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南极树蕨内生真菌Urnula sp.,制造具有生物活性的挥发性有机化合物的芳香混合物。

Urnula sp., an Endophyte of Dicksonia antarctica, Making a Fragrant Mixture of Biologically Active Volatile Organic Compounds.

作者信息

Strobel Gary, Ericksen Amy, Sears Joe, Xie Jie, Geary Brad, Blatt Bryan

机构信息

Department of Plant Sciences, Montana State University, Bozeman, MT, 59717, USA.

Endophytics, 920 Technology Blvd, Bozeman, MT, 59718, USA.

出版信息

Microb Ecol. 2017 Aug;74(2):312-321. doi: 10.1007/s00248-017-0947-5. Epub 2017 Feb 10.

Abstract

Urnula sp. was isolated as an endophyte of Dicksonia antarctica and identified primarily on the basis of its ITS sequence and morphological features. The anamorphic state of the fungus appeared as a hyphomyceteous-like fungus as based on its features in culture and scanning electron microscopy examination of its spores. On potato dextrose agar (PDA), the organism makes a characteristic fragrance resembling peach pie with vanilla overtones. A GC/MS analysis done on the volatile organic compounds (VOCs) of this organism, trapped by carbotrap methodology, revealed over 150 compounds with high MS matching quality being noted for 44 of these. Some of the most abundantly produced compounds included 4-decene, tridecane, 2-decene (E), 2-dodecene, (Z,E)-alpha-farnesene, butanoic acid, pentyl ester, and 1-hexanol,2-ethyl. In addition, vanillin, methyl vanillin, and many other fragrant substances were noted including isomenthol, pyrazine derivatives, and 3-decanone. In split plate bioassay tests on potato dextrose agar (PDA), Botrytis cinerea, Ceratocystis ulmi, Pythium ultimum, Fusarium solani, and Rhizoctonia solani were inhibited at levels of 24 to 50% of their normal growth on this medium. Bioreactors supporting fungal growth on 50 g of beet pulp waste, using stainless steel carbotraps, yielded over 180 mg of hydrocarbon-based products collected over 6 weeks of incubation. Similarly, because this organism is making one of the largest sets of VOCs as any fungus examined to date, producing many compounds of commercial interest, it has enormous biotechnical potential. The role of the VOCs in the biology and ecology of this endophyte may be related to the antimicrobial activities that they possess.

摘要

银耳属真菌作为南极树蕨的一种内生菌被分离出来,并主要根据其ITS序列和形态特征进行鉴定。基于其在培养中的特征以及对其孢子的扫描电子显微镜检查,该真菌的无性型状态表现为类似丝孢菌的真菌。在马铃薯葡萄糖琼脂(PDA)上,该生物体产生一种具有特征性的香味,类似带有香草味的桃子派。对通过碳阱法捕获的该生物体的挥发性有机化合物(VOCs)进行的气相色谱/质谱(GC/MS)分析显示,有超过150种化合物,其中44种具有高质量的质谱匹配。一些产生量最大的化合物包括4-癸烯、十三烷、(E)-2-癸烯、2-十二碳烯、(Z,E)-α-法尼烯、丁酸戊酯和2-乙基-1-己醇。此外,还检测到香草醛、甲基香草醛以及许多其他芳香物质,包括异薄荷醇、吡嗪衍生物和3-癸酮。在马铃薯葡萄糖琼脂(PDA)上的平板划线生物测定试验中,灰葡萄孢、榆长喙壳菌、终极腐霉、茄腐镰刀菌和立枯丝核菌在该培养基上的生长受到抑制,抑制程度为其正常生长的24%至50%。使用不锈钢碳阱的生物反应器在50克甜菜粕废料上支持真菌生长,在6周的培养期内收集到了超过180毫克的烃基产物。同样,由于该生物体产生的挥发性有机化合物是迄今为止所检测的任何真菌中种类最多的之一,产生了许多具有商业价值的化合物,因此它具有巨大的生物技术潜力。挥发性有机化合物在这种内生菌的生物学和生态学中的作用可能与其所具有的抗菌活性有关。

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