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续断皂苷 VI 水平与续断根内生真菌多样性的关系。

Association between dipsacus saponin VI level and diversity of endophytic fungi in roots of Dipsacus asperoides.

机构信息

Experimental Center, Guiyang University of Chinese Medicine, Guiyang, 550025, China.

Department of Molecular Biology Laboratory, Guiyang University of Chinese Medicine, Guiyang, 550025, China.

出版信息

World J Microbiol Biotechnol. 2019 Feb 18;35(3):42. doi: 10.1007/s11274-019-2616-y.

Abstract

Dipsacus asperoides contains multiple pharmacologically active compounds. The principal are saponins. The plant can be cultivated, but it contains lower levels of bioactive compounds than the plant in the wild. It may be the reason to exploit the endophytic fungi that colonize the plant roots in order to produce bioactive compounds. However, the endophytic fungi of D. asperoides have not been analyzed in detail. In this study, we isolated and identified 46 endophytic fungal strains from the taproots, lateral roots and leaves, and we used morphological and molecular biological methods to assign them into 15 genera: Fusarium sp., Ceratobasidium sp., Chaetomium sp., Penicillium sp., Aspergillus sp., Talaromyces sp., Cladosporium sp., Bionectria sp., Mucor sp., Trichoderma sp., Myrothecium sp., Clonostachys sp., Ijuhya sp., Leptosphaeria sp. and Phoma sp. Taproots contained abundant endophytic fungi, the numbers of which correlated positively with level of dipsacus saponin VI. Primary fermentation of several endophytic fungal strains from taproots showed that Fusarium, Leptosphaeria, Ceratobasidium sp. and Phoma sp. can produce the triterpenoid saponin. These results may guide efforts to sustainably produce bioactive compounds from D. asperoides.

摘要

川续断属植物含有多种具有药理活性的化合物,主要为皂苷。该植物可人工栽培,但生物活性化合物的含量低于野生植物。这可能是开发定殖于植物根部的内生真菌以生产生物活性化合物的原因。然而,尚未对川续断属植物的内生真菌进行详细分析。在这项研究中,我们从主根、侧根和叶片中分离和鉴定了 46 株内生真菌菌株,并通过形态学和分子生物学方法将其鉴定为 15 个属:镰孢属、Cerato basidium 属、毛壳属、青霉属、曲霉属、拟青霉属、枝孢属、生二孢属、木霉属、毛霉属、木层孔菌属、丛赤壳属、Ijuhya 属、球腔菌属和茎点霉属。主根中含有丰富的内生真菌,其数量与川续断皂苷 VI 的水平呈正相关。对来自主根的几种内生真菌菌株的初步发酵表明,镰孢属、球腔菌属、Cerato basidium 属和茎点霉属可以产生三萜皂苷。这些结果可能有助于从川续断属植物中可持续地生产生物活性化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7482/6394449/d05eb4962698/11274_2019_2616_Fig1_HTML.jpg

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