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Experimental and multivariate analysis of biogeochemical indicators of change in wetland ecosystems.

机译:湿地生态系统变化的生物地球化学指标的实验和多元分析。

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摘要

Eutrophication in subtropical wetland ecosystems can lead to extensive displacements of vegetative communities and as a result changes in overall environmental conditions (loss of slough habitat, substrate quality for e.g.). This has generated a demand for a set of sensitive indicator(s) that prelude the structural changes in vegetative communities in response to nutrient enrichment. Microbial communities play a critical role in nutrient cycling, mediating and responding to nutrient levels. Consequently, multiple microbial parameters have been shown to individually respond to nutrient enrichment. However, in this complex array of indicator forms, which is the most sensitive response?; In order to get a handle of the full scale of microbial response measures, this study encompasses three scales and two systems. Short term microbial ecophysiological responses were explored in a controlled lab experiment. Microbial response and microbially mediated organic matter turnover under controlled nutrient conditions was measured at the mesocosm scale. A cross system comparison was carried out at the field scale, one system currently still an expression of significant nutrient loading (WCA-2a in the Everglades), and a second responding to system dynamics associated with historical nutrient loads (Blue Cypress Marsh Conservation Area).; Microbial ecophysiological response measures vary in time and in space as well as a function of the changes in the biogeochemistry. In BCMCA, we were capable of describing ‘longer’-term changes (over the two year period) as well as accounting for the annual trend in these variables. In assessing whether an indicator is a coherent response measure, this particular study resulted in the qualitative differentiation between indicator response to the direct perturbation and as a result of the changes brought upon larger system changes such as plant community shifts. In contrasting the groups of measures in the experimental work, measures directly associated with the nutrient impact (N & P) as the most coherent response measures. Microbial nutrient acquisition (extracellular enzyme activity; EEA), microbially mediated nutrient turnover and microbial nutrient content were the “best” indicators of nutrient enrichment. The smaller scale, controlled mesocosm experiment seem to confirm that the most direct microbial indicators of nutrient impact are those directly associated to the perturbation.
机译:亚热带湿地生态系统中的富营养化可能导致营养群落的大量流离失所,并因此导致整体环境条件的改变(泥沼栖息地的丧失,底物质量的降低)。这就产生了对一套敏感指标的需求,这些指标可以防止营养群落对营养群落结构的变化。微生物群落在养分循环,调节和响应养分水平方面发挥着关键作用。因此,已显示多种微生物参数分别对营养物富集做出响应。但是,在这种复杂的指标形式数组中,哪个是最敏感的响应?为了全面了解微生物应对措施,本研究包括三个规模和两个系统。在受控实验室实验中探索了短期微生物生态生理反应。在中尺度范围内测量了在受控营养条件下的微生物响应和微生物介导的有机质更新。在田间规模上进行了跨系统比较,一种系统目前仍表现出显着的养分负荷(大沼泽地地区的WCA-2a),而第二种系统则响应与历史养分负荷相关的系统动态(蓝柏树沼泽保护区) 。;微生物生态生理响应措施随时间和空间的变化以及生物地球化学变化的函数而变化。在BCMCA中,我们能够描述“长期”变化(在两年内),并能够说明这些变量的年度趋势。在评估指标是否为一致的响应量度时,这项特殊的研究导致指标对直接摄动的响应与由于更大的系统变化(例如植物群落转移)而导致的变化之间存在质的差异。与实验工作中的各种措施相比,与营养影响(N&P)直接相关的措施是最连贯的应对措施。微生物养分的获取(细胞外酶活性; EEA),微生物介导的养分周转率和微生物养分含量是养分富集的“最佳”指标。规模较小,受控的中观宇宙实验似乎证实了营养影响的最直接微生物指标是与微扰直接相关的那些指标。

著录项

  • 作者

    Corstanje, Ronald.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Agriculture Soil Science.; Biology Ecology.; Biogeochemistry.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.5869
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

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