Department of Polymer Science and Engineering, Chosun University, Kwangju, 501-759, Korea.
World J Microbiol Biotechnol. 2014 May;30(5):1603-14. doi: 10.1007/s11274-013-1584-x. Epub 2013 Dec 30.
Thiazolidinedione (TD) derivatives have been found to have an algicidal effect on harmful algal bloom microalgae. In this study, 75 TD derivatives were synthesized and analyzed for algicidal activity. Among these synthetic TDs, 18 TD derivatives showed specific algicidal activity on two strains belonging to the classes Raphidophyceae (Chattonella marina and Heterosigma akashiwo) and Dinophyceae (Cochlodinium polykrikoides). Two strains belonging to Bacillariophyceae (Navicula pelliculosa and Phaeodactylum EPV), one strain belonging to Dinophyceae (Amphidinium sp.), and a Eustigmatophycean microalga (Nannochloropsis oculata) showed less sensitivity to the TD derivatives than the other two phyla. The most reactive TD derivative, compound 2 (TD118), was selected and tested for morphological and physiological changes. TD118 effectively damaged the cell membrane of C. marina, H. akashiwo and C. polykrikoides. The O₂ evolution and photosystem II efficiency (F(v)/F(m)) of C. marina, H. akashiwo and C. polykrikoides were also severely reduced by TD118 treatment. Amphidinium sp., N. pelliculosa, Phaeodactylum EPV and N. oculata showed less reduction of O₂ evolution and the F(v)/F(m) by TD118. These results imply that the species-specific TD structure relationship may be due to structural and/or physiological differences among microalgal species.
噻唑烷二酮(TD)衍生物已被发现对有害藻类有杀藻作用。在本研究中,合成了 75 种 TD 衍生物并分析了其杀藻活性。在这些合成的 TD 中,有 18 种 TD 衍生物对属于红藻门(海链藻和赤潮异弯藻)和甲藻门(多甲藻)的两个菌株具有特定的杀藻活性。属于硅藻门(舟形藻和中肋骨条藻)的两个菌株、属于甲藻门(角藻)的一个菌株和一个黄藻门(眼点藻)的微藻对 TD 衍生物的敏感性低于其他两个门。选择反应性最强的 TD 衍生物,化合物 2(TD118)进行形态和生理变化测试。TD118 有效破坏了海链藻、赤潮异弯藻和多甲藻的细胞膜。TD118 处理还严重降低了海链藻、赤潮异弯藻和多甲藻的 O₂ 释放和光系统 II 效率(F(v)/F(m))。角藻、舟形藻、中肋骨条藻和眼点藻的 O₂ 释放和 F(v)/F(m)减少程度较小。这些结果表明,种特异性 TD 结构关系可能是由于微藻物种之间的结构和/或生理差异所致。