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Phylogenetic Identification of Fungi Isolated from the Marine Sponge Tethya aurantium and Identification of Their Secondary Metabolites

机译:海洋海绵Tethya aurantium分离真菌的系统发育鉴定及其次级代谢产物的鉴定

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摘要

Fungi associated with the marine sponge Tethya aurantium were isolated and identified by morphological criteria and phylogenetic analyses based on internal transcribed spacer (ITS) regions. They were evaluated with regard to their secondary metabolite profiles. Among the 81 isolates which were characterized, members of 21 genera were identified. Some genera like Acremonium, Aspergillus, Fusarium, Penicillium, Phoma, and Trichoderma are quite common, but we also isolated strains belonging to genera like Botryosphaeria, Epicoccum, Parasphaeosphaeria, and Tritirachium which have rarely been reported from sponges. Members affiliated to the genera Bartalinia and Volutella as well as to a presumably new Phoma species were first isolated from a sponge in this study. On the basis of their classification, strains were selected for analysis of their ability to produce natural products. In addition to a number of known compounds, several new natural products were identified. The scopularides and sorbifuranones have been described elsewhere. We have isolated four additional substances which have not been described so far. The new metabolite cillifuranone (>1) was isolated from Penicillium chrysogenum strain LF066. The structure of cillifuranone (>1) was elucidated based on 1D and 2D NMR analysis and turned out to be a previously postulated intermediate in sorbifuranone biosynthesis. Only minor antibiotic bioactivities of this compound were found so far.
机译:通过形态学标准和基于内部转录间隔区(ITS)的系统发育分析,分离并鉴定了与海洋海绵Tethya aurantium相关的真菌。对他们的次级代谢产物进行了评估。在鉴定出的81个分离株中,鉴定出21属的成员。一些属如顶孢属,曲霉属,镰刀菌属,青霉属,Phoma和木霉属很常见,但是我们也分离了属于海绵状芽孢杆菌,表球菌,副球菌和Tritirachium属的菌株,很少在海绵中报道过。在这项研究中,首先从海绵中分离出属于Bartalinia和Volutella属以及可能是新的Phoma属的成员。根据其分类,选择菌株以分析其生产天然产物的能力。除许多已知化合物外,还鉴定了几种新的天然产物。在其他地方已经描述了二十碳皂苷和山梨呋喃酮。我们还分离了四种其他物质,到目前为止尚未进行描述。从产黄青霉菌株LF066中分离出新的代谢产物茜草呋喃酮(> 1 )。通过1D和2D NMR分析阐明了茜草呋喃酮(> 1 )的结构,结果证明是茜草呋喃酮生物合成中先前假定的中间体。到目前为止,仅发现该化合物的少量抗生素生物活性。

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