生物合成潜力尚未得到彻底研究。在这项研究中,我们对来自中国秦岭的野生分离株 NWAFU-1 进行了全基因组测序和组装。比较基因组分析揭示了亚种之间的基因组差异,系统发育基因组分析揭示了进化分歧以及个别多孔菌科物种的基因组扩张和收缩。生物信息学研究鉴定了与交配型、多糖合成、碳水化合物活性酶和次生代谢物生物合成相关的候选基因,其中包括多种萜类化合物、非核糖体肽和聚酮化合物。生物合成核心基因的位置被映射并显示在染色体和基因组上。从 126 个编码基因中鉴定出 143 种蛋白质,并分为 14 个细胞色素 P450 家族。此外,通过与代谢物分子网络相结合的相关基因基因组挖掘,提出了四环三萜类活性成分的生物合成网络。本研究对 的基因组分析提高了对活性化合物生物合成的认识,为后续活性化合物生物合成的研究奠定了理论基础,并促进了 在药物研究和功能性食品创造领域的应用。是一种寄生担子菌真菌,会导致褐腐病。在中国和欧洲, 的子实体被用作古老的药物来治疗癌症、镇痛、咳嗽和风湿,并被认为是一种调节身体和改善健康的功能性食品。基于高质量基因组,推测 为四极系统,这将有助于分子育种和人工养殖。筛选多糖合成候选基因,并比较褐腐担子菌中与碳水化合物相关的基因,有助于了解它们的生长。鉴定次生代谢物生物合成的核心基因、基因簇家族分析和比较聚类分析将指导这些基因的异源生物合成研究,并有助于阐明 生物活性天然成分的生物合成途径。四环三萜类化合物的生物合成网络是通过代谢物分析和基因组扫描来绘制的。这项工作探索了 衍生天然产物的生物合成能力,并为它们的生物合成研究奠定了基础。