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高等真菌的次生代谢产物

Secondary Metabolites from Higher Fungi.

作者信息

Chen He-Ping, Liu Ji-Kai

机构信息

State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, 650201, People's Republic of China.

School of Pharmaceutical Sciences, South-Central University for Nationalities, No. 182 Minzu Road, Wuhan, 430074, People's Republic of China.

出版信息

Prog Chem Org Nat Prod. 2017;106:1-201. doi: 10.1007/978-3-319-59542-9_1.

DOI:10.1007/978-3-319-59542-9_1
PMID:28762089
Abstract

Secondary metabolites of higher fungi (mushrooms) are an underexplored resource compared to plant-derived secondary metabolites. An increasing interest in mushroom natural products has been noted in recent years. This chapter gives a comprehensive overview of the secondary metabolites from higher fungi, with 765 references highlighting the isolation, structure elucidation, biological activities, chemical syntheses, and biosynthesis of pigments, nitrogen-containing compounds, and terpenoids from mushrooms. Mushroom toxins are also included in each section.In a section on pigments of higher fungi, pigments are classified into four categories, namely, those from the shikimate-chorismate, acetate-malonate, and mevalonate biosynthetic pathways, and pigments containing nitrogen, with 145 references covering the years 2010-2016.In a section on other nitrogen-containing compounds of higher fungi, compounds are categorized primarily into nitrogen heterocycles, nucleosides, non-protein amino acids, cyclic peptides, and sphingolipids, with 65 references covering the years 2010-2016. In turn, in a section describing terpenoids of higher fungi, the sesquiterpenoids and diterpenoids are thoroughly elaborated, spanning the years 2001-2016, and 2009-2016, respectively. The divergent biosynthetic pathways from farnesyl pyrophosphate to sesquiterpenoids are also described. Selected triterpenoids with novel structures and promising biological activities, including lanostanes and ergostanes, are reported from the genus Ganoderma, and the fungi Antrodia cinnamomea and Poria cocos. In addition, cucurbitanes and saponaceolides are also compiled in this section.

摘要

与植物来源的次生代谢产物相比,高等真菌(蘑菇)的次生代谢产物是一种未被充分探索的资源。近年来,人们对蘑菇天然产物的兴趣与日俱增。本章全面概述了高等真菌的次生代谢产物,引用了765篇参考文献,重点介绍了蘑菇中色素、含氮化合物和萜类化合物的分离、结构解析、生物活性、化学合成及生物合成。各部分还包括蘑菇毒素。在高等真菌色素部分,色素被分为四类,即来自莽草酸 - 分支酸、乙酸 - 丙二酸和甲羟戊酸生物合成途径的色素以及含氮色素,有145篇参考文献涵盖2010 - 2016年。在高等真菌其他含氮化合物部分,化合物主要分为氮杂环、核苷、非蛋白质氨基酸、环肽和鞘脂类,有65篇参考文献涵盖2010 - 2016年。接着,在描述高等真菌萜类化合物的部分,分别详细阐述了倍半萜类和二萜类化合物,时间跨度分别为2001 - 2016年和2009 - 2016年。还描述了从法呢基焦磷酸到倍半萜类化合物的不同生物合成途径。报道了灵芝属、樟芝和茯苓中具有新颖结构和潜在生物活性的选定三萜类化合物,包括羊毛甾烷和麦角甾烷。此外,该部分还汇编了葫芦烷和皂化甾醇内酯。

相似文献

1
Secondary Metabolites from Higher Fungi.高等真菌的次生代谢产物
Prog Chem Org Nat Prod. 2017;106:1-201. doi: 10.1007/978-3-319-59542-9_1.
2
Metabolites identification and multi-component pharmacokinetics of ergostane and lanostane triterpenoids in the anticancer mushroom Antrodia cinnamomea.抗癌真菌樟芝中麦角甾烷和羊毛甾烷三萜类化合物的代谢产物鉴定及多组分药代动力学
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Insights into Ganoderma fungi meroterpenoids opening a new era of racemic natural products in mushrooms.灵芝真菌生源二萜的研究进展为蘑菇中消旋天然产物开辟了新纪元。
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Traversing the fungal terpenome.探索真菌萜类化合物组。
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Biologically functional molecules from mushroom-forming fungi.来自形成蘑菇的真菌的生物功能分子。
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Chromosome-Level Genome Sequences, Comparative Genomic Analyses, and Secondary-Metabolite Biosynthesis Evaluation of the Medicinal Edible Mushroom Laetiporus sulphureus.黄伞(Laetiporus sulphureus)的染色体水平基因组序列、比较基因组分析和次生代谢产物生物合成评价。
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