内生真菌在地衣共生中的抗氧化活性研究

Mgm Galinato
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引用次数: 2

摘要

-寄生在秘鲁苔藓中的真菌的抗氧化活性:关于内生真菌在地衣共生中的作用的见解。摘要地衣中除了真菌成分(mycobiont)外,还有其他真菌存在。这些微生物被称为“地衣相关真菌”或“内生真菌”(ELF),它们在地衣共生中的作用鲜为人知。在这项研究中,从水果地衣Ramalina peruviana中分离出11个形态不同的ELF,鉴定属于Colletotrichum (1), Daldinia (3), Hypoxylon (1), Nemania (1), Nigrospora(1)和Xylaria(4)。每个ELF分别在两个不同的环境中生长-水下和固态发酵-并用乙酸乙酯提取其次级代谢产物。同样,也提取了地衣寄主的代谢物。在11株分离物中,固态发酵条件下生长的Nemania primolutea粗培养提取物的自由基清除活性最高(RSA = 89.7%),相似发酵条件下生长的炭黑菌(Colletotrichum eschscholtzii)次之(RSA = 80%)。而地衣寄主提取物的RSA略低,为45.89%。结果表明,内生真菌的抗氧化活性高于地衣寄主,可能通过合成抗氧化化合物对地衣共生起到保护作用。
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Antioxidant activities of fungi inhabiting Ramalina peruviana: insights on the role of endolichenic fungi in the lichen symbiosis
– Antioxidant activities of fungi inhabiting Ramalina peruviana : insights on the role of endolichenic fungi in the lichen symbiosis. Current Research in Environmental & Applied Mycology (Journal of Fungal Biology) 11(1), 119–136, Abstract Apart from the fungal component (the mycobiont), other fungi reside inside lichens. Referred to as “lichen-associated fungi” or “endolichenic fungi” (ELF), these microorganisms have a poorly understood role in the lichen symbiosis. In this study, 11 morphoculturally-distinct ELF were isolated from the fruticose lichen Ramalina peruviana and identified as belonging to the genera Colletotrichum (1), Daldinia (3), Hypoxylon (1), Nemania (1), Nigrospora (1), and Xylaria (4). Each ELF was grown in two separate setups – submerged and solid-state fermentation – and were extracted with ethyl acetate for their secondary metabolites. Similarly, metabolites from the lichen host were also extracted. Among the 11 isolates, crude culture extracts of Nemania primolutea grown via the solid-state fermentation setup exhibited the highest radical scavenging activity (RSA = 89.7%), followed by Colletotrichum eschscholtzii grown using similar fermentation type (RSA = 80%). In contrast, extracts of the lichen host exhibited a slightly lower RSA (= 45.89%). Results showed that endolichenic fungi exhibited antioxidant activities greater than the lichen host, and possibly contributes to the protection of the lichen symbiosis through the synthesis of antioxidant compounds.
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
9
期刊介绍: Current Research in Environmental & Applied Mycology (Journal of Fungal Biology) is an international peer-reviewed journal with swift publication. This includes reviews of research advances and methodology and articles in applied and environmental mycology. Current Research in Environmental & Applied Mycology has no page charges or open access charges and offers a free outlet for the publications of the mycology community. All manuscripts will undergo peer review before acceptance. Copyright is retained by the authors.
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