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Feedback between ecological interaction and spatial pattern in a transitional Michigan forest.

机译:过渡性密歇根森林中生态相互作用与空间格局之间的反馈。

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摘要

Ecology has traditionally thought of spatial patterns in one of two ways: (1) as a consequence of some underlying environmental heterogeneity and (2) as something to ignore in models to make them more tractable. But both of these views have changed, and hi the last 20 years ecologists have increasingly considered the joint feedback that spatial pattern and ecological interactions can have on each other. Going in one direction the spatial pattern of organisms can greatly affect. how their ecological interactions ions play out, and in the other direction local-scale ecological interactions can give rise to emergent, self-organized spatial patterns of organisms. This dissertation examines both directions of this feedback in the context of a mid-successional Michigan forest. The three dominant species in the understory of the forest exhibit strong nonrandom spatial patterning. Here we suggest that this spatial pattern emerges from biotic interactions the combined effect of local dispersal and Janzen-Connell, density-dependent seed and seedling mortality of two of these three species---acting on an initial distribution of trees determined by the fire history of the area. That is ecological interactions give rise to spatial pattern, but this can only be understood in light of the history of the forest. We also suggest that this spatial pattern will affect how the succession of the forest: if the species were completely well-mixed the succession of the forest would take place differently. So we show that the spatial arrangement of organisms affects ecological processes.
机译:传统上,生态学以两种方式之一来思考空间格局:(1)由于某种潜在的环境异质性而造成的;(2)是模型中要忽略的事物,以使其更易于处理。但是,这两种观点都发生了变化,并且在最近的20年中,生态学家越来越多地考虑了空间格局和生态相互作用之间可能具有的共同反馈。朝一个方向前进,有机体的空间格局会受到很大影响。离子如何与生态相互作用发挥作用,以及在其他方向上局部尺度的生态相互作用可以引起有机体的新兴,自组织的空间格局。本文研究了密歇根州中期成功森林中这种反馈的两个方向。森林底层的三种优势种表现出很强的非随机空间格局。在这里,我们建议这种空间格局是由生物相互作用,局部散布和Janzen-Connell的组合效应,这三种物种中的两种的密度依赖性种子和幼苗死亡率的综合作用而形成的-作用于由火灾史决定的树木的初始分布该地区。那就是生态相互作用产生了空间格局,但这只能根据森林的历史来理解。我们还建议,这种空间格局将影响森林的演替方式:如果物种完全充分混合,森林的演替方式将有所不同。因此,我们证明了生物的空间排列会影响生态过程。

著录项

  • 作者

    Allen, David Nicoletti.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology Ecology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:16

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