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一种从太湖土著贝类中分离得到的新型杀藻细菌:鉴定、降解动力学和杀藻机制。

A novel algicidal bacteria isolated from native snail lived in Taihu Lake against algal blooms: identification, degradation kinetic, and algicidal mechanism.

机构信息

School of Environmental and Safety Engineering, Changzhou University, Changzhou, 213164, Jiangsu Province, China.

出版信息

Environ Sci Pollut Res Int. 2022 Nov;29(55):83921-83930. doi: 10.1007/s11356-022-21666-0. Epub 2022 Jul 1.

DOI:10.1007/s11356-022-21666-0
PMID:35776301
Abstract

Harmful algal blooms (HABs) impacted negatively the water ecosystem, and produced toxic microcystins that poses toxic effect on liver, nervous, and genital system. The introduction of useful and adaptive algae-degrading microbes or bio-augmentation can be regarded as an efficient way to inhibit the outbreak of HABs. The purpose of this study is to evaluate the application potential of algicidal bacteria named XMC, which is isolated from native snails. Response surface methodology (RSM) experiments showed that self-characteristic and various external conditions affected the actual algae inhibition ability of XMC. In particular, actual algicidal efficiency was strongly depend on the temperature and growth stage of XMC, and the maximum algicidal rate could reach 93.95% within 7 days. The degradation curve of Microcystis aeruginosa was compliant with the first-order kinetic model, which could be used to predict the degradation effect of Microcystis aeruginosa in engineering applications. The analysis results of algae dissolution products showed that algicidal bacteria XMC had both direct and indirect algicidal capacity. In addition, XMC had strong algicidal ability and greater environmental adaptability, and its algae dissolution products were environmentally friendly. All results indicated that XMC had the potential to be used in the bio-degradation of cyanobacteria bloom.

摘要

有害藻类水华(HABs)对水生态系统产生负面影响,并产生有毒的微囊藻毒素,对肝脏、神经系统和生殖系统产生毒性作用。引入有益和适应性藻类降解微生物或生物增强可以被视为抑制 HABs 爆发的有效方法。本研究的目的是评估从本地蜗牛中分离得到的杀藻细菌 XMC 的应用潜力。响应面法(RSM)实验表明,XMC 的自身特性和各种外部条件会影响其实际的藻类抑制能力。特别是,实际杀藻效率强烈依赖于 XMC 的温度和生长阶段,在 7 天内可达到 93.95%的最大杀藻率。铜绿微囊藻的降解曲线符合一级动力学模型,可用于预测铜绿微囊藻在工程应用中的降解效果。藻类溶解产物的分析结果表明,杀藻细菌 XMC 具有直接和间接的杀藻能力。此外,XMC 具有较强的杀藻能力和较大的环境适应性,其藻类溶解产物环保。所有结果表明,XMC 具有用于生物降解蓝藻水华的潜力。

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