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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >A Mixed Culture of Endophytic Fungi Increases Production of Antifungal Polyketides
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A Mixed Culture of Endophytic Fungi Increases Production of Antifungal Polyketides

机译:内生真菌的混合培养可增加抗真菌聚酮化合物的产生

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摘要

Secondary metabolites produced by endophytic microorganisms can provide benefits to host plants, such as stimulating growth and enhancing the plant's resistance toward biotic and abiotic factors. During its life, a host plant may be inhabited by many species of endophytes within a restrictive environment. This condition can stimulate secondary metabolite production that improves microbial competition and may consequently affect both the neighboring microorganisms and the host plant. The interactions between the endophytes that co-habit the same host plant have been studied. However, the effect of these interactions on the host plant has remained neglected. When using mixed microbial cultures, we found that the endophytic fungus Alternaria tenuissima significantly increased the production of some polyketides, including antifungal stemphyperylenol in response to the endophytic Nigrospora sphaerica. Biological activity assays revealed that stemphyperylenol can cause cytotoxic effects against N. sphaerica, although no phytotoxicity was observed in the host plant Smallanthus sonchifolius, even at concentrations much higher than those toxic to the fungus. The polyketides produced by A. tenuissima may be important for the ecological relationships between endophyte-endophyte and endophytes-host plants in the natural environment.
机译:由内生微生物产生的次生代谢产物可以为宿主植物带来好处,例如刺激生长并增强植物对生物和非生物因子的抗性。在其一生中,宿主植物可能在限制性环境中居住有许多内生菌种。这种情况可以刺激次级代谢产物的产生,从而改善微生物的竞争,并因此可能同时影响邻近的微生物和宿主植物。共生同一宿主植物的内生菌之间的相互作用已得到研究。然而,这些相互作用对宿主植物的影响仍然被忽略。当使用混合微生物培养物时,我们发现内生真菌真菌链球菌极大地增加了某些聚酮化合物的产量,其中包括对内生真菌黑潮菌的抗真菌茎磷脂。生物活性分析表明,尽管在寄主植物小花鸡(Smranthus sonchifolius)中未观察到植物毒理,但即使浓度远高于对真菌有毒的浓度,草木香酚也可能引起针对球菌的细胞毒作用。 A. tenuissima生产的聚酮化合物对于自然环境中内生植物-内生植物和内生植物-宿主植物之间的生态关系可能很重要。

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