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首页> 外文期刊>Journal of the American Water Resources Association >PRYMNESIUM PARVUM POPULATION DYNAMICS DURING BLOOM DEVELOPMENT: A ROLE ASSESSMENT OF GRAZERS AND VIRUS
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PRYMNESIUM PARVUM POPULATION DYNAMICS DURING BLOOM DEVELOPMENT: A ROLE ASSESSMENT OF GRAZERS AND VIRUS

机译:花朵发育过程中小孢子种群的动态:掠食者和病毒的作用评估

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The toxic haptophyte Prymnesium parvum is a harmful alga known to cause fish-killing blooms that occur worldwide. In Texas (United States), P. parvum blooms occur in inland brackish water bodies and have increased in frequency and magnitude in recent years. In this study we conducted three consecutive field experiments (Lake Whitney) to investigate the influence of zooplankton and viruses on P. parvum bloom dynamics during the time of year when blooms are still typically active in Texas (early spring). A localized P. parvum bloom developed during our study that involved increasing levels of toxicity (based on Pimephales promelas and Daphnia magna bioassays). Only in our last experiment, during later stages of bloom development and under highly toxic conditions, did the presence of grazers show a statistically significant, negative effect on P. parvum population dynamics. During this experiment, a rotifer-dominated zooplankton community emerged, composed mostly of Notholca laurentiae, suggesting that this species was less sensitive than other grazers to toxins produced by P. parvum. Microzooplankton may have also been important at this time. Similarly, only our final experiment demonstrated a statistically significant, negative effect of viruses on P. parvum. This exploratory study, resulting in observed impacts on P. parvum populations by both grazers and virus, enhances our understanding of P. parvum ecology and highlights direction for future studies on resistance of zooplankton to pry-mnesin toxins and algal-virus interactions.
机译:有毒的附生植物小球藻是一种有害藻类,已知会导致全世界范围内的鱼类死亡。在得克萨斯州(美国),内陆微咸水体中发生了小球藻的花开,并且近年来其发生频率和数量都有所增加。在这项研究中,我们进行了三个连续的田间实验(惠特尼湖),以研究浮游生物和病毒对德克萨斯州小枝白粉病动态的影响,而在这一时期,得克萨斯州通常仍活跃水华。在我们的研究过程中,出现了局部小菜蛾开花,其中涉及增加的毒性水平(基于小果蝇(Pimephales promelas)和大水蚤(Daphnia magna)生物测定法)。仅在我们的最后一个实验中,在花朵发育的后期以及在剧毒条件下,放牧者的存在对小菜蛾种群动态没有统计学上的显着负面影响。在该实验过程中,出现了一个以轮虫为主的浮游动物群落,其中大部分是由月桂叶Notholca组成的,这表明该物种比小食者对小球藻产生的毒素的敏感性低。 Microzooplankton可能在此时也很重要。同样,只有我们的最终实验证明病毒对小球藻具有统计学意义的负面影响。这项探索性研究导致放牧者和病毒都对小球藻种群产生了观察到的影响,增进了我们对小球藻生态学的理解,并突出了浮游动物对撬动蛋白的抗性和藻类病毒相互作用的未来研究方向。

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