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Effect of Sheep Urine Deposition on the Bacterial Community Structure in an Acidic Upland Grassland Soil

机译:绵羊尿液沉积对酸性旱地草原土壤细菌群落结构的影响

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摘要

The effect of the addition of synthetic sheep urine (SSU) and plant species on the bacterial community composition of upland acidic grasslands was studied using a microcosm approach. Low, medium, and high concentrations of SSU were applied to pots containing plant species typical of both unimproved (Agrostis capillaris) and agriculturally improved (Lolium perenne) grasslands, and harvests were carried out 10 days and 50 days after the addition of SSU. SSU application significantly increased both soil pH (P < 0.005), with pH values ranging from pH 5.4 (zero SSU) to pH 6.4 (high SSU), and microbial activity (P < 0.005), with treatment with medium and high levels of SSU displaying significantly higher microbial activity (triphenylformazan dehydrogenase activity) than treatment of soil with zero or low concentrations of SSU. Microbial biomass, however, was not significantly altered by any of the SSU applications. Plant species alone had no effect on microbial biomass or activity. Bacterial community structure was profiled using bacterial automated ribosomal intergenic spacer analysis. Multidimensional scaling plots indicated that applications of high concentrations of SSU significantly altered the bacterial community composition in the presence of plant species but at different times: 10 days after application of high concentrations of SSU, the bacterial community composition of L. perenne-planted soils differed significantly from those of any other soils, whereas in the case of A. capillaris-planted soils, the bacterial community composition was different 50 days after treatment with high concentrations of SSU. Canonical correspondence analysis also highlighted the importance of interactions between SSU addition, plant species, and time in the bacterial community structure. This study has shown that the response of plants and bacterial communities to sheep urine deposition in grasslands is dependent on both the grass species present and the concentration of SSU applied, which may have important ecological consequences for agricultural grasslands.
机译:使用缩影方法研究了添加合成羊尿(SSU)和植物种类对高地酸性草原细菌群落组成的影响。将低,中和高浓度的SSU应用于装有未经改良的草地(Agrostis capillaris)和经过农业改良的(Lolium perenne)草地的典型植物品种的盆中,并在添加SSU后10天和50天进行收获。 SSU的施用显着提高了土壤的pH值(P <0.005)和pH值,范围从pH 5.4(零SSU)到pH 6.4(高SSU),以及微生物活性(P <0.005),采用中高水平的SSU处理与使用零浓度或低浓度SSU的土壤相比,其微生物活性(三苯基甲酰胺脱氢酶活性)明显更高。但是,任何SSU应用程序都没有显着改变微生物的生物量。单独的植物物种对微生物生物量或活性没有影响。使用细菌自动核糖体基因间间隔子分析来分析细菌群落结构。多维比例尺图显示,高浓度SSU的施用在存在植物物种的情况下显着改变了细菌群落组成,但在不同的时间:高浓度SSU施用10天后,紫苏种植的土壤的细菌群落组成有所不同与其他土壤相比,显着不同,而在毛细血管曲霉种植的土壤中,高浓度SSU处理后50天细菌群落组成有所不同。典型的对应分析还强调了SSU添加,植物种类和时间在细菌群落结构中相互作用的重要性。这项研究表明,植物和细菌群落对草原上绵羊尿液沉积的反应取决于存在的草种和所施用的SSU浓度,这可能对农业草原具有重要的生态影响。

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