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Validation of algal viability treated with total residual oxidant and organic matter by flow cytometry

机译:通过流式细胞仪验证总残留氧化剂和有机物处理藻类的生存能力

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Algal cell growth after starch and oxidant treatments in seawater species (Isochrysis galbana and Phaeodactylum tricornutum) and freshwater species (Selenastrum capricornutum and Scenedesmus obliquus) were evaluated by flow cytometry with fluorescein diacetate (FDA) staining to determine algal viability. Growth of algal cell was found to be significantly different among groups treated with NaOCl, starch and/or sodium thiosulfate, which are active substance (Total Residual Oxidant; TRO as Cl-2), organic compound to meet efficacy testing standard and neutralizer of TRO by Ballast Water Management Convention of International Maritime Organization, respectively. The viability of algal cell treated with TRO in starch-add culture of 5 days after treatment and neutralization was decreased significantly. ATP contents of the treated algal cells corresponded to the FL1 fluorescent signal of flow cytometry with FDA staining. I. galbana was the most sensitive to TRO-neutralized cultures during viability analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:淀粉和氧化剂处理后的藻类细胞在海水物种(Isochrysis galbana和Phaeodyylum tricornutum)和淡水物种(Selenastrum capricornutum和Scenedesmus obliquus)中的流式细胞仪通过双乙酸荧光素(FDA)染色来评估藻类的生存能力。发现用NaOCl,淀粉和/或硫代硫酸钠作为活性物质(总残留氧化剂; TRO为Cl-2),满足功效测试标准的有机化合物和TRO的中和剂处理的组中,藻类细胞的生长显着不同。分别由国际海事组织的压载水管理公约授予。在处理和中和5天后,在添加淀粉的培养物中,用TRO处理的藻类细胞的活力显着降低。处理过的藻类细胞的ATP含量对应于FDA染色的流式细胞仪FL1荧光信号。在活力分析过程中,加尔纳假单胞菌对TRO中和的培养物最敏感。 (C)2015 Elsevier Ltd.保留所有权利。

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