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Chemical investigations of marine filamentous and zoosporic fungi and studies in marine microbial chemical ecology.

机译:海洋丝状和游动性真菌的化学研究以及海洋微生物化学生态学的研究。

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The natural products chemistry of marine microorganisms is an emerging area of organic chemistry with the aim of discovering novel secondary metabolites exhibiting both biomedical and ecological activities. While marine bacteria have proven to be a productive source of new natural products, there are many groups of marine microorganisms which have not been fully investigated. In particular, marine fungi represent an untapped and potentially novel source of bioactive secondary metabolites. While the biomedical potential of marine microbial natural products is being investigated, it is the ecological role of these metabolites in the marine environment which has been completely ignored. The goal of this thesis research was to investigate the ecological role of secondary metabolites involved in the association of fungi with marine plants and to continue the development of marine fungi as a source of novel natural products.; The ecological study of chemical interactions between fungi and marine plants had two main foci: (1) the study of fungi as producers of chemical signals through the investigation of phytotoxic metabolites produced by algal associated fungi, and (2) to examine fungi as receivers of chemical messages by studying the mechanisms by which marine plants chemically control the distributions of fungi on their surfaces. The first objective was accomplished by showing that marine fungi produce potent phytotoxic metabolites which can inhibit the growth of marine algae, and thus may be important in the pathology of marine plants. The second goal was attained by demonstrating that the seagrass Thalassia testudinum is chemically defended against zoosporic marine fungi.; The second part of the thesis, the development of marine fungi as a source of new natural products, was investigated through the chemical study of fungal metabolites from both filamentous and zoosporic marine fungi. These studies led to the isolation of a large number of metabolites including a series of glycosphingolipids isolated from a group of previously unexplored marine microorganisms, zoosporic fungi. This work illustrates the potential for examining unusual or previously unexplored marine microbes for new secondary metabolites and further develops marine microorganisms as a source of novel natural products.
机译:海洋微生物的天然产物化学是有机化学的新兴领域,其目的是发现具有生物医学和生态活性的新型次生代谢产物。虽然海洋细菌已被证明是新的天然产物的生产来源,但仍有许多海洋微生物尚未得到充分研究。特别地,海洋真菌代表了生物活性次级代谢产物的未开发和潜在的新颖来源。在研究海洋微生物天然产物的生物医学潜力时,这些代谢产物在海洋环境中的生态作用已被完全忽略。本研究的目的是研究与真菌与海洋植物结合的次生代谢产物的生态作用,并继续发展海洋真菌作为新型天然产物的来源。真菌与海洋植物之间化学相互作用的生态学研究主要集中在两个方面:(1)通过研究藻类相关真菌产生的植物毒性代谢产物来研究真菌作为化学信号的产生者;(2)检查真菌是否是藻类的接收者。通过研究海洋植物化学控制真菌在其表面上的分布的机理来获得化学信息。通过显示海洋真菌产生有效的植物毒性代谢产物可抑制海洋藻类的生长,从而在海洋植物的病理学中发挥重要作用,从而实现了第一个目标。第二个目标是通过证明海草地中海藻在化学上防御游动性海洋真菌来实现的。本文的第二部分,通过对丝状和游动性海洋真菌的真菌代谢产物进行化学研究,研究了作为新的天然产物来源的海洋真菌的发展。这些研究导致分离出大量代谢产物,包括从一组以前未经探索的海洋微生物,即游动孢子真菌中分离出来的一系列糖鞘脂。这项工作说明了检查不寻常或以前未开发的海洋微生物中新的次级代谢产物的潜力,并进一步发展了海洋微生物作为新型天然产物的来源。

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