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Differential effects of nitrate and ammonium on the growth of algae and microcystin production by nitrogen-fixing Nostoc sp. and non-nitrogen-fixing Microcystis aeruginosa

微囊藻毒素 蓝藻 铜绿微囊藻 硝酸盐 发菜 生物 固氮酶 藻类 固氮 微囊藻 光合作用 环境化学 植物 微生物学 化学 细菌 生态学 有机化学 遗传学
作者
Ning Yang,Zipeng Li,Zhengyu Wu,Xianhua Liu,Yiyan Zhang,Tao Sun,Xuejun Wang,Yingxin Zhao,Yindong Tong
出处
期刊:Water Science and Technology [IWA Publishing]
卷期号:88 (1): 136-150 被引量:19
标识
DOI:10.2166/wst.2023.205
摘要

Abstract Cyanotoxins produced by cyanobacteria are a significant threat to human health. However, their responses to nitrogen (N) supplies could differ between N-fixing and non-N-fixing species, which has been poorly understood. This study aimed to compare the responses of the non-N-fixing Microcystis aeruginosa and N-fixing Nostoc sp. to varying concentrations of nitrate and ammonium. This comparison had been conducted by analyzing chlorophyll-a contents, maximum quantum efficiencies of photosystem II, microcystin production, and related gene expressions. Our findings revealed that nitrate substantially stimulated the growth of both M. aeruginosa and Nostoc sp. with biomass increase by 366.2 ± 56.5 and 93.0 ± 14.0%, respectively, at 16 mg-N/L. In contrast, high ammonium concentrations suppressed their growth. Furthermore, the intracellular concentration of microcystins produced by M. aeruginosa was higher under high nitrate. Extracellular microcystins showed an opposite trend to increases in nitrate and ammonium. Ammonium increases the production and releases microcystin from Nostoc sp. N metabolism genes showed a similar trend with toxin formation genes, which were up-regulated under the high N treatments. This study provides valuable insights into the impacts of N supplies on growths of N- and non-N-fixing cyanobacteria, as well as microcystin production, which helps to develop effective strategies for managing cyanobacterial blooms.
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