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Manipulative whole-pond experiments to examine the ecosystem-level effects of pesticide applications

Manipulative whole-pond experiments to examine the ecosystem-level effects of pesticide applications
通过全池塘操作实验来检验农药施用对生态系统水平的影响
批准号:
350514-2007
负责人:
Houlahan, Jeff
金额:
$8.07万
依托单位:
依托单位国家:
加拿大
项目类别:
Strategic Projects - Group
财政年份:
2008
资助国家:
加拿大
项目状态:
已结题
起止时间:
2008-01-01 至 2009-12-31

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中文摘要
翻译
在这项研究中,我们将使用全生态系统实验来检查一种常见的化学除草剂对水生群落的影响。我们在自然系统中做到了这一点,在那里我们可以探索化肥投入和捕食如何与除草剂效果相互作用。直到最近,被广泛用于控制林业、农业和军事设施中的植被的化学除草剂草甘膦(即草甘膦和草甘膦)被许多人认为是一种相对无害的除草剂。新的研究表明,草甘膦对环境的负面影响可能比之前怀疑的更大。然而,结果一直是模棱两可的,很大程度上是因为这些实验是在小型人工系统中进行的,这些系统无法捕捉自然界中存在的所有空间、时间和生物异质性。我们有独特的机会在新不伦瑞克南部的CFB Gagown建立了一组36个实验池塘,以确定草甘膦在自然系统中的影响,这些系统捕捉到了自然界中发现的所有复杂性。我们将进行重复实验,将所有池塘用不透水的窗帘分成两半,并对其中一半进行处理,另一半不进行处理作为对照。处理措施将包括预测(即最坏情况)和实际环境浓度的草甘膦,单独和与农业化肥和两栖动物的天敌结合使用。我们将研究这些处理对各种水生生物的影响,包括浮游植物、大型植物和无脊椎动物,但这项工作的主要重点将是两栖动物,因为它们独特的发育生物学、生理学和作为环境压力指标的潜力。我们将进行测试,看看新的草甘膦配方,无论是单独使用还是与化肥和捕食者联合使用,是否会对两栖动物的基因表达、激素水平、繁殖力、存活率、性别比例、疾病患病率、畸形、丰度和物种丰富度产生影响。我们的合作伙伴、国防部和加拿大林业局将利用这些成果制定流域管理计划。
英文摘要
In this study we will use whole-ecosystem experiments to examine the effects of a common chemical herbicide on aquatic communities. We do this in natural systems where we can explore how fertilizer inputs and predation interact with herbicide effects. Until recently, glyphosate (i.e. RoundUp and Vision), a chemical herbicide that is widely-used to control vegetation in forestry, agriculture, and on military installations, was considered by many to be a relatively benign herbicide. New research suggests that glyphosate may have greater negative environmental impacts than had previously been suspected. However, the results have been ambiguous, in large part because the experiments were carried out in small artificial systems that cannot capture all of the spatial, temporal and biological heterogeneity present in nature. We have the unique opportunity to establish a set of 36 experimental ponds at CFB Gagetown in southern New Brunswick to determine the effects of glyphosate in natural systems that capture all the complexity found in nature. We will conduct replicated experiments with all ponds separated into two halves by an impermeable curtain and treatments applied to one half while the other half is left untreated as a control. Treatments will include glyphosate at predicted (i.e. worst case scenario) and realistic environmental concentrations, alone and in combination with agricultural fertilizers and natural predators of amphibians. We will examine impacts of these treatments on a variety of aquatic organisms, including phytoplankton, macrophytes, and invertebrates, but the primary emphasis of this work will be on amphibians because of their unique developmental biology, physiology and potential as indicators of environmental stress. We will be testing to see if new glyphosate formulations, alone or in combination with fertilizers and predators, have effects on amphibian gene expression, hormone levels, fecundity, survival, sex ratios, disease prevalence, deformities, abundance and species richness. These results will be used by our partners, the Department of National Defence and Canadian Forest Service to develop watershed management plans.
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  • 批准号:
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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  • 负责人:
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  • 批准号:
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  • 项目类别:
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  • 负责人:
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