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Multi-scale evaluation of mechanisms associated with the establishment of a model invasive species in Mississippi: Imperata cylindrica.

机译:与在密西西比州建立模式入侵物种有关的机制的多尺度评估:Imperata cylindrica。

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摘要

Of concern in this research were the ecological parameters associated with the establishment of a model invasive plant species, Imperata cylindrica, across a scale of ecological organization. Specifically, the study addressed the species' ability to: differentially respond to abiotic and biotic constraints during seedling establishment, exhibit a novel underground competitive interference mechanism, and alter the decomposition dynamics in newly invaded ecosystems. Finally, the last portion of the research was centered around creating a predictive habitat model that will provide information on the most important variables responsible for creating habitat for this species.;The population level seedling study indicated that soil characteristics and light availability play a significant role in seedling establishment. There were large trends in biomass allocation attributable to soil type with seedlings performing best in high nutrient soils representative of the Mississippi Alluvial Valley physiographic region. I. cylindrica seedlings also showed a positive response to increased seedling density during the initial stages of seedling establishment.;The community level research examining a hypothesized novel interference mechanism deployed by I. cylindrica showed a significant and robust pattern of I. cylindrica damaging its own below-ground tissue more often than that of its surrounding neighbors. Therefore, it is highly unlikely that I. cylindrica gains a competitive advantage by exposing the native plant assemblage to pathogen invasion (via ruptured tissue) as the plant would expose itself to these pathogens (to which it is evolutionarily naive) at much higher volumes.;The ecosystem level examination of this globally important invasive species indicated that I. cylindrica invasion into native systems will significantly accelerate ambient rates of decomposition. Furthermore, fungal community composition in invaded areas was drastically altered as well as bacterial community functional activity in relation to several key enzymes responsible for the decomposition of plant tissue which were produced more abundantly in invaded areas.;The landscape-scale analyses and modeling work validated decades of anecdotal evidence and indicated that anthropogenic disturbance factors associated with road maintenance and construction (soil disturbance and vegetation removal) are the principal factors responsible for creating habitat suitable for invasion by this species.
机译:在这项研究中,关注的问题是与生态入侵模型有关的生态参数,这些入侵入侵物种在整个生态组织的规模上都建立了模式。具体来说,该研究解决了该物种的能力:在幼苗建立过程中对非生物和生物限制进行不同反应,展现出新颖的地下竞争干扰机制以及改变新近入侵的生态系统中的分解动力学。最后,研究的最后一部分集中在创建预测性栖息地模型上,该模型将提供有关为该物种创造栖息地的最重要变量的信息。种群水平的苗木研究表明,土壤特性和光的有效性起着重要作用。在苗木建立。在代表密西西比冲积谷地貌区的高养分土壤中,生物量分配的大趋势归因于土壤类型,其中幼苗表现最佳。苗期建立的初始阶段,树幼苗对增加的密度也表现出积极的反应。社区水平的研究对I树部署的一种假设的新型干扰机制进行了研究,结果表明a树有一个强大的健壮模式破坏其自身。地下组织比周围邻居更多。因此,极少有可能通过将天然植物组合体暴露于病原体入侵(通过破裂的组织)而使I. cylindrica获得竞争优势,因为植物会以更高的体积将自身暴露于这些病原体(进化上是幼稚的)。 ;该具有全球重要性的入侵物种的生态系统水平检查表明,圆柱I入侵本地系统将显着加快环境分解速度。此外,与引起植物组织分解的几种关键酶有关的入侵区域的真菌群落组成和细菌群落功能活性也发生了巨大变化。在景观区域分析和建模工作得到了验证数十年的轶事证据表明,与道路维护和建设有关的人为干扰因素(土壤干扰和植被清除)是造成适合该物种入侵的栖息地的主要因素。

著录项

  • 作者

    Holly, David Christopher.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Biology Botany.;Biology Ecology.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;生态学(生物生态学);
  • 关键词

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