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Recovery of Zooplankton Communities to Whole-lake Disturbance

机译:恢复浮游动物群落至全湖扰动

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摘要

Community assembly following disturbance is a key process in determining the composition and function of the future community. However, replicated studies of community assembly at whole ecosystem scales are rare. Here, I describe a series of whole-lake experiments in which the recovery of zooplankton communities is tracked following an ecosystem-scale disturbance. Fourteen lakes in eastern Washington were chosen: seven lakes were treated with rotenone, while the remaining seven were reference. Each lake was monitored up to six months before and one to two years after the rotenone treatments. Zooplankton tows were taken monthly, at a shallow, intermediate, and deep site in each lake, and were later enumerated and identified. A depth profile of environmental variables was taken at the deepest site. Community responses following disturbance were assessed using coarse metrics of abundance and diversity, community composition measures, and the relative importance of species traits was assessed by grouping taxa into functional groups. Communities were considered recovered if there was no significant difference between treatment and reference in zooplankton community metrics of abundance, diversity, and composition.;There was a steep decline in the abundance and diversity of the zooplankton community post-treatment. In many of the lakes, cyclopoid copepods, the group with a unique dormancy strategy, were the first group to recover, remained dominant for a few months, and may have exhibited priority effects advantages. Calanoid copepods were the slowest group to recover, perhaps due to their slow rate of development. There were varying recovery times and patterns between lakes, potentially based upon geographic location and severity of the winter season. These findings suggest that dormancy strategies, rate of development, and abiotic conditions following disturbance may be important in helping to understand recovery processes. Results of this study may give insight to disturbance ecology and the relative importance abiotic versus biotic characteristics that structure post-impacted communities.
机译:扰乱之后的社区集会是确定未来社区的组成和功能的关键过程。但是,很少在整个生态系统范围内对社区组装进行重复研究。在这里,我描述了一系列全湖实验,其中跟踪了生态系统规模扰动后浮游动物群落的恢复。选择了华盛顿东部的十四个湖泊:用鱼藤酮处理了七个湖泊,其余七个则作为参考。在对鱼藤酮进行处理之前和之后的六个月和一两年内,对每个湖泊进行监测。每月在每个湖泊的浅处,中间处和深处采集浮游动物丝束,随后对其进行枚举和鉴定。在最深处采集了环境变量的深度剖面图。使用丰富度和多样性的粗略指标,社区组成度量来评估扰乱后的社区响应,并通过将分类群分组为功能组来评估物种性状的相对重要性。如果浮游动物群落的丰度,多样性和组成指标在处理和参考之间没有显着差异,则认为该社区已恢复。;浮游动物群落后处理的丰度和多样性急剧下降。在许多湖泊中,具有独特休眠策略的类群独脚兽类是第一个恢复的类群,占主导地位几个月,并且可能表现出优先效果。 Calanoid pe足类是最慢的恢复群体,可能是由于它们的发育缓慢。湖泊之间的恢复时间和模式不同,可能取决于地理位置和冬季的严重程度。这些发现表明,干扰后的休眠策略,发育速度和非生物条件可能对帮助理解恢复过程很重要。这项研究的结果可能有助于了解扰动生态学以及构成受影响后社区的非生物特征与生物特征的相对重要性。

著录项

  • 作者

    McGann, Brian Newton.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Ecology.;Limnology.;Water resources management.
  • 学位 M.S.
  • 年度 2018
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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