Sampling Campaign along Moroccan Atlantic Coast: Cyanobacteria Isolation and Molecular Screening of Cyanotoxins

Raquel Silva, J. Morais, Flávio Oliveira, B. Sabour, V. Vasconcelos
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Abstract

: Cyanobacteria are considered a rich source of secondary metabolites with potential biotech-nological applications. Additionally, they have the capability to produce some potent toxins (cyan-otoxins) that can have consequences for both environmental and human health. This group of microorganisms with a long evolutionary history and a remarkable adaptability can be found both in aquatic and terrestrial ecosystems, including extreme environments (e.g., freshwater, marine, terrestrial, hot springs, deserts, etc.). Cyanotoxins can be classified into five functional groups according to their primary target organ or effects being designated as hepatotoxins, neurotoxins, cytotoxins, dermatotoxins, and irritant toxins. In this work, the presence of genes involved in the biosynthesis of cyanotoxins (microcystin, saxitoxin, cylindrospermopsin, and anatoxin) were screened from more than 200 strains of cyanobacteria. The isolates were obtained from different samples along the Moroccan Atlantic coast (several sampling sites from El Jadida to Essaouira), and from an ancient Portuguese cistern located at El Jadida. There is a gap in the literature regarding the presence of cyanotoxins in this region and some of the isolated strains are related to genera (e.g., Phormidium sp., Pseudanabaena sp., Leptolyngbya sp., Lyngbya sp., and Geitlerinema sp.) that have been reported as potential cyanotoxins producers. Future work will include detection by liquid chromatography–mass spectrometry (LC-MS) to confirm the production of cyanotoxins. Furthermore, the isolates will be deposited in our in-house culture collection (LEGE-CC), and will be available for future studies, increasing the size and diversity of the collection.
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摩洛哥大西洋沿岸取样运动:蓝藻分离和蓝藻毒素的分子筛选
蓝藻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。此外,它们有能力产生一些对环境和人类健康都有影响的强效毒素(青色毒素)。这类微生物具有悠久的进化历史和卓越的适应性,可以在水生和陆地生态系统中找到,包括极端环境(如淡水、海洋、陆地、温泉、沙漠等)。蓝藻毒素可根据其主要靶器官或作用分为五个功能组,分别为肝毒素、神经毒素、细胞毒素、皮肤毒素和刺激性毒素。在这项工作中,从200多株蓝藻细菌中筛选了参与蓝藻毒素(微囊藻毒素、蛤蚌毒素、柱精子素和anatoxin)生物合成的基因。这些分离株来自摩洛哥大西洋沿岸的不同样本(从El Jadida到Essaouira的几个采样点)以及位于El Jadida的一个古老的葡萄牙贮水池。关于该地区存在蓝藻毒素的文献存在空白,并且一些分离的菌株与已被报道为潜在蓝藻毒素产生者的属(例如,Phormidium sp., Pseudanabaena sp., leptolyynbya sp., Lyngbya sp.和Geitlerinema sp.)有关。未来的工作将包括液相色谱-质谱(LC-MS)检测,以确认蓝藻毒素的产生。此外,分离株将存放在我们的内部培养收集(LEGE-CC)中,并将用于未来的研究,增加收集的规模和多样性。
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