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Diel Vertical Migrations and Trophic Interactions of Freshwater Organisms.

机译:淡水生物的Diel垂直迁移和营养相互作用。

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摘要

Abiotic and biotic conditions interact to cause dynamic diel vertical migrations (DVM) of organisms in the pelagic area of freshwater lakes. This dissertation includes four unique studies to improve our knowledge of how and why DVM patterns change between species, ecosystems, seasons, and years. The first study documented a normal DVM of the endangered Hovsgol grayling (Thymallus nigrescens) in Lake Hovsgol, Mongolia, during the summer season. This migration was driven by the distribution of prey because there were no pelagic predators. Next, I examined how different abiotic and biotic conditions between 11 inland lakes in Minnesota and northern Wisconsin caused differences in DVM patterns of cisco (Coregonus artedi ) during the summer season. I found cisco populations that performed normal DVM, no DVM, and reverse DVM, resulting from differences in temperature, oxygen, prey density, growth potential, and predation risk between lakes. To determine differences in DVM patterns between seasons and years, I followed up this study by analyzing reverse DVM patterns of cisco in Ten Mile Lake, Minnesota, during the spring, summer, fall, and winter over multiple years. I observed a small reverse DVM of cisco during the spring and fall, a large reverse DVM during summer, with no DVM during winter. These differences were attributable to seasonal changes in the abiotic and biotic conditions of the lake. Lastly, I examined seasonal and yearly changes in normal DVM patterns of four pelagic species in Lake Superior. DVM patterns changed between seasons, but were more consistent among years, and were driven by changes in prey and predator densities and distributions.
机译:非生物和生物条件相互作用导致淡水湖中上层生物体的动态狄尔垂直迁移(DVM)。本论文包括四项独特的研究,以提高我们对DVM模式在物种,生态系统,季节和年份之间如何以及为何改变的知识。第一项研究记录了夏季夏季蒙古Hovsgol湖中濒危的Hovsgol河鳟(Thymallus nigrescens)的正常DVM。由于没有远洋捕食者,这种迁移是由猎物的分布驱动的。接下来,我检查了明尼苏达州和威斯康星州北部的11个内陆湖之间不同的非生物和生物条件如何导致夏季的cisco(Coregonus artedi)DVM模式的差异。我发现,由于湖泊之间温度,氧气,猎物密度,生长潜力和捕食风险的差异,执行正常DVM,无DVM和反向DVM的cisco种群。为了确定季节和年份之间DVM模式的差异,我通过分析明尼苏达州十英里湖在多年的春季,夏季,秋季和冬季的cisco的反向DVM模式来跟踪此研究。我在春季和秋季观察到了一个小的思科反向DVM,在夏季发现了一个大的反向DVM,而在冬季没有观察到DVM。这些差异归因于该湖非生物和生物条件的季节性变化。最后,我检查了苏必利尔湖四种浮游鱼类的正常DVM模式的季节性和年度变化。 DVM模式在季节之间有所变化,但在年份之间更一致,并且受猎物和捕食者密度和分布的变化驱动。

著录项

  • 作者

    Ahrenstorff, Tyler Douglas.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Aquatic sciences.;Hydrologic sciences.;Limnology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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