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Experimentally Simulated Global Warming and Nitrogen Enrichment Effects on Microbial Litter Decomposers in a Marsh

机译:在沼泽中对微生物废弃物分解物进行的全球变暖和氮富集实验模拟

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摘要

Atmospheric warming and increased nitrogen deposition can lead to changes of microbial communities with possible consequences for biogeochemical processes. We used an enclosure facility in a freshwater marsh to assess the effects on microbes associated with decomposing plant litter under conditions of simulated climate warming and pulsed nitrogen supply. Standard batches of litter were placed in coarse-mesh and fine-mesh bags and submerged in a series of heated, nitrogen-enriched, and control enclosures. They were retrieved later and analyzed for a range of microbial parameters. Fingerprinting profiles obtained by denaturing gradient gel electrophoresis (DGGE) indicated that simulated global warming induced a shift in bacterial community structure. In addition, warming reduced fungal biomass, whereas bacterial biomass was unaffected. The mesh size of the litter bags and sampling date also had an influence on bacterial community structure, with the apparent number of dominant genotypes increasing from spring to summer. Microbial respiration was unaffected by any treatment, and nitrogen enrichment had no clear effect on any of the microbial parameters considered. Overall, these results suggest that microbes associated with decomposing plant litter in nutrient-rich freshwater marshes are resistant to extra nitrogen supplies but are likely to respond to temperature increases projected for this century.
机译:大气变暖和氮沉降增加会导致微生物群落的变化,并对生物地球化学过程产生可能的影响。我们在淡水沼泽中使用了封闭设施,以评估在模拟气候变暖和脉冲氮供应条件下与分解植物凋落物相关的微生物的影响。将标准批次的垃圾放在粗网眼袋和细网眼袋中,然后浸入一系列加热,富氮和对照的围墙中。稍后将它们取回并分析一系列微生物参数。通过变性梯度凝胶电泳(DGGE)获得的指纹图谱表明,模拟的全球变暖导致细菌群落结构发生变化。此外,升温减少了真菌生物量,而细菌生物量不受影响。垃圾袋的网眼大小和采样日期也对细菌群落结构有影响,从春季到夏季,显性基因型的表观数量增加。微生物呼吸不受任何处理的影响,氮的富集对所考虑的任何微生物参数均无明显影响。总体而言,这些结果表明,与富含营养的淡水沼泽中的植物凋落物分解相关的微生物对额外的氮供应有抵抗力,但可能会对本世纪预计的温度升高做出反应。

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