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首页> 外文期刊>Applied and Environmental Microbiology >Detection of Microcystin-Producing Cyanobacteria in Finnish Lakes with Genus-Specific Microcystin Synthetase Gene E (mcyE) PCR and Associations with Environmental Factors
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Detection of Microcystin-Producing Cyanobacteria in Finnish Lakes with Genus-Specific Microcystin Synthetase Gene E (mcyE) PCR and Associations with Environmental Factors

机译:用特异性微囊素合成酶基因E(Mcye)PCR和环境因子的关联的芬兰湖泊中生成微囊藻毒素的蓝细菌

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摘要

We studied the frequency and composition of potential microcystin (MC) producers in 70 Finnish lakes with general and genus-specific microcystin synthetase gene E (mcyE) PCR. Potential MC-producing Microcystis, Planktothrixand Anabaena spp. existed in 70%, 63%, and 37% of the lake samples, respectively. Approximately two-thirds of the lake samples contained one or two potential MC producers, while all three genera existed in 24% of the samples. In oligotrophic lakes, the occurrence of only one MC producer was most common. The combination of Microcystis and Planktothrix was slightly more prevalent than others in mesotrophic lakes, and the cooccurrence of all three MC producers was most widespread in both eutrophic and hypertrophic lakes. The proportion of the three-producer lakes increased with the trophic status of the lakes. In correlation analysis, the presence of multiple MC-producing genera was associated with higher cyanobacterial and phytoplankton biomass, pH, chlorophyll a, total nitrogen, and MC concentrations. Total nitrogen, pH, and the surface area of the lake predicted the occurrence probability of mcyE genes, whereas total phosphorus alone accounted for MC concentrations in the samples by logistic and linear regression analyses. In conclusion, the results suggested that eutrophication increased the cooccurrence of potentially MC-producing cyanobacterial genera, raising the risk of toxic-bloom formation.
机译:我们研究了70个芬兰湖泊的潜在微囊虫(MC)生产商的频率和组成,具有一般和特异性的微阴化合成酶基因E(Mcye)PCR。潜在的MC-生产微囊杆菌,Planktothlixand Anabaena SPP。分别以70 %,63 %和37 %的湖水样本存在。大约三分之二的湖水样本包含一个或两个潜在的MC生产商,而所有三个属于24 %的样品存在。在寡营养湖中,只有一个MC生产商的发生最常见。微囊杆菌和Planktothrix的组合比介于培养阶湖泊中的其他略微普遍,并且所有三种MC生产者的共同电流在富营养化和肥厚湖中最普遍普及。三种生产者湖泊的比例随着湖泊的营养状况而增加。在相关性分析中,多种MC的存在与更高的蓝藻和浮游生物质,pH,叶绿素A,总氮和MC浓度有关。湖泊的总氮,pH和表面积预测了Mcye基因的发生概率,而单独占样品中的MC浓度的总磷通过物流和线性回归分析。总之,结果表明,富营养化增加了潜在的MC产生的蓝藻属的共同性,提高了毒性盛开的风险。

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