Bioprospection of Toxin-Producing Cyanobacteria in the BACA Culture Collection

Inês Borges, Elisabete Dias, Rita Cordeiro, Amélia Fonseca
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Abstract

: With the increased eutrophication of water bodies due to anthropogenic activities and climate change, aquatic environments have increased the growth of cyanobacteria blooms worldwide. In addition, these microorganisms may produce toxic secondary metabolites (cyanotoxins), such as microcystins, saxitoxins, cylindrospermopsins, and anatoxin-a. These are harmful to human health and to other organisms that come into contact with contaminated waters, resulting in hepatotoxic, dermatotoxic, neurotoxic pathologies, and death. As we still do not know all the cyanobacteria species that can produce them, this study aimed to search for the presence of cyanotoxin biosynthesis genes in cyanobacteria strains isolated from the lakes of the Azores and to assess the risk of toxicity to public health. Therefore, molecular techniques were used to identify the cyanotoxins biosynthesis genes in thirty cultured strains deposited in the Azorean Bank of Algae and Cyanobacteria (BACA). The results revealed the presence of eleven strains with the the ana F gene, of which, two had the the ana C gene. Given that the presence of these strains in lakes may represent a public health risk, the continuous monitoring of water quality and cyanotoxin presence in water bodies of the region is essential so that risk can be determined. Measures must be implemented to minimize this problem while preserving the population’s life quality.
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产毒蓝藻在BACA培养物中的生物展望
由于人类活动和气候变化导致水体富营养化加剧,水生环境增加了世界范围内蓝藻华的生长。此外,这些微生物可能产生有毒的次生代谢物(蓝藻毒素),如微囊藻毒素、蛤蚌毒素、柱体精子素和anatoxin-a。这些物质对人体健康和与受污染的水接触的其他生物体有害,导致肝毒性、皮肤毒性、神经毒性病变和死亡。由于我们仍然不知道可以产生它们的所有蓝藻物种,本研究旨在寻找从亚速尔群岛湖泊分离的蓝藻菌株中存在的蓝藻毒素生物合成基因,并评估对公众健康的毒性风险。为此,采用分子技术对亚速尔藻类和蓝藻银行(BACA)中30株培养菌株的蓝藻毒素生物合成基因进行了鉴定。结果显示,11株菌株含有ana F基因,其中2株含有ana C基因。鉴于这些菌株在湖泊中的存在可能构成公共健康风险,因此必须持续监测该区域水体中的水质和蓝藻毒素的存在,以便确定风险。必须采取措施尽量减少这一问题,同时保持人口的生活质量。
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