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基于饮用水库中基因丰度和表达的 MIB 事件早期预警。

Early warning of MIB episode based on gene abundance and expression in drinking water reservoirs.

机构信息

Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, P.O. Box 2871, Beijing, 100085, China; Sino-Danish College, University of Chinese Academy of Sciences, Beijing, 100049, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, P.O. Box 2871, Beijing, 100085, China.

出版信息

Water Res. 2023 Mar 1;231:119667. doi: 10.1016/j.watres.2023.119667. Epub 2023 Jan 26.

Abstract

Cellular 2-methylisoborneol (MIB) yield of cyanobacteria varies under different conditions according to culture studies and field investigations, the causal mechanism remains unclear and results in ineffective MIB prediction. Through an intensive field survey during an MIB episode produced by Pseudanabaena cinerea in QCS reservoir, we demonstrated that MIB synthesis (mic) gene abundance (DNA) and expression (RNA) might be useful as parameters for early warning of MIB production. It was found that the abundance of mic DNA and RNA peaked ahead of MIB concentrations by 10 and 7 days, respectively. In addition, the RNA abundance (R = 0.45, p < 0.01) showed a slightly higher correlation with MIB compared to DNA abundance (R = 0.37, p < 0.01), suggesting that the conditions for the growth of Pseudanabaena cinerea might be slightly different from those for mic gene expression, which was verified by a culture experiment. The highest cell growth was obtained under 36 μmol photons m s, while the highest cellular MIB yield and mic gene expression level were obtained under 85 μmol photons m s. Our results clearly supported that light intensity was the virtual regulator governing the mic gene expression within the controlled culture experiment and the actual MIB episode in the reservoir. Besides these results, we developed an early warning model using mic gene abundance as an indicator of MIB episodes, which was verified in two other reservoirs. Our findings highlight the effect of light intensity on mic gene expression and MIB synthesis and provide an early warning tool targeting MIB episode prediction, which therefore should be of importance for source water authorities.

摘要

通过对铜山库区由伪鱼腥藻引发的 2-甲基异莰醇(MIB)事件进行密集的野外调查,我们发现,MIB 合成(mic)基因丰度(DNA)和表达(RNA)可作为预测 MIB 产生的早期预警参数。研究表明,与 MIB 浓度相比,mic DNA 和 RNA 的丰度分别提前 10 天和 7 天达到峰值。此外,与 DNA 丰度相比(R=0.37,p<0.01),RNA 丰度(R=0.45,p<0.01)与 MIB 具有更高的相关性,这表明与 mic 基因表达相比,铜山藻生长的条件可能略有不同,这一结论在培养实验中得到了验证。在 36 μmol 光子 m s 下获得了最高的细胞生长,而在 85 μmol 光子 m s 下获得了最高的细胞 MIB 产量和 mic 基因表达水平。我们的研究结果清楚地表明,在受控培养实验和水库中实际的 MIB 事件中,光强是控制 mic 基因表达的虚拟调节因子。除了这些结果,我们还利用 mic 基因丰度作为 MIB 事件的指标,开发了一个早期预警模型,并在另外两个水库进行了验证。我们的研究结果强调了光强对 mic 基因表达和 MIB 合成的影响,并为预测 MIB 事件提供了早期预警工具,因此对水源管理部门具有重要意义。

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