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The Functional and Distributional Ecology of Mycetozoans under Changing Edaphic and Climatic Dynamics.

机译:不断变化的气候和气候动力学下的真菌的功能和分布生态学。

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摘要

Investigations into the distribution and ecosystem functions of fruiting amoebae revealed that local-scale environmental conditions can largely explain broad biogeographical patterns in species assemblage, the way in which amoeboid predators shape bacterial communities and how this top-down influence may affect global biogeochemical processes in a changing climate. The distribution and assemblage of protosteloid amoebae on the islands of New Zealand and Hawaii did not yield any expected patterns of island biogeography, and conformed to other global regions studied. The strongest predictor of species richness in a given region was sampling effort and these species do not appear to have any extant barriers to global dispersal. It is proposed that morphological adaptations such as tiny resilient spores contribute to their ability to disperse widely. In addition, the role of soil amoebae in stimulating the mineralization of soil nutrients was examined using a series of microcosm experiments. It was confirmed that amoeboid predators are causative for large increases in carbon and nitrogen mineralization but that the magnitude of this effect depends on complex interactions between climate and edaphic variables. In particular, land management practices such as no-till agriculture determine the nature of predator responses to climate change with regard to biogeochemical cycling. Subsequently, soil amoebae were shown to have a strong influence on the composition of bacterial communities. This influence was also dependent on climate factors. The predation-induced changes to bacterial taxa was different when incubation temperatures were increased, suggesting that even if protists are considered in models of nutrient dynamics, the parameters describing their influence on decomposer communities will depend on environmental factors. Future work should focus on testing hypotheses concerning the importance of morphology and anthropogenic vectors to amoebal dispersal and on further quantifying the interaction between a changing environment and predator-mediated control of bacterial communities for a wider range of predator taxa.
机译:对结果性变形虫的分布和生态系统功能的调查表明,当地规模的环境条件可以在很大程度上解释物种集合中的广泛生物地理模式,变形虫掠食者塑造细菌群落的方式以及这种自上而下的影响将如何影响全球生物地球化学过程。气候变化。类原生物变形虫在新西兰和夏威夷岛上的分布和聚集并未产生任何预期的岛上生物地理分布图,并且与所研究的其他全球区域相符。在给定区域中,物种丰富度的最强预测因子是抽样工作,这些物种似乎对全球扩散没有任何现成的障碍。有人提出,形态适应性(例如微小的弹性孢子)有助于其广泛散布。此外,使用一系列微观实验研究了土壤变形虫在刺激土壤养分矿化中的作用。可以确定,变形虫是碳和氮矿化作用大幅度增加的诱因,但这种影响的大小取决于气候和深层变量之间的复杂相互作用。特别是,土地管理实践(例如免耕农业)决定了生物地球化学循环过程中天敌对气候变化的反应性质。随后,土壤变形虫显示出对细菌群落组成的强烈影响。这种影响还取决于气候因素。孵化温度升高时,捕食引起的细菌类群变化是不同的,这表明即使在营养动力学模型中考虑到原生生物,描述它们对分解者群落影响的参数也将取决于环境因素。未来的工作应着重于检验关于形态学和人为载体对变形虫传播的重要性的假设,并进一步量化不断变化的环境与捕食者介导的更广泛捕食生物群的控制之间的相互作用。

著录项

  • 作者

    Zahn, Geoffrey Lloyd.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Ecology.;Soil sciences.;Biogeochemistry.;Microbiology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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