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首页> 外文期刊>Environmental microbiology >Underestimated biodiversity as a major explanation for the perceived rich secondary metabolite capacity of the cyanobacterial genus Lyngbya
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Underestimated biodiversity as a major explanation for the perceived rich secondary metabolite capacity of the cyanobacterial genus Lyngbya

机译:低估了生物多样性,这是对蓝细菌属Lyngbya感知到的丰富的次级代谢产物能力的主要解释

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Marine cyanobacteria are prolific producers of bioactive secondary metabolites responsible for harmful algal blooms as well as rich sources of promising biomedical lead compounds. The current study focused on obtaining a clearer understanding of the remarkable chemical richness of the cyanobacterial genus Lyngbya. Specimens of Lyngbya from various environmental habitats around Cura?ao were analysed for their capacity to produce secondary metabolites by genetic screening of their biosynthetic pathways. The presence of biosynthetic pathways was compared with the production of corresponding metabolites by LC-ESI-MS~2 and MALDI-TOF-MS. The comparison of biosynthetic capacity and actual metabolite production revealed no evidence of genetic silencing in response to environmental conditions. On a cellular level, the metabolic origin of the detected metabolites was pinpointed to the cyanobacteria, rather than the sheath-associated heterotrophic bacteria, by MALDI-TOF-MS and multiple displacement amplification of single cells. Finally, the traditional morphology-based taxonomic identifications of these Lyngbya populations were combined with their phylogenetic relationships. As a result, polyphyly of morphologically similar cyanobacteria was identified as the major explanation for the perceived chemical richness of the genus Lyngbya, a result which further underscores the need to revise the taxonomy of this group of biomedically important cyanobacteria.
机译:海洋蓝细菌是产生有害藻类的生物活性次生代谢产物的丰富生产者,也是有前途的生物医学先导化合物的丰富来源。当前的研究集中在对蓝细菌属Lyngbya的显着化学丰富性有更清晰的了解。通过对库拉索岛周围各种环境栖息地的Lyngbya标本的生物合成途径进行遗传分析,分析了它们产生次生代谢产物的能力。通过LC-ESI-MS〜2和MALDI-TOF-MS,将生物合成途径的存在与相应代谢产物的产生进行了比较。生物合成能力和实际代谢产物产量的比较显示,没有证据表明对环境条件有遗传沉默作用。在细胞水平上,通过MALDI-TOF-MS和单个细胞的多置换扩增,将检测到的代谢物的代谢起源定位到蓝细菌,而不是与鞘相关的异养细菌。最后,将这些Lyngbya种群的基于形态学的传统分类学识别与它们的系统发生关系相结合。结果,形态相似的蓝细菌的多谱性被鉴定为Lyngbya属感知到的化学丰富度的主要解释,其结果进一步强调了修改这组生物医学上重要的蓝细菌的分类法的必要性。

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