Cyanobacterial Toxins—An Update of Toxins from Blue Biotechnology and Ecotoxicology Culture Collection (LEGE-CC)

Flavio Luis de Oliveira, Raquel Silva, J. Morais, Pedro Cruz, V. Vasconcelos
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Abstract

: Cyanobacteria are microorganisms that have remarkable adaptability and can inhabit various types of aquatic and terrestrial ecosystems worldwide, including extreme environments. This group of organisms is considered a rich source of secondary metabolites with potential biotech-nological applications and has the capability to produce some potent cyanotoxins that can induce consequences to human health. The Blue Biotechnology and Ecotoxicology Culture Collection (LEGE-CC) is a biological resource center located at the Interdisciplinary Centre of Marine and Environmental Research (CIIMAR), comprising more than 1200 different cyanobacterial and microalgae strains. Until now, 36 strains have been reported as producers of cyanotoxins distributed within different cyanobacterial orders. Recently, LEGE-CC has increased in numbers due to the isolation effort that has been made. In this work, a screening of more than 200 cyanobacterial isolates from subaerial and freshwater environments targeted the genes involved in the biosynthesis of cyanotoxins. As expected, genes involved in cylindrospermopsin, saxitoxin, anatoxin and microcystin production were detected by molecular biology tools. The strains where the genes were detected were grown and sent to liquid chromatography–mass spectrometry (LC-MS) to confirm the production of cyanotoxins. As a culture collection, the screening of cyanotoxins is an essential aspect of cyanobacterial research and provides a comprehensive idea of the production of these toxins for future works.
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蓝藻毒素——蓝色生物技术和生态毒理学培养收集(LEGE-CC)毒素的最新进展
蓝藻是一种具有显著适应性的微生物,可以在全球各种类型的水生和陆地生态系统中生存,包括极端环境。这类生物被认为是次生代谢物的丰富来源,具有潜在的生物技术应用价值,并有能力产生一些可能对人类健康造成后果的强效蓝藻毒素。蓝色生物技术和生态毒理学培养集(LEGE-CC)是位于海洋与环境研究跨学科中心(CIIMAR)的生物资源中心,包括1200多种不同的蓝藻和微藻菌株。到目前为止,36株菌株已被报道为蓝藻毒素的生产者分布在不同的蓝藻菌目。最近,由于采取了隔离措施,LEGE-CC的人数有所增加。在这项工作中,筛选了200多株来自陆地和淡水环境的蓝藻分离物,针对参与蓝藻毒素生物合成的基因。正如预期的那样,通过分子生物学工具检测了与柱体精子素、蛤蚌毒素、阿那托毒素和微囊藻毒素产生有关的基因。对检测到基因的菌株进行培养,并将其发送到液相色谱-质谱联用(LC-MS)以确认是否产生了蓝藻毒素。作为一种培养集合,筛选蓝藻毒素是蓝藻研究的一个重要方面,并为未来的工作提供了这些毒素的生产的一个全面的想法。
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