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系统发育推断揭示了富含化学物质的热带海洋蓝细菌中大量新的生物多样性。

Phylogenetic inferences reveal a large extent of novel biodiversity in chemically rich tropical marine cyanobacteria.

机构信息

Smithsonian Marine Station at Fort Pierce, Fort Pierce, Florida, USA.

出版信息

Appl Environ Microbiol. 2013 Mar;79(6):1882-8. doi: 10.1128/AEM.03793-12. Epub 2013 Jan 11.

Abstract

Benthic marine cyanobacteria are known for their prolific biosynthetic capacities to produce structurally diverse secondary metabolites with biomedical application and their ability to form cyanobacterial harmful algal blooms. In an effort to provide taxonomic clarity to better guide future natural product drug discovery investigations and harmful algal bloom monitoring, this study investigated the taxonomy of tropical and subtropical natural product-producing marine cyanobacteria on the basis of their evolutionary relatedness. Our phylogenetic inferences of marine cyanobacterial strains responsible for over 100 bioactive secondary metabolites revealed an uneven taxonomic distribution, with a few groups being responsible for the vast majority of these molecules. Our data also suggest a high degree of novel biodiversity among natural product-producing strains that was previously overlooked by traditional morphology-based taxonomic approaches. This unrecognized biodiversity is primarily due to a lack of proper classification systems since the taxonomy of tropical and subtropical, benthic marine cyanobacteria has only recently been analyzed by phylogenetic methods. This evolutionary study provides a framework for a more robust classification system to better understand the taxonomy of tropical and subtropical marine cyanobacteria and the distribution of natural products in marine cyanobacteria.

摘要

底栖海洋蓝藻以其丰富的生物合成能力而闻名,能够产生具有生物医药应用价值的结构多样的次生代谢产物,并具有形成蓝藻有害藻华的能力。为了提供更明确的分类学指导,以更好地指导未来的天然产物药物发现研究和有害藻华监测,本研究基于进化相关性调查了热带和亚热带具有天然产物生产能力的海洋蓝藻的分类学。我们对负责 100 多种生物活性次生代谢产物的海洋蓝藻菌株的系统发育推断揭示了不均匀的分类分布,少数几个群体负责了绝大多数这些分子。我们的数据还表明,具有天然产物生产能力的菌株具有高度的新生物多样性,这是以前基于传统形态学分类方法所忽略的。这种未被认识的生物多样性主要是由于缺乏适当的分类系统,因为热带和亚热带底栖海洋蓝藻的分类学最近才通过系统发育方法进行了分析。这项进化研究为更强大的分类系统提供了一个框架,以更好地理解热带和亚热带海洋蓝藻的分类学以及海洋蓝藻中天然产物的分布。

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