National Research Council-Institute for the Study of Anthropogenic Impacts and Sustainability in the Marine Environment (IAS-CNR), Laboratory of Molecular Ecology and Biotechnology, Capo Granitola, Via del mare, Campobello di Mazara (TP), 91021 Sicily, Italy.
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS, GSP-7, ul. Miklukho-Maklaya, 16/10, 117997 Moscow, Russia.
Mar Drugs. 2018 Oct 25;16(11):407. doi: 10.3390/md16110407.
Blue biotechnologies implement marine bio-resources for addressing practical concerns. The isolation of biologically active molecules from marine animals is one of the main ways this field develops. Strikingly, cnidaria are considered as sustainable resources for this purpose, as they possess unique cells for attack and protection, producing an articulated cocktail of bioactive substances. The Mediterranean sea anemone has been studied extensively for years. In this short review, we summarize advances in bioprospecting of the toxin arsenal. RNA datasets and toxin data mining approaches are briefly described. Analysis reveals the major pool of neurotoxins of , which are particularly active on sodium and potassium channels. This review therefore integrates progress in both RNA-Seq based and biochemical-based bioprospecting of toxins for biotechnological exploitation.
蓝色生物技术利用海洋生物资源来解决实际问题。从海洋动物中分离具有生物活性的分子是该领域发展的主要途径之一。引人注目的是,刺胞动物被认为是这方面的可持续资源,因为它们拥有用于攻击和保护的独特细胞,产生了一系列生物活性物质。地中海海葵多年来一直受到广泛研究。在这篇简短的综述中,我们总结了生物勘探毒素库的进展。简要描述了 RNA 数据集和毒素数据挖掘方法。分析揭示了 的主要神经毒素库,这些毒素对钠和钾通道特别活跃。因此,本综述综合了基于 RNA-Seq 和基于生化的 毒素生物勘探技术在生物技术开发方面的进展。