Nitrogen deposition affects both net and gross soil nitrogen transformations in forest ecosystems: A review.
暂无分享,去创建一个
C. Müller | Scott X. Chang | Z. Cai | Jinbo Zhang | Jing Wang | Yi Cheng | C. Müller | Scott X. Chang | Scott X. Chang | Scott X. Chang
[1] E. Davidson,et al. Nitrogen Mineralization, Immobilization, and Nitrification , 2018, SSSA Book Series.
[2] B. Zhu,et al. A meta-analysis of soil extracellular enzyme activities in response to global change , 2018, Soil Biology and Biochemistry.
[3] C. Müller,et al. Terrestrial N cycling associated with climate and plant‐specific N preferences: a review , 2018 .
[4] Dongwei Liu,et al. Decreasing soil microbial diversity is associated with decreasing microbial biomass under nitrogen addition , 2018 .
[5] Global negative effects of nitrogen deposition on soil microbes , 2018, The ISME Journal.
[6] Kelin Wang,et al. Effects of nitrogen addition on activities of soil nitrogen acquisition enzymes:A meta-analysis , 2018 .
[7] R. Jackson,et al. N addition undermines N supplied by arbuscular mycorrhizal fungi to native perennial grasses , 2018 .
[8] Z. Cai,et al. Effects of six years of simulated N deposition on gross soil N transformation rates in an old-growth temperate forest , 2018, Journal of Forestry Research.
[9] Yiqi Luo,et al. Patterns and mechanisms of responses by soil microbial communities to nitrogen addition , 2017 .
[10] Z. Cai,et al. Effects of pH and mineralisation on nitrification in a subtropical acid forest soil , 2017 .
[11] Z. Cai,et al. Soil gross nitrogen transformations along a secondary succession transect in the north subtropical forest ecosystem of southwest China , 2016 .
[12] Shenggong Li,et al. Ammonium fertilization causes a decoupling of ammonium cycling in a boreal forest , 2016 .
[13] Yiqi Luo,et al. Soil extracellular enzyme activities, soil carbon and nitrogen storage under nitrogen fertilization: A meta-analysis , 2016 .
[14] C. Müller,et al. Are nitrate production and retention processes in subtropical acidic forest soils responsive to ammonium deposition , 2016 .
[15] Jason Karpman,et al. Global change effects on humid tropical forests: Evidence for biogeochemical and biodiversity shifts at an ecosystem scale , 2016 .
[16] S. Hart,et al. Meta-analysis reveals ammonia-oxidizing bacteria respond more strongly to nitrogen addition than ammonia-oxidizing archaea , 2016 .
[17] C. Müller,et al. Enhanced deposition of nitrate alters microbial cycling of N in a subtropical forest soil , 2016, Biology and Fertility of Soils.
[18] Jia-liang Tang,et al. The characteristics of soil N transformations regulate the composition of hydrologic N export from terrestrial ecosystem , 2016 .
[19] Jian Sun,et al. Global patterns and substrate-based mechanisms of the terrestrial nitrogen cycle. , 2016, Ecology letters.
[20] Liang Wang,et al. Soil gross nitrogen transformations along the Northeast China Transect (NECT) and their response to simulated rainfall events , 2016, Scientific Reports.
[21] C. Poll,et al. Nitrogen Cycle Enzymes , 2015 .
[22] Wei Zhang,et al. Impacts of nitrogen deposition on soil nitrogen cycle in forest ecosystems: A review , 2015 .
[23] C. Huttenhower,et al. Sequencing and beyond: integrating molecular 'omics' for microbial community profiling , 2015, Nature Reviews Microbiology.
[24] Z. Cai,et al. Heterotrophic nitrification of organic N and its contribution to nitrous oxide emissions in soils , 2015 .
[25] E. Veldkamp,et al. Response of N cycling to nutrient inputs in forest soils across a 1000-3000 m elevation gradient in the Ecuadorian Andes. , 2015, Ecology.
[26] S. Niu,et al. A global analysis of soil acidification caused by nitrogen addition , 2015 .
[27] Shenggong Li,et al. Effects of nitrogen deposition and fertilization on N transformations in forest soils: a review , 2015, Journal of Soils and Sediments.
[28] S. Tringe,et al. High-Throughput Metagenomic Technologies for Complex Microbial Community Analysis: Open and Closed Formats , 2015, mBio.
[29] G. Matteucci,et al. On the tracks of Nitrogen deposition effects on temperate forests at their southern European range – an observational study from Italy , 2014, Global change biology.
[30] C. Prescott,et al. Microbial functional genes involved in nitrogen fixation, nitrification and denitrification in forest ecosystems , 2014 .
[31] S. Blagodatsky,et al. Soil C and N availability determine the priming effect: microbial N mining and stoichiometric decomposition theories , 2014, Global change biology.
[32] N. Hasselquist,et al. The return of an experimentally N-saturated boreal forest to an N-limited state: observations on the soil microbial community structure, biotic N retention capacity and gross N mineralisation , 2014, Plant and Soil.
[33] W. Wanek,et al. Adjustment of microbial nitrogen use efficiency to carbon:nitrogen imbalances regulates soil nitrogen cycling , 2014, Nature Communications.
[34] E. Veldkamp,et al. Nitrogen-oxide emissions from tropical forest soils exposed to elevated nitrogen input strongly interact with rainfall quantity and seasonality , 2014, Biogeochemistry.
[35] P. Högberg,et al. Relations among soil microbial community composition, nitrogen turnover, and tree growth in N-loaded and previously N-loaded boreal spruce forest , 2013 .
[36] C. Müller,et al. Mechanisms for the retention of inorganic N in acidic forest soils of southern China , 2013, Scientific Reports.
[37] B. Mary,et al. Soil pH has contrasting effects on gross and net nitrogen mineralizations in adjacent forest and grassland soils in central Alberta, Canada , 2013 .
[38] Ji‐Zheng He,et al. Current insights into the autotrophic thaumarchaeal ammonia oxidation in acidic soils , 2012 .
[39] F. Chapin,et al. Sinks for nitrogen inputs in terrestrial ecosystems: a meta-analysis of 15N tracer field studies. , 2012, Ecology.
[40] T. Lonhienne,et al. Past, present and future of organic nutrients , 2012, Plant and Soil.
[41] B. Ward. The Global Nitrogen Cycle , 2012 .
[42] C. Müller,et al. Effects of long‐term repeated mineral and organic fertilizer applications on soil nitrogen transformations , 2012 .
[43] J. Schjoerring,et al. Interactions between uptake of amino acids and inorganic nitrogen in wheat plants , 2011 .
[44] Scott X. Chang,et al. Gross N transformations were little affected by 4 years of simulated N and S depositions in an aspen-white spruce dominated boreal forest in Alberta, Canada , 2011 .
[45] H. Laudon,et al. A meta-analysis of the effects of nitrogen additions on base cations: Implications for plants, soils, and streams , 2011 .
[46] Bo Li,et al. Responses of ecosystem nitrogen cycle to nitrogen addition: a meta-analysis. , 2011, The New phytologist.
[47] Z. Cai,et al. Nitrogen cycling in forest soils across climate gradients in Eastern China , 2011, Plant and Soil.
[48] S. Sohi,et al. Effect of soil pH on the chemical composition of organic matter in physically separated soil fractions in two broadleaf woodland sites at Rothamsted, UK , 2010 .
[49] W. Horwath,et al. Pathways of nitrogen utilization by soil microorganisms - a review. , 2010 .
[50] M. Strickland,et al. Considering fungal:bacterial dominance in soils – Methods, controls, and ecosystem implications , 2010 .
[51] Lingli Liu,et al. A global perspective on belowground carbon dynamics under nitrogen enrichment. , 2010, Ecology letters.
[52] P. Brookes,et al. Investigating the mechanisms for the opposing pH relationships of fungal and bacterial growth in soil , 2010 .
[53] E. Veldkamp,et al. Impact of elevated N input on soil N cycling and losses in old-growth lowland and montane forests in Panama. , 2010, Ecology.
[54] P. Grogan,et al. Soil microbial and plant community responses to single large carbon and nitrogen additions in low arctic tundra , 2010, Plant and Soil.
[55] Markus Reichstein,et al. Reduction of forest soil respiration in response to nitrogen deposition , 2010 .
[56] David L. Jones,et al. Protein breakdown represents a major bottleneck in nitrogen cycling in grassland soils. , 2009 .
[57] P. Curtis,et al. Impacts of elevated N inputs on north temperate forest soil C storage, C/N, and net N-mineralization , 2009 .
[58] Sara Hallin,et al. Relationship between N-cycling communities and ecosystem functioning in a 50-year-old fertilization experiment , 2009, The ISME Journal.
[59] K. Weathers,et al. The Influence of Tree Species, Nitrogen Fertilization, and Soil C to N ratio on Gross Soil Nitrogen Transformations , 2009 .
[60] N. Kaneko,et al. Ecological risks in anthropogenic disturbance of nitrogen cycles in natural terrestrial ecosystems , 2009, Ecological Research.
[61] K. Treseder. Nitrogen additions and microbial biomass: a meta-analysis of ecosystem studies. , 2008, Ecology letters.
[62] J. Galloway,et al. Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions , 2008, Science.
[63] K. Treseder,et al. Nitrogen limitation of net primary productivity in terrestrial ecosystems is globally distributed. , 2008, Ecology.
[64] N. Fierer,et al. Microbial nitrogen limitation increases decomposition. , 2007, Ecology.
[65] Wei Zhao,et al. Does ammonium-based N addition influence nitrification and acidification in humid subtropical soils of China? , 2007, Plant and Soil.
[66] E. Veldkamp,et al. Changes in nitrogen cycling and retention processes in soils under spruce forests along a nitrogen enrichment gradient in Germany , 2007 .
[67] P. Högberg,et al. Gross nitrogen mineralisation and fungi-to-bacteria ratios are negatively correlated in boreal forests , 2007, Biology and Fertility of Soils.
[68] G. Likens,et al. High Nitrate Retention during Winter in Soils of the Hubbard Brook Experimental Forest , 2007, Ecosystems.
[69] Jens Kattge,et al. Estimation of parameters in complex 15N tracing models by Monte Carlo sampling , 2007 .
[70] I. Schmidt,et al. Leaching of nitrate from temperate forests effects of air pollution and forest management , 2006 .
[71] K. Pregitzer,et al. Microbial Cycling of C and N in Northern Hardwood Forests Receiving Chronic Atmospheric NO3− Deposition , 2006, Ecosystems.
[72] S. Allison. Cheaters, diffusion and nutrients constrain decomposition by microbial enzymes in spatially structured environments , 2005 .
[73] Edward B. Rastetter,et al. CONTROLS ON NITROGEN CYCLING IN TERRESTRIAL ECOSYSTEMS: A SYNTHETIC ANALYSIS OF LITERATURE DATA , 2005 .
[74] R. Ruess,et al. Nitrogen additions to pristine, high-latitude, forest ecosystems: consequences for soil nitrogen transformations and retention in mid and late succession , 2005 .
[75] J. Schimel,et al. NITROGEN MINERALIZATION: CHALLENGES OF A CHANGING PARADIGM , 2004 .
[76] B. H. Janssen,et al. Nitrogen mineralization in relation to C:N ratio and decomposability of organic materials , 1996, Plant and Soil.
[77] J. Six,et al. Short communication Reciprocal transfer of carbon and nitrogen by decomposer fungi at the soil -litter interface , 2003 .
[78] F. Beese,et al. SOIL NITROGEN CYCLE IN HIGH NITROGEN DEPOSITION FOREST: CHANGES UNDER NITROGEN SATURATION AND LIMING , 2003 .
[79] L. Vestgarden,et al. Potential nitrogen transformations in mineral soils of two coniferous forests exposed to different N inputs , 2003 .
[80] S. Recous,et al. Gross Nitrogen Fluxes in Soil: Theory Measurement and Application of 15N Pool Dilution Techniques , 2003 .
[81] C. Watson,et al. Verifying the nitrification to immobilisation ratio (N/I) as a key determinant of potential nitrate loss in grassland and arable soils , 2002 .
[82] A. Bollmann,et al. Growth at Low Ammonium Concentrations and Starvation Response as Potential Factors Involved in Niche Differentiation among Ammonia-Oxidizing Bacteria , 2002, Applied and Environmental Microbiology.
[83] J. Stoddard,et al. Is Nitrogen Deposition Altering the Nitrogen Status of Northeastern Forests? , 2002 .
[84] R. Bradley. An alternative explanation for the post-disturbance NO3– flush in some forest ecosystems , 2001 .
[85] G. Kowalchuk,et al. Nitrification in acid soils: micro-organisms and mechanisms , 2001 .
[86] R. Sinsabaugh,et al. MICROBIAL ENZYME SHIFTS EXPLAIN LITTER DECAY RESPONSES TO SIMULATED NITROGEN DEPOSITION , 2000 .
[87] G. Bengtsson,et al. Fate of 15N labelled nitrate and ammonium in a fertilized forest soil. , 2000 .
[88] Pamela A. Matson,et al. Nitrogen oxide emissions after nitrogen additions in tropical forests , 1999, Nature.
[89] William H. McDowell,et al. Nitrogen Saturation in Temperate Forest Ecosystems , 1998 .
[90] R. Tripathi,et al. Leaf litter decomposition and nutrient mineralization patterns in regrowing stands of a humid subtropical forest after tree cutting , 1998 .
[91] N. Scott,et al. Carbon and nitrogen transformations in New Zealand plantation forest soils from sites with different N status , 1998 .
[92] P. Gundersen. Effects of enhanced nitrogen deposition in a spruce forest at Klosterhede, Denmark, examined by moderate NH4NO3 addition , 1998 .
[93] C. A. Campbell,et al. EFFECTS OF ACIDITY ON MINERALIZATION: pH- DEPENDENCE OF ORGANIC MATTER MINERALIZATION IN WEAKLY ACIDIC SOILS , 1998 .
[94] A. Mamolos,et al. Nutrient release from decomposing Lotus corniculatus residues in relation to soil pH and nitrogen levels , 1997 .
[95] Björn Berg,et al. Effect of N deposition on decomposition of plant litter and soil organic matter in forest systems , 1997 .
[96] G. Marzluf,et al. Genetic regulation of nitrogen metabolism in the fungi , 1997, Microbiology and molecular biology reviews : MMBR.
[97] S. Hart,et al. High rates of nitrification and nitrate turnover in undisturbed coniferous forests , 1997, Nature.
[98] D. Moorhead,et al. Resource allocation to extracellular enzyme production: A model for nitrogen and phosphorus control of litter decomposition , 1994 .
[99] M. Willig,et al. Functional diversity of microbial communities: A quantitative approach , 1994 .
[100] E. Davidson,et al. Measuring gross nitrogen mineralization, and nitrification by 15 N isotopic pool dilution in intact soil cores , 1991 .
[101] M. Tien,et al. Selection and characterization of mutants of Phanerochaete chrysosporium exhibiting ligninolytic activity under nutrient-rich conditions , 1990, Applied and environmental microbiology.
[102] P. Sollins,et al. Net nitrogen mineralization from light- and heavy-fraction forest soil organic matter , 1984 .
[103] S. Hubbell,et al. Single-nutrient microbial competition: qualitative agreement between experimental and theoretically forecast outcomes. , 1980, Science.
[104] P. L. Gainey,et al. RELATIVE SENSITIVITY OF NITRIFYING ORGANISMS TO HYDROGEN IONS IN SOILS AND IN SOLUTIONS , 1962 .