首页> 外文期刊>World Journal of Microbiology & Biotechnology >Association between dipsacus saponin VI level and diversity of endophytic fungi in roots of Dipsacus asperoides
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Association between dipsacus saponin VI level and diversity of endophytic fungi in roots of Dipsacus asperoides

机译:Dipsacus saponin vi水平与枝叶曲面根根内生真菌的多样性

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摘要

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.
机译:Dipsacus asporoides含有多种药理学活性化合物。本金是皂苷。植物可以栽培,但它含有较低水平的生物活性化合物,而不是野生植物。它可能是利用植物根源的内心真菌以产生生物活性化合物的原因。然而,D. D.Supoides的内生真菌未详细分析。在这项研究中,我们分离和鉴定来自主根,侧根和叶46个内生真菌菌株,并且我们使用形态学和分子生物学方法将它们分配到15个属:。镰刀菌属,Ceratobasidium属,毛壳菌属,青霉属。,曲霉菌Sp。,塔拉莫菌,sp。,氏菌孢子sp。,bionectria sp。,mucor sp.,trichoderma sp.,myrothecium sp。,clonostachys sp.,ijuhya sp。,瘦性的sp。和phoma sp。 Taproots含有丰富的内生真菌,其数量与Dipsacus saponin VI水平相关。来自突根菌的几种内生真菌菌株的原发性发酵显示镰刀菌,瘦性,Ceratobasidium sp。和phoma sp。可以生产三萜皂苷。这些结果可以指导努力从D.Suporoides中可持续地生产生物活性化合物。

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