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Spatiotemporal changes in the genetic diversity of a bloom-forming Microcystis aeruginosa (cyanobacteria) population

机译:形成开花的铜绿微囊藻(蓝藻)种群遗传多样性的时空变化

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The variations in microcystin concentrations during cyanobacterial blooms in freshwater ecosystems appear to depend on numerous factors, which have still not been fully identified. To contribute to clarify the situation, we have developed a spatial sampling approach to determine the dynamics and genetic diversity of a bloom-forming population of Microcystis aeruginosa in a large French reservoir, and the variations in the proportions of microcystin-producing genotypes. We demonstrated that marked changes occurred in the internal transcribed spacer (ITS) genotype composition of the M. aeruginosa population during the development of the bloom. These changes led progressively to the selection of one dominant ITS genotype throughout the entire reservoir when the cell number reached its maximum. At the same time, we identified a decrease in the proportion of the mcyB+ genotype, and a significant negative correlation between this proportion and that of the dominant ITS genotype during the bloom. Thus, it appeared that favorable conditions for Microcystis cell growth led to the selection, within the Microcystis population, of a non_microcystin-producing genotype, whereas potentially microcystin-producing genotypes were dominant in this population before and after the bloom, when environmental conditions were less favorable for growth.
机译:在淡水生态系统中的蓝藻水华期间,微囊藻毒素浓度的变化似乎取决于许多因素,目前尚未完全确定。为了澄清这种情况,我们开发了一种空间采样方法来确定法国大型水库中形成绿藻的铜绿微囊藻种群的动态和遗传多样性,以及产生微囊藻蛋白的基因型比例的变化。我们证明了在开花过程中铜绿假单胞菌种群的内部转录间隔区(ITS)基因型组成发生了明显的变化。当细胞数量达到最大时,这些变化逐渐导致在整个储层中选择一种优势ITS基因型。同时,我们确定了开花期间mcyB +基因型比例的降低以及该比例与主要ITS基因型比例之间的显着负相关。因此,似乎微囊藻细胞生长的有利条件导致在微囊藻种群中选择了非微囊藻毒素生产基因型,而在环境条件较少的情况下,开花前和后该种群中潜在的微囊藻毒素生产基因型占主导地位。有利于增长。

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