College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, PR China.
College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, PR China.
Chemosphere. 2021 Oct;281:130742. doi: 10.1016/j.chemosphere.2021.130742. Epub 2021 May 11.
Colony formation is a key process for the occurrence of Microcystis blooms. In order to inhibit colony formation of Microcystis at high level of iron using humic acid, unicellular Microcystis aeruginosa was cultivated in laboratory treated with varying concentrations of iron and humic acid. Our results showed that the extracellular polysaccharides (EPS) content and average colony size increased from 0.57 pg cells and 4.0 μm to 0.93 pg cells and 26.1 μm, respectively, while iron concentration increased from 0.68 mg L to 6.8 mg L, suggesting that high level of iron stimulated EPS secretion and induced unicellular Microcystis to form colonies. Transcriptome analysis showed that two genes described as glycosyltransferases (BH695-2217 and BH695-3696) were significantly up-regulated while EPS content increased with increasing iron concentration indicating that iron may regulate the expression of genes involved in polysaccharide synthesis. When treated with 10 mg C L humic acid at high level of iron, the EPS content and average colony size decreased by 35.5% and 56.3%, respectively, revealing that humic acid inhibited EPS secretion under high level of iron condition, and ultimately inhibited colony formation of Microcystis. Our results suggested that humic acid could be used as an agentia inhibiting large colony formation of Microcystis and thereby reducing the occurrence of Microcystis blooms.
集落形成是微囊藻水华发生的关键过程。为了利用腐殖酸抑制高水平铁条件下微囊藻的集落形成,采用不同浓度铁和腐殖酸处理,在实验室中培养单细胞铜绿微囊藻。结果表明,当铁浓度从 0.68mg/L 增加到 6.8mg/L 时,胞外多糖(EPS)含量和平均集落大小分别从 0.57pg 细胞和 4.0μm 增加到 0.93pg 细胞和 26.1μm,这表明高水平铁刺激 EPS 分泌并诱导单细胞微囊藻形成集落。转录组分析表明,当 EPS 含量随铁浓度增加而增加时,有两个被描述为糖基转移酶的基因(BH695-2217 和 BH695-3696)显著上调,表明铁可能调节参与多糖合成的基因表达。当在高水平铁条件下用 10mgC/L 腐殖酸处理时,EPS 含量和平均集落大小分别下降了 35.5%和 56.3%,表明腐殖酸在高水平铁条件下抑制 EPS 分泌,最终抑制微囊藻集落形成。研究结果表明,腐殖酸可用作抑制微囊藻大集落形成的药剂,从而减少微囊藻水华的发生。