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Cyanobacterial Blue Color Formation during Lysis under Natural Conditions

机译:自然条件下裂解过程中蓝细菌蓝颜色的形成

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Cyanobacteria produce numerous volatile organic compounds (VOCs), such as β-cyclocitral, geosmin, and 2-methylisoborneol, which show lytic activity against cyanobacteria. Among these compounds, only β-cyclocitral causes a characteristic color change from green to blue (blue color formation) in the culture broth during the lysis process. In August 2008 and September 2010, the lysis of cyanobacteria involving blue color formation was observed at Lake Tsukui in northern Kanagawa Prefecture, Japan. We collected lake water containing the cyanobacteria and investigated the VOCs, such as β-cyclocitral, β-ionone, 1-propanol, 3-methyl-1-butanol, and 2-phenylethanol, as well as the number of cyanobacterial cells and their damage and pH changes. As a result, the following results were confirmed: the detection of several VOCs, including β-cyclocitral and its oxidation product, 2,2,6-trimethylcyclohexene-1-carboxylic acid; the identification of phycocyanin based on its visible spectrum; the lower pH (6.7 and 5.4) of the lysed samples; and characteristic morphological change in the damaged cyanobacterial cells. We also encountered the same phenomenon on 6 September 2013 in Lake Sagami in northern Kanagawa Prefecture and obtained almost the same results, such as blue color formation, decreasing pH, damaged cells, and detection of VOCs, including the oxidation products of β-cyclocitral. β-Cyclocitral derived from Microcystis has lytic activity against Microcystis itself but has stronger inhibitory activity against other cyanobacteria and algae, suggesting that the VOCs play an important role in the ecology of aquatic environments.
机译:蓝细菌会产生大量的挥发性有机化合物(VOC),例如β-环柠檬醛,土臭素和2-甲基异冰片醇,它们对蓝细菌具有溶解活性。在这些化合物中,只有β-环柠檬醛在裂解过程中引起培养液中从绿色到蓝色的特征性颜色变化(形成蓝色)。在2008年8月和2010年9月,在日本神奈川县北部的Tsukui湖观察到蓝细菌的裂解涉及蓝色的形成。我们收集了含有蓝细菌的湖水,并研究了VOC(例如β-环柠檬酸,β-紫罗兰酮,1-丙醇,3-甲基-1-丁醇和2-苯基乙醇)以及蓝细菌细胞的数量及其损害。和pH值变化。结果,证实了以下结果:检测了几种VOC,包括β-环柠檬醛及其氧化产物2,2,6-三甲基环己烯-1-羧酸;根据藻蓝蛋白的可见光谱进行鉴定;裂解样品的较低pH(6.7和5.4);受损蓝藻细胞的形态和特征形态变化。我们在2013年9月6日在神奈川县北部的相模湖也遇到了相同的现象,并获得了几乎相同的结果,例如蓝色形成,pH降低,细胞受损以及VOC的检测,包括β-环柠檬醛的氧化产物。源自微囊藻的β-Cyclocitral具有对微囊藻本身的裂解活性,但对其他蓝细菌和藻类具有更强的抑制活性,这表明VOC在水生生态环境中起着重要作用。

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