首页> 外文期刊>MicrobiologyOpen >Comparison of cyanobacterial microcystin synthetase (mcy) E gene transcript levels, mcy E gene copies, and biomass as indicators of microcystin risk under laboratory and field conditions
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Comparison of cyanobacterial microcystin synthetase (mcy) E gene transcript levels, mcy E gene copies, and biomass as indicators of microcystin risk under laboratory and field conditions

机译:蓝细菌微囊藻毒素合成酶(mcy)E基因转录水平,mcy E基因拷贝和生物量的比较,作为实验室和现场条件下微囊藻毒素风险的指标

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AbstractIncreased incidences of mixed assemblages of microcystin-producing and nonproducing cyanobacterial strains in freshwater bodies necessitate development of reliable proxies for cyanotoxin risk assessment. Detection of microcystin biosynthetic genes in water blooms of cyanobacteria is generally indicative of the presence of potentially toxic cyanobacterial strains. Although much effort has been devoted toward elucidating the microcystin biosynthesis mechanisms in many cyanobacteria genera, little is known about the impacts of co-occurring cyanobacteria on cellular growth, mcy gene expression, or mcy gene copy distribution. The present study utilized conventional microscopy, qPCR assays, and enzyme-linked immunosorbent assay to study how competition between microcystin-producing Microcystis aeruginosa CPCC 299 and Planktothrix agardhii NIVA-CYA 126 impacts mcyE gene expression, mcyE gene copies, and microcystin concentration under controlled laboratory conditions. Furthermore, analyses of environmental water samples from the Missisquoi Bay, Quebec, enabled us to determine how the various potential toxigenic cyanobacterial biomass proxies correlated with cellular microcystin concentrations in a freshwater lake. Results from our laboratory study indicated significant downregulation of mcyE gene expression in mixed cultures of M. aeruginosa plus P. agardhii on most sampling days in agreement with depressed growth recorded in the mixed cultures, suggesting that interaction between the two species probably resulted in suppressed growth and mcyE gene expression in the mixed cultures. Furthermore, although mcyE gene copies and McyE transcripts were detected in all laboratory and field samples with measureable microcystin levels, only mcyE gene copies showed significant positive correlations (R2  0.7) with microcystin concentrations, while McyE transcript levels did not. These results suggest that mcyE gene copies are better indicators of potential risks from microcystins than McyE transcript levels or conventional biomass proxies, especially in water bodies comprising mixed assemblages of toxic and nontoxic cyanobacteria.
机译:摘要在淡水水体中,产生微囊藻毒素和不产生蓝藻细菌的菌株混合组合的发生率增加,因此需要开发可靠的代理来评估氰毒素风险。蓝藻水华中微囊藻毒素生物合成基因的检测通常表明存在潜在毒性蓝藻菌株。尽管已经作出很多努力来阐明许多蓝细菌属中的微囊藻毒素生物合成机制,但关于共生蓝细菌对细胞生长,mcy基因表达或mcy基因拷贝分布的影响知之甚少。本研究利用常规显微镜,qPCR测定法和酶联免疫吸附测定法研究了生产微囊藻毒素的铜绿微囊藻CPCC 299与浮游藻琼脂NIVA-CYA 126之间的竞争如何在受控实验室下影响mcyE基因表达,mcyE基因拷贝和微囊藻毒素浓度条件。此外,对来自魁北克密西苏伊湾的环境水样的分析使我们能够确定淡水湖中各种潜在的产毒蓝藻生物量代理与细胞微囊藻毒素浓度之间的关系。我们实验室研究的结果表明,在大多数采样日中,铜绿假单胞菌和琼脂假单胞菌混合培养物中的mcyE基因表达显着下调,与混合培养物中记录的生长抑制一致,表明这两个物种之间的相互作用可能导致生长受到抑制和mcyE基因在混合培养物中的表达。此外,尽管在所有实验室和现场样品中可检测到的微囊藻毒素水平均检测到mcyE基因拷贝和McyE转录本,但只有mcyE基因拷贝与微囊藻毒素浓度呈显着正相关(R 2

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