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Use of PCR based technologies for risk assessment of a winter cyanobacterial bloom in Lake Midmar, South Africa

机译:使用基于pCR的技术对南非米德马尔湖冬季蓝藻水华的风险进行评估

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摘要

Toxic freshwater cyanobacterial blooms are potential health hazards in water supply reservoirs and therefore predicting bloom events is an important goal of monitoring fresh water programmes. The recent identification of the mcy genes in the production of microcystin synthetase for the first time provides an avenue to study microcystin production at a genetic level. This paper reports analysis of a winter cyanobacterial bloom by use of quantitative real-time PCR, ELISA and PP2A methods for detection of strains present and determination of their toxigenicity in Lake Midmar South Africa. We further investigated the taxonomic composition of phytoplankton at different sampling sites and the physical and chemical changes caused in the surface water of Lake Midmar by waterfowl. Our study clearly demonstrates that the interaction between low surface water temperatures and productivity was overshadowed by the response to nutrients and nutrient availability. We also confirmed the presence of the toxic cyanobacterial strains through the use of molecular markers that detect the presence of some of the mcy genes in the mcy gene cluster that is able to synthesize microcystin toxins in Microcystis spp.
机译:有毒的淡水蓝细菌水华在供水水库中可能危害健康,因此预测水华事件是监测淡水计划的重要目标。最近首次在微囊藻毒素合成酶生产中鉴定了mcy基因,为从遗传水平研究微囊藻毒素的生产提供了途径。本文报道了使用定量实时PCR,ELISA和PP2A方法对冬季蓝藻繁殖的分析,以检测南非米德玛湖中存在的菌株并确定其毒性。我们进一步调查了不同采样点浮游植物的分类学组成,以及水禽对米德玛湖地表水造成的物理和化学变化。我们的研究清楚地表明,低地表水温和生产力之间的相互作用被养分和养分利用率的响应所掩盖。我们还通过使用分子标记物证实了有毒的蓝细菌菌株的存在,该分子标记物检测了能够在微囊藻属中合成微囊藻毒素的mcy基因簇中某些mcy基因的存在。

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