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安第斯巴塔哥尼亚地区真菌区系在寻找新先导分子中的影响。

The impact of Andean Patagonian mycoflora in the search for new lead molecules.

作者信息

Aqueveque Pedro M, Cespedes Carlos L, Kubo Isao, Seigler David S, Sterner Olov

机构信息

Laboratory of Applied Microbiology and Mycology, Agroindustry Department, Faculty of Agricultural Engineering, University of Concepcion, Chillan, Chile.

Laboratory of Chemical-Ecology, Basic Science Department, Faculty of Sciences, Universidad del Bio Bio, Chillan, Chile.

出版信息

Ann N Y Acad Sci. 2017 Aug;1401(1):5-18. doi: 10.1111/nyas.13402. Epub 2017 Jun 22.

Abstract

Secondary metabolites from fungi have become a major source of chemical innovation in programs searching for lead molecules with bioactivities, especially over the last 50 years. In this review, we discuss the fundamental considerations in the discovery of molecules for agricultural and medicinal uses. This group of organisms possesses a strong potential for scientific and industrial communities. Recently, the incorporation of new technologies for the artificial cultivation of fungi and the use of better equipment to isolate and identify active metabolites has allowed the discovery of leading molecules for the design of new and safer drugs and pesticides. The geographical region including the Patagonian Andes mountains harbors a wide diversity of fungi, many of them still unknown and so far associated with Chilean-Argentinian Andean endemic forests. There have been very few chemical studies of the fungi located in this region. However, those few studies have allowed the discovery of new molecules. We argue that the richness of fungal biodiversity in this region offers an interesting source for the discovery of bioactive molecules for the basic and applied sciences.

摘要

真菌产生的次生代谢产物已成为寻找具有生物活性的先导分子的化学创新的主要来源,尤其是在过去50年中。在这篇综述中,我们讨论了发现用于农业和医药用途分子的基本考量因素。这类生物体对科学界和工业界具有巨大潜力。最近,采用新技术人工培养真菌以及使用更好的设备分离和鉴定活性代谢产物,使得发现了用于设计新型更安全药物和杀虫剂的先导分子。包括巴塔哥尼亚安第斯山脉在内的地理区域拥有种类繁多的真菌,其中许多仍然未知,且迄今为止与智利-阿根廷安第斯特有森林有关。对该地区真菌的化学研究非常少。然而,这些为数不多的研究已促成了新分子的发现。我们认为,该地区丰富的真菌生物多样性为基础科学和应用科学发现生物活性分子提供了一个有趣的来源。

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