首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Mechanism Underlying Flow Velocity and Its Corresponding Influence on the Growth of Euglena gracilis a Dominant Bloom Species in Reservoirs
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Mechanism Underlying Flow Velocity and Its Corresponding Influence on the Growth of Euglena gracilis a Dominant Bloom Species in Reservoirs

机译:流速的基本机制及其对水库中主要开花物种Euglena gracilis生长的相应影响

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摘要

The effects of hydrodynamics on algae growth have received considerable attention, and flow velocity is one of the most frequently discussed factors. For , which aggregates resources and is highly resistant to environmental changes, the mechanism underlying the impact of flow velocity on its growth is poorly understood. Experiments were conducted to examine the response of algae growth to different velocities, and several enzymes were tested to determine their physiological mechanisms. Significant differences in the growth of were found at different flow velocities, and this phenomenon is unique compared to the growth of other algal species. With increasing flow velocity and time, the growth of is gradually inhibited. In particular, we found that the pioneer enzyme is peroxidase (POD) and that the main antioxidant enzyme is catalase (CAT) when experiences flow velocity stress. Hysteresis between total phosphorus (TP) consumption and alkaline phosphatase (AKP) synthesis was observed. Under experimental control conditions, the results indicate that flow velocities above 0.1 m/s may inhibit growth and that prefers a relatively slow or even static flow velocity, and this finding could be beneficial for the control of blooms.
机译:流体动力学对藻类生长的影响已引起广泛关注,流速是最常讨论的因素之一。对于,它聚集了资源并且对环境变化具有高度抵抗力,因此对流速对其增长的影响所依据的机理知之甚少。进行实验以检查藻类生长对不同速度的反应,并测试了几种酶以确定其生理机制。在不同的流速下发现的生长存在显着差异,与其他藻类的生长相比,这种现象是独特的。随着流速和时间的增加,的生长逐渐受到抑制。特别地,我们发现当遇到流速应力时,先驱酶是过氧化物酶(POD),而主要的抗氧化酶是过氧化氢酶(CAT)。观察到总磷(TP)消耗与碱性磷酸酶(AKP)合成之间存在滞后。在实验控制条件下,结果表明,高于0.1 m / s的流速可能会抑制生长,并且倾向于相对较慢或什至是静态的流速,这一发现可能对控制大华有帮助。

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