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从具有强烈杀藻作用的 Deinococcus sp. Y35 中首次发现脱氮黄嘌呤。

The first evidence of deinoxanthin from Deinococcus sp. Y35 with strong algicidal effect on the toxic dinoflagellate Alexandrium tamarense.

机构信息

State Key Laboratory of Marine Environmental Science and Key Laboratory of MOE for Coast and Wetland Ecosystems, School of Life Sciences, Xiamen University, Xiamen 361005, China.

Key Laboratory of Marine Ecology and Environmental Science, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

出版信息

J Hazard Mater. 2015 Jun 15;290:87-95. doi: 10.1016/j.jhazmat.2015.02.070. Epub 2015 Feb 27.

Abstract

Harmful algal blooms (HABs) could be deemed hazardous materials in aquatic environment. Alexandrium tamarense is a toxic HAB causing alga, which causes serious economic losses and health problems. In this study, the bacterium Deinococcus xianganensis Y35 produced a new algicide, showing a high algicidal effect on A. tamarense. The algicidal compound was identified as deinoxanthin, a red pigment, based on high resolution mass spectrometry and NMR after the active compound was isolated and purified. Deinoxanthin exhibited an obvious inhibitory effect on algal growth, and showed algicidal activity against A. tamarense with an EC50 of 5.636 μg/mL with 12h treatment time. Based on the unique structure and characteristics of deinoxanthin, the content of reactive oxygen species (ROS) increased after 0.5h exposure, the structure of organelles including chloroplasts and mitochondria were seriously damaged. All these results firstly confirmed that deinoxanthin as the efficient and eco-environmental algicidal compound has potential to be used for controlling harmful algal blooms through overproduction of ROS.

摘要

有害藻华(HABs)可被视为水生环境中的危险物质。塔玛亚历山大藻是一种产生毒素的有害藻华藻类,会造成严重的经济损失和健康问题。本研究中,解淀粉芽孢杆菌 Y35 产生了一种新型杀藻剂,对塔玛亚历山大藻表现出很高的杀藻效果。活性化合物经分离纯化后,根据高分辨质谱和 NMR 确定其为红色色素脱氮黄嘌呤,即杀藻化合物。脱氮黄嘌呤对藻类生长表现出明显的抑制作用,对塔玛亚历山大藻的杀藻活性 EC50 为 5.636μg/mL,处理 12h 后达到。基于脱氮黄嘌呤独特的结构和特性,暴露 0.5h 后活性氧(ROS)含量增加,叶绿体和线粒体等细胞器的结构严重受损。所有这些结果首次证实,脱氮黄嘌呤作为一种高效、环保的杀藻化合物,通过过量产生 ROS 具有控制有害藻华的潜力。

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