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Allelopathy in the non-native macrophyte, Myriophyllum spicatum and its influence on trophic dynamics in aquatic systems.

机译:非本地大型植物Myriophyllum spicatum中的化感作用及其对水生系统营养动力学的影响。

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摘要

Non-native macrophytes structurally impact aquatic assemblages, yet little is known regarding how they influence energy pathways in freshwater ecosystems. Allelopathy in Eurasian watermilfoil- Myriophyllum spicatum has been shown to target basal epiphytic organisms resulting in differences in assemblage structure of colonizing epiphyton between M. spicatum and native M. sibiricum. I conducted a growth chamber experiment to investigate the hypothesis that differences in assemblage structure of colonizing epiphyton between these two macrophytes influence trophic dynamics within aquatic systems. My data suggest M. spicatum produces higher concentrations of allelochemicals, resulting in a more diverse epiphytic assemblage compared to M. sibiricum. This could result in potential transformation of trophic dynamics by decoupling carbon as it flows from primary producer to primary consumer. This work identifies a contributing mechanism responsible for M. spicatum invasiveness and provides new insight in its ecology and management of this non-native macrophyte.
机译:非本地大型植物在结构上影响水生生物,但关于它们如何影响淡水生态系统中的能量途径的知之甚少。欧亚水母叶-Myriophyllum spicatum中的化感作用已被证明靶向基础附生生物,从而导致了sp.atum sibiricum和天然M. sibiricum的定居附生生物的组装结构差异。我进行了一个生长室实验,以研究以下假说:这两个大型植物之间的定殖附生植物的组装结构差异会影响水生系统内的营养动力学。我的数据表明,与西伯利亚分枝杆菌相比,十字花分枝杆菌产生的化感物质浓度更高,导致附生组合更多样化。当碳从初级生产者流向初级消费者时,通过将碳去耦,可能导致营养动力学的潜在转变。这项工作确定了一个原因机制,对孢子分枝杆菌的侵袭负责,并为其非本地大型植物的生态学和管理提供了新的见解。

著录项

  • 作者

    Sullivan, Daniel J.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Ecology.;Aquatic sciences.
  • 学位 M.S.
  • 年度 2015
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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