首页> 外文期刊>Canadian journal of microbiology >Impact of sheep urine deposition and plant species on ammonia-oxidizing bacteria in upland grassland soil.
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Impact of sheep urine deposition and plant species on ammonia-oxidizing bacteria in upland grassland soil.

机译:绵羊尿液沉积和植物种类对旱地草原土壤氨氧化细菌的影响。

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摘要

The effects of different concentrations of synthetic sheep urine and plant species on ammonia-oxidizing bacterial (AOB) communities in an upland grassland soil were investigated using a microcosm approach. Plant species characteristic of unimproved and improved agricultural pastures (Agrostis capillaris and Lolium perenne, respectively) were planted in soil microcosms, and different levels of synthetic sheep urine were applied, with harvests 10 and 50 days following urine application. Shifts in the community structure of the AOB were investigated using terminal restriction fragment length polymorphism of amoA amplicons. Species richness and diversity were significantly altered by synthetic sheep urine addition and time depending on plant species type. Principal coordinate analysis revealed that AOB community structure was largely dependent on interactions between sheep urine deposition, plant species, and time after urine application, while significant changes in AOB structure were also revealed by similarity percentage analysis. The results of this study suggested that high levels of sheep urine, combined with floristic changes that are characteristic of agricultural intensification, can contribute to temporal and spatial changes in the structure of key bacterial communities in upland grassland soil. Changes in AOB community structure could potentially affect important soil processes, such as nitrification, with subsequent implications for nutrient cycling in agricultural systems.
机译:使用缩影方法研究了不同浓度的合成绵羊尿液和植物物种对旱地草原土壤氨氧化细菌(AOB)群落的影响。在土壤微观世界中种植了未经改良和改良的农业牧场(分别为毛细线虫(Agrostis capillaris)和多年生黑麦草(Lolium perenne))特有的植物物种,并施用了不同水平的合成绵羊尿液,并在施用尿液后10天和50天收获。使用amoA扩增子的末端限制性片段长度多态性研究了AOB群落结构的变化。人工合成绵羊尿液的添加和时间会根据植物种类的不同而极大地改变物种的丰富度和多样性。主坐标分析显示,AOB群落结构主要取决于绵羊尿液沉积,植物种类和施尿时间之间的相互作用,而相似度分析也显示了AOB结构的显着变化。这项研究的结果表明,高水平的绵羊尿液,加上农业集约化特征的植物区系变化,可导致旱地草原土壤关键细菌群落结构的时空变化。 AOB群落结构的变化可能潜在地影响重要的土壤过程,例如硝化作用,进而影响农业系统中的养分循环。

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