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首页> 外文期刊>Toxins >Differential Toxicity of Cyanobacteria Isolated from Marine Sponges towards Echinoderms and Crustaceans
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Differential Toxicity of Cyanobacteria Isolated from Marine Sponges towards Echinoderms and Crustaceans

机译:从海洋海绵中分离出来的蓝细菌对棘皮动物和甲壳类动物的毒性差异。

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Marine sponges and cyanobacteria have a long history of co-evolution, with documented genome adaptations in cyanobionts. Both organisms are known to produce a wide variety of natural compounds, with only scarce information about novel natural compounds produced by cyanobionts. In the present study, we aimed to address their toxicological potential, isolating cyanobacteria ( n = 12) from different sponge species from the coast of Portugal (mainland, Azores, and Madeira Islands). After large-scale growth, we obtained both organic and aqueous extracts to perform a series of ecologically-relevant bioassays. In the acute toxicity assay, using nauplii of Artemia salina , only organic extracts showed lethality, especially in picocyanobacterial strains. In the bioassay with Paracentrotus lividus , both organic and aqueous extracts produced embryogenic toxicity (respectively 58% and 36%), pointing to the presence of compounds that interfere with growth factors on cells. No development of pluteus larvae was observed for the organic extract of the strain Chroococcales 6MA13ti, indicating the presence of compounds that affect skeleton formation. In the hemolytic assay, none of the extracts induced red blood cells lysis. Organic extracts, especially from picoplanktonic strains, proved to be the most promising for future bioassay-guided fractionation and compounds isolation. This approach allows us to classify the compounds extracted from the cyanobacteria into effect categories and bioactivity profiles.
机译:海洋海绵和蓝细菌具有共同进化的悠久历史,并有文献记载了蓝藻中的基因组适应性。已知这两种生物都可以产生各种各样的天然化合物,而关于氰基氰化物产生的新型天然化合物的信息很少。在本研究中,我们旨在解决其毒理学潜力,从葡萄牙海岸(大陆,亚速尔群岛和马德拉群岛)的不同海绵物种中分离出蓝细菌(n = 12)。大规模生长后,我们获得了有机提取物和水性提取物,以进行一系列与生态相关的生物测定。在急性毒性试验中,使用卤虫无节幼体,仅有机提取物显示出致死性,特别是在微蓝细菌菌株中。在使用Paracentrotus lividus的生物测定中,有机提取物和水性提取物均产生胚胎发生毒性(分别为58%和36%),表明存在干扰细胞生长因子的化合物。菌株Chocococcales 6MA13ti的有机提取物未观察到发育期幼虫的发育,表明存在影响骨骼形成的化合物。在溶血测定中,没有提取物诱导红细胞裂解。事实证明,有机提取物,尤其是来自皮微浮游生物菌株的有机提取物,是未来生物测定指导的分离和化合物分离的最有希望的方法。这种方法使我们可以将从蓝细菌中提取的化合物分类为作用类别和生物活性图谱。

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