• Journal of Resources and Ecology
  • Vol. 11, Issue 2, 129 (2020)
Wei DU, Yue LI, Pei HE, Jiaqi ZHANG, Haichao JING, Cheng NIE, and Yinghui LIU
Author Affiliations
  • State Key Laboratory of Earth Surface Processes and Resource Ecology, Faculty of Geographical Science, Beijing Normal University, Beijing 100875, China
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    DOI: 10.5814/j.issn.1674-764x.2020.02.001 Cite this Article
    Wei DU, Yue LI, Pei HE, Jiaqi ZHANG, Haichao JING, Cheng NIE, Yinghui LIU. Nitrogen Addition Decreases Soil Respiration without Changing the Temperature Sensitivity in a Semiarid Grassland[J]. Journal of Resources and Ecology, 2020, 11(2): 129 Copy Citation Text show less
    References

    [1] Ali RS, KandelerE, MarhanS et al. Controls on microbially relegated soil organic carbon decomposition at the regional scale. Soil Biology and Biochemistry, 118, 59-68(2018).

    [2] BiJ, ZhangN, LiangY et al. Interactive effects of water and nitrogen addition on soil microbial communities in a semiarid steppe. Journal of Plant Ecology, 5, 320-329(2012).

    [3] Bossio DA, Scow KM. Impacts of carbon and flooding on soil microbial communities: Phospholipid fatty acid profiles and substrate utilization patterns. Microbial Ecology, 35, 265-278(1998).

    [4] CanariniA, Kiar LP, Dijkstra FA. Soil carbon loss regulated by drought intensity and available substrate: A meta-analysis. Soil Biology and Biochemistry, 112, 90-99(2017).

    [5] Cenini VL, Fornara DA, McMullanG et al. Chronic nitrogen fertilization and carbon sequestration in grassland soils: Evidence of a microbial enzyme link. Biogeochemistry, 126, 301-313(2015).

    [6] Chapin FS, MatsonP. Principles of terrestrial ecosystem ecology. New York:. Springer.(2002).

    [7] ChenD, LanZ, HuS et al. Effects of nitrogen enrichment on belowground communities in grassland: Relative role of soil nitrogen availability vs. soil acidification. Soil Biology and Biochemistry, 89, 99-108(2015).

    [8] ChengS, HeS, FangH et al. Contrasting effects of NH4 + and NO3 - amendments on amount and chemical characteristics of different density organic matter fractions in a boreal forest soil. Geoderma, 293, 1-9(2017).

    [9] Evans CD, Goodale CL, S JM et al. Does elevated nitrogen deposition or ecosystem recovery from acidification drive increased dissolved organic carbon loss from upland soil? A review of evidence from field nitrogen addition experiments. Biogeochemistry, 91, 13-35(2008).

    [10] FangC, LiF, PeiJ et al. Impacts of warming and nitrogen addition on soil autotrophic and heterotrophic respiration in a semi-arid environment. Agricultural and Forest Meteorology, 248, 449-457(2018).

    [11] FangY, XunF, BaiW et al. Long-term nitrogen addition leads to loss of species richness due to litter accumulation and soil acidification in a temperate steppe. Plos One, 7, e47369(2012).

    [12] FuZ, NiuS, Dukes JS. What have we learned from global change manipulative experiments in China? A meta-analysis. Scientific Reports, 5, 12344(2015).

    [13] GruberN, Galloway JN. An earth-system perspective of the global nitrogen cycle. Nature, 451, 293-296(2008).

    [14] KaurA, ChaudharyA, KaurA et al. Phospholipid fatty acid - A bioindicator of environment monitoring and assessment in soil ecosystem. Current Science, 89, 1103-1112(2005).

    [15] Kopá?ekJ, Cosby BJ, Evans CD. et al. 2013. Nitrogen, organic carbon and sulphur cycling in terrestrial ecosystems: Linking nitrogen saturation to carbon limitation of soil microbial processes. Biogeochemistry, 115, 33-51.

    [16] Lennon JT, Aanderud ZT, Lehmkuhl BK. et al. 2012. Mapping the niche space of soil microorganisms using taxonomy and traits. Ecology, 93, 1867-1879.

    [17] LiY, Liu YH, Wu SM et al. Microbial properties explain temporal variation in soil respiration in a grassland subjected to nitrogen addition. Scientific Reports, 5, 18496(2015).

    [18] LiY, SunJ, TianD et al. Soil acid cations induced reduction in soil respiration under nitrogen enrichment and soil acidification. Science of the Total Environment, 615, 1535-1546(2018).

    [19] LiuP, Sun OJ et al. Litter decomposition and nutrient release as affected by soil nitrogen availability and litter quality in a semiarid grassland ecosystem. Oecologia, 162, 771-780(2010).

    [20] LiuY, LiuS, WanS et al. Differential responses of soil respiration to soil warming and experimental throughfall reduction in a transitional oak forest in central China. Agricultural and Forest Meteorology, 226-, 227, 186-198(2016).

    [21] ManzoniS, Schimel JP, PorporatoA. Responses of soil microbial communities to water stress: Results from a meta-analysis. Ecology, 93, 930-938(2012).

    [22] Moyano FE, ManzoniS, ChenuC. Responses of soil heterotrophic respiration to moisture availability: An exploration of processes and models. Soil Biology and Biochemistry, 59, 72-85(2013).

    [23] NiuS, YangH, ZhangZ et al. Non-additive effects of water and nitrogen addition on ecosystem carbon exchange in a temperate steppe. Ecosystems, 12, 915-926(2009).

    [24] Ramirez KS, Craine JM, FiererN. Nitrogen fertilization inhibits soil microbial respiration regardless of the form of nitrogen applied. Soil Biology and Biochemistry, 42, 2336-2338(2010).

    [25] Riggs CE, Hobbie SE. Mechanisms driving the soil organic matter decomposition response to nitrogen enrichment in grassland soils. Soil Biology and Biochemistry, 99, 54-65(2016).

    [26] RodriguezA, Lovett GM, Weathers KC et al. Lability of C in temperate forest soils: Assessing the role of nitrogen addition and tree species composition. Soil Biology and Biochemistry, 77, 129-140(2014).

    [27] Schermelleh-EngelK, MoosbruggerH, MüllerH. Evaluating the fit of structural equation models: Tests of significance and descriptive goodness-of-fit measures. Methods of Psychological Research Online, 8, 23-74(2003).

    [28] Schimel JP, Balser TC, WallensteinM. Microbial stress-response physiology and its implications for ecosystem function. Ecology, 88, 1386-1394(2007).

    [29] Soil SurveyStaff. Keys to soil taxonomy, 12th ed. Washington DC:. USDA-Natural Resources Conservation Service.(2014).

    [30] Soil Taxonomy ResearchGroup, Institute of SoilScience, Chinese Academy ofSciences. The Chinese soil taxonomic classification retrieval. Hefei:.Press of University of Science and Technology of China(2001).

    [31] SongB, NiuS, LiL et al. Soil carbon fractions in grasslands respond differently to various levels of nitrogen enrichments. Plant and Soil, 384, 401-412(2014).

    [32] TahovskáK, KaňaJ, BártaJ et al. Microbial N immobilization is of great importance in acidified mountain spruce forest soils. Soil Biology and Biochemistry, 59, 58-71(2013).

    [33] TianD, NiuS. A global analysis of soil acidification caused by nitrogen addition. Environmental Research Letters, 10, 024019(2015).

    [34] TianQ, LiuN, BaiW et al. A novel soil manganese mechanism drives plant species loss with increased nitrogen deposition in a temperate steppe. Ecology, 97, 65-74(2016).

    [35] Treseder KK. Nitrogen additions and microbial biomass: A meta-analysis of ecosystem studies. Ecology letters, 11, 1111-1120(2008).

    [36] Treseder KK, Kivlin SN, Hawkes CV. Evolutionary trade-offs among decomposers determine responses to nitrogen enrichment. Ecology letters, 14, 933-938(2011).

    [37] WangR, DorodnikovM, Dijkstra FA et al. Sensitivities to nitrogen and water addition vary among microbial groups within soil aggregates in a semiarid grassland. Biology and Fertility of Soils, 53, 129-140(2017).

    [38] WangR, DorodnikovM, YangS et al. Responses of enzymatic activities within soil aggregates to 9-year nitrogen and water addition in a semi-arid grassland. Soil Biology and Biochemistry, 81, 159-167(2015).

    [39] Wang YK, Liu SE, TianP. Carbon quality and soil microbial property control the latitudinal pattern in temperature sensitivity of soil microbial respiration across Chinese forest ecosystems. Global Change Biology, 24, 2841-2849(2018).

    [40] WeiC, YuQ, BaiE et al. Nitrogen deposition weakens plant-microbe interactions in grassland ecosystems. Global Change Biology, 19, 3688-3697(2013).

    [41] WenJ, Zhou HK, Yao BQ. et al. 2014. Characteristics of soil respiration in different degraded alpine grassland in the source region of Three-River. Chinese Journal of Plant Ecology, 38, 209-218.

    [42] XuW, WanS. Water- and plant-mediated responses of soil respiration to topography, fire, and nitrogen fertilization in a semiarid grassland in northern China. Soil Biology and Biochemistry, 40, 679-687(2008).

    [43] YangQ, XuM, LiuH et al. Impact factors and uncertainties of the temperature sensitivity of soil respiration. Acta Ecologica Sinica, 31, 2301-2311(2011).

    [44] YueK, PengY, PengC et al. Stimulation of terrestrial ecosystem carbon storage by nitrogen addition: A meta-analysis. Scientific Reports, 6, 19895(2016).

    [45] Zak DR, Pregitzer KS, Burton AJ et al. Microbial responses to a changing environment: Implications for the future functioning of terrestrial ecosystems. Fungal Ecology, 4, 386-395(2011).

    [46] ZhalninaK, DiasR, de Quadros PD et al. Soil pH determines microbial diversity and composition in the park grass experiment. Microbial Ecology, 69, 395-406(2014).

    [47] ZhangC, NiuD, Hall SJ et al. Effects of simulated nitrogen deposition on soil respiration components and their temperature sensitivities in a semiarid grassland. Soil Biology and Biochemistry, 75, 113-123(2014).

    [48] ZhangN, WanS, GuoJ et al. Precipitation modifies the effects of warming and nitrogen addition on soil microbial communities in northern Chinese grasslands. Soil Biology and Biochemistry, 89, 12-23(2015).

    [49] ZhongY, YanW, ShangguanZ. The effects of nitrogen enrichment on soil CO2 fluxes depending on temperature and soil properties. Global Ecology and Biogeography, 25, 475-488(2016).

    [50] ZhouL, ZhouX, ZhangB et al. Different responses of soil respiration and its components to nitrogen addition among biomes: A meta-analysis. Global Change Biology, 20, 2332-2343(2014).

    [51] ZhouZ, WangC, ZhengM et al. Patterns and mechanisms of responses by soil microbial communities to nitrogen addition. Soil Biology and Biochemistry, 115, 433-441(2017).

    [52] ZhuC, MaY, WuH et al. Divergent effects of nitrogen addition on soil respiration in a semiarid grassland. Scientific Reports, 6, 33541(2016).

    Wei DU, Yue LI, Pei HE, Jiaqi ZHANG, Haichao JING, Cheng NIE, Yinghui LIU. Nitrogen Addition Decreases Soil Respiration without Changing the Temperature Sensitivity in a Semiarid Grassland[J]. Journal of Resources and Ecology, 2020, 11(2): 129
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