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Emerging Concepts Promising New Horizons for Marine Biodiscovery and Synthetic Biology

机译:新兴概念为海洋生物发现和合成生物学开辟了新视野

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The vast oceans of the world, which comprise a huge variety of unique ecosystems, are emerging as a rich and relatively untapped source of novel bioactive compounds with invaluable biotechnological and pharmaceutical potential. Evidence accumulated over the last decade has revealed that the diversity of marine microorganisms is enormous with many thousands of bacterial species detected that were previously unknown. Associated with this diversity is the production of diverse repertoires of bioactive compounds ranging from peptides and enzymes to more complex secondary metabolites that have significant bioactivity and thus the potential to be exploited for innovative biotechnology. Here we review the discovery and functional potential of marine bioactive peptides such as lantibiotics, nanoantibiotics and peptidomimetics, which have received particular attention in recent years in light of their broad spectrum of bioactivity. The significance of marine peptides in cell-to-cell communication and how this may be exploited in the discovery of novel bioactivity is also explored. Finally, with the recent advances in bioinformatics and synthetic biology, it is becoming clear that the integration of these disciplines with genetic and biochemical characterization of the novel marine peptides, offers the most potential in the development of the next generation of societal solutions.
机译:世界上广阔的海洋由各种独特的生态系统组成,它们正作为具有丰富生物技术和制药潜力的新型生物活性化合物的丰富且相对未被开发的来源而兴起。在过去十年中积累的证据表明,海洋微生物的多样性非常巨大,发现了成千上万种以前未知的细菌。与这种多样性相关的是多种生物活性化合物的生产,从肽和酶到具有重要生物活性的更复杂的次生代谢产物,因此具有开发创新生物技术的潜力。在这里,我们回顾海洋生物活性肽(如羊毛硫抗生素,纳米抗生素和拟肽药物)的发现及其功能潜力,鉴于其广泛的生物活性,近年来它们受到了特别关注。还探讨了海洋肽在细胞间通信中的重要性以及在发现新的生物活性中如何利用海洋肽。最后,随着生物信息学和合成生物学的最新进展,越来越明显的是,这些学科与新型海洋肽的遗传和生化特性的整合,为下一代社会解决方案的开发提供了最大的潜力。

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