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Growth, toxin production, active oxygen species and catalase activity of Microcystis aeruginosa (Cyanophyceae) exposed to temperature stress

机译:暴露于温度胁迫下的铜绿微囊藻的生长,毒素产生,活性氧种类和过氧化氢酶活性

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摘要

are known for their potential ability to synthesize toxins, mainly microcystins (MCs). In order to evaluate the effects of temperature on chlorophyll a (Chl a), growth, physiological responses and toxin production of a nativeMicrocystis aeruginosa, we exposed the cells to low(23 °C) and high (29 °C) temperature in addition to a 26 °C control treatment. Exponential growth ratewas significantly higher at 29 °C compared to 23 °C and control, reaching 0.43, 0.32 and 0.33 day−1 respectively. In addition, there was a delay of the start of exponential growth at 23 °C. However, the intracellular concentration of Chl a decreased significantly due to temperature change. A significant increase in intracellular ROS was observed in coincidencewith the activation of enzymatic antioxidant catalase (CAT) during the first two days of exposure to 23° and 29 °C in comparison to the control experiment, decreasing thereafter to nearly initial values. Five MCs were determined by LC-MS/MS analysis. In the experiments, the highest MC concentration, 205 fg [Leu1] MC-LR.cell−1 expressed as MC-LR equivalent was measured in the beginning of the experiment and subsequently declined to 160 fg.cell−1 on day 2 and 70 fg.cell−1 on day 4 in cells exposed to 29 °C. The same trend was observed for all other MCs except for the least abundant MC-LR which showed a continuous increase during exposure time. Our results suggest a high ability of M. aeruginosa to perceive ROS and to rapidly initiate antioxidant defenses with a differential response on MC production.
机译:众所周知,它们具有潜在的合成毒素的能力,主要是微囊藻毒素(MC)。为了评估温度对天然铜绿微囊藻的叶绿素a(Chl a),生长,生理反应和毒素产生的影响,我们将细胞暴露于低(23°C)和高(29°C)温度下26°C对照处理。在29°C时,指数增长率显着高于23°C和对照组,分别达到0.43、0.32和0.33 day-1。另外,在23°C时指数增长开始出现延迟。然而,由于温度变化,Chla的细胞内浓度显着降低。与对照实验相比,在暴露于23°C和29°C的前两天中,与酶促抗氧化剂过氧化氢酶(CAT)的激活同时,观察到细胞内ROS的显着增加,此后降低至接近初始值。通过LC-MS / MS分析确定了5个MC。在实验中,在实验开始时测量了最高MC浓度,即以MC-LR当量表示的205 fg [Leu1] MC-LR.cell-1,随后在第2天和第70天降至160 fg.cell-1第4天在暴露于29°C的细胞中为fg.cell-1。除MC-LR最不丰富外,在暴露时间内持续增加,其他所有MC观察到相同的趋势。我们的结果表明铜绿假单胞菌具有很高的感知ROS的能力,并能快速启动抗氧化防御,并对MC产生有不同的反应。

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