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Identifying the Source of Unknown Microcystin Genes and Predicting Microcystin Variants by Comparing Genes within Uncultured Cyanobacterial Cells

机译:通过比较未培养的蓝细菌细胞内的基因,鉴定未知微囊藻毒素基因的来源并预测微囊藻毒素变异

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While multiple phylogenetic markers have been used in the culture-independent study of microcystin-producing cyanobacteria, in only a few instances have multiple markers been studied within individual cells, and in all cases these studies have been conducted with cultured isolates. Here, we isolate and evaluate large DNA fragments (>6 kb) encompassing two genes involved in microcystin biosynthesis (mcyA2 and mcyB1) and use them to identify the source of gene fragments found in water samples. Further investigation of these gene loci from individual cyanobacterial cells allowed for improved analysis of the genetic diversity within microcystin producers as well as a method to predict microcystin variants for individuals. These efforts have also identified the source of the novel mcyA genotype previously termed Microcystis-like that is pervasive in the Laurentian Great Lakes and they predict the microcystin variant(s) that it produces.
机译:尽管在不依赖培养物的产生微囊藻毒素的蓝细菌的研究中使用了多种系统发育标记,但在少数情况下,已经在单个细胞内研究了多种标记,并且在所有情况下,这些研究都是针对培养的分离株进行的。在这里,我们分离和评估包含两个与微囊藻毒素生物合成有关的基因(mcyA2和mcyB1)的大DNA片段(> 6 kb),并使用它们来识别水样品中发现的基因片段的来源。对来自各个蓝细菌细胞的这些基因位点的进一步研究,可以改进对微囊藻毒素生产者内部遗传多样性的分析,以及预测个体微囊藻毒素变异的方法。这些努力还确定了以前被称为微囊藻样的新型mcyA基因型的来源,该基因型在劳伦大湖中普遍存在,并预测了其产生的微囊藻蛋白变体。

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