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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Soil Microbial Responses to Experimental Warming and Nitrogen Addition in a Temperate Steppe of Northern China
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Soil Microbial Responses to Experimental Warming and Nitrogen Addition in a Temperate Steppe of Northern China

机译:中国北方温带草原土壤微生物对试验变暖和氮素添加的响应

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The responses of soil microbes to global warming and nitrogen enrichment can profoundly affect terrestrial ecosystem functions and the ecosystem feedbacks to climate change. However, the interactive effect of warming and nitrogen enrichment on soil microbial community is unclear. In this study, individual and interactive effects of experimental warming and nitrogen addition on the soil microbial community were investigated in a long-term field experiment in a temperate steppe of northern China. The field experiment started in 2006 and soils were sampled in 2010 and analyzed for phospholipid fatty acids to characterize the soil microbial communities. Some soil chemical properties were also determined. Five-year experimental warming significantly increased soil total microbial biomass and the proportion of Gram-negative bacteria in the soils. Long-term nitrogen addition decreased soil microbial biomass at the 0-10 cm soil depth and the relative abundance of arbuscular mycorrhizal fungi in the soils. Little interactive effect on soil microbes was detected when experimental warming and nitrogen addition were combined. Soil microbial biomass positively correlated with soil total C and N, but basically did not relate to the soil C/N ratio and pH. Our results suggest that future global warming or nitrogen enrichment may significantly change the soil microbial communities in the temperate steppes in northern China.
机译:土壤微生物对全球变暖和氮富集的反应会深刻影响陆地生态系统功能以及生态系统对气候变化的反馈。但是,变暖和富氮对土壤微生物群落的相互作用影响尚不清楚。在这项研究中,在中国北方温带草原的长期田间试验中,研究了实验升温和氮添加对土壤微生物群落的个体和相互作用的影响。野外实验始于2006年,2010年对土壤进行了采样,并分析了磷脂脂肪酸,以表征土壤微生物群落。还确定了一些土壤化学性质。五年的实验变暖显着增加了土壤中微生物的总生物量和土壤中革兰氏阴性菌的比例。长期添加氮会降低土壤深度(0-10 cm)的土壤微生物量以及土壤中丛枝菌根真菌的相对丰度。当实验升温和氮添加相结合时,对土壤微生物几乎没有相互作用的影响。土壤微生物生物量与土壤总碳和氮呈正相关,但与土壤碳氮比和pH基本不相关。我们的结果表明,未来的全球变暖或氮肥富集可能会显着改变中国北方温带草原的土壤微生物群落。

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