School of life science, Nanjing University, 21 Hankou Road, Nanjing Jiangsu Province 210093, China.
Water Sci Technol. 2010;62(2):317-23. doi: 10.2166/wst.2010.214.
Harmful cyanobacterial blooms cause water deterioration and threaten human health. It is necessary to remove harmful cyanobacteria with useful methods. A bio-treatment may be one of the best ways to do this. A strain of specific white-rot fungus, Lopharia spadicea, with algicidal ability was isolated. Its algicidal ability on algae under various conditions was determined using three main influence factors: initial chlorophyll-a content, initial pH, and algal cell mixture. The result showed that the chlorophyll-a content of Microcystis aeruginosa FACHB-912, Oocystis borgei FACHB-1108, and Microcystis flos-aquae FACHB-1028 decreased from 798+/-13, 756+/-40, and 773+/-24 microg/L to 0 within 39 h. L. spadicea could also remove more than 95% chlorophyll-a when initial chlorophyll-a content increased from 397+/-13 to 2,132+/-4 microg/L. Moreover, the strain has great removal ability under a broad initial pH range of 5.5 to 9.5. The chlorophyll-a content of the three algal strain mixtures decreased from about 672+/-23 microg/L to 0 within 45 h. After superoxide dismutase (SOD) and malondialdehyde (MAD) were assessed in a co-culture of L. spadicea, it was observed that an increase in MAD content was correlated with the decrease in chlorophyll-a content of M. aeruginosa FACHB-912. This result suggested that the algae was not only greatly inhibited but also severely damaged by the fungus.
有害蓝藻水华导致水质恶化,威胁人类健康。因此,必须采用有用的方法去除有害蓝藻。生物处理可能是一种最佳方法。本研究从一株具有杀藻能力的特定白腐真菌——大秃马勃(Lopharia spadicea)中分离得到了一种杀藻菌株。通过 3 个主要影响因素:初始叶绿素-a 含量、初始 pH 值和藻细胞混合物,确定了该菌株在各种条件下对藻类的杀藻能力。结果表明,初始叶绿素-a 含量分别为 798+/-13、756+/-40 和 773+/-24μg/L 的铜绿微囊藻 FACHB-912、卵囊藻 FACHB-1108 和水花束丝藻 FACHB-1028 的叶绿素-a 含量在 39 h 内分别降低至 0。当初始叶绿素-a 含量从 397+/-13 增加到 2,132+/-4μg/L 时,L. spadicea 也能去除超过 95%的叶绿素-a。此外,该菌株在初始 pH 值为 5.5 到 9.5 的较宽范围内具有很强的去除能力。三种藻混合培养时,叶绿素-a 含量在 45 h 内从约 672+/-23μg/L 降低至 0。在大秃马勃与铜绿微囊藻 FACHB-912 的共培养中评估超氧化物歧化酶(SOD)和丙二醛(MDA)后发现,MDA 含量的增加与铜绿微囊藻 FACHB-912 的叶绿素-a 含量的降低相关。该结果表明,真菌不仅能强烈抑制藻类生长,还能严重破坏藻类。