At the dated check, the references listed below either did not resolve in
Crossref or DataCite, or carried a retraction notice. Each one is shown with the
registry record that put it there.
The 109 checked references that resolve
resolves10.1890/03-5120NITROGEN DEPOSITION MODIFIES SOIL CARBON STORAGE THROUGH CHANGES IN MICROBIAL ENZYMATIC ACTIVITY
resolves10.5772/29419Strategies for Managing Soil Nitrogen to Prevent Nitrate-N Leaching in Intensive Agriculture System
resolves10.1126/science.1136674Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions
resolves10.1111/gcb.13253Interactive effects of global change factors on soil respiration and its components: a meta‐analysis
resolves10.1029/2005JD005825Assessing future nitrogen deposition and carbon cycle feedback using a multimodel approach: Analysis of nitrogen deposition
resolves10.1093/jxb/erm097The challenge of improving nitrogen use efficiency in crop plants: towards a more central role for genetic variability and quantitative genetics within integrated approaches
resolves10.1139/a05-015Leaching of nitrate from temperate forests effects of air pollution and forest management
resolves10.1111/j.1461-0248.2007.01113.xGlobal analysis of nitrogen and phosphorus limitation of primary producers in freshwater, marine and terrestrial ecosystems
resolves10.1371/journal.pone.0088752Nitrogen Addition Significantly Affects Forest Litter Decomposition under High Levels of Ambient Nitrogen Deposition
resolves10.1007/s10584-017-2024-yHistoric nitrogen deposition determines future climate change effects on nitrogen retention in temperate forests
resolves10.1111/1365-2745.12893Nitrogen fertilization, not water addition, alters plant phylogenetic community structure in a semi‐arid steppe
resolves10.1016/j.foreco.2013.02.006Variations in N mineralization and herbaceous species diversity due to sites, seasons, and N treatments in a seasonally dry tropical environment of India
resolves10.1890/08-1140.1Global assessment of nitrogen deposition effects on terrestrial plant diversity: a synthesis
resolves10.1007/s10533-012-9795-zThe role of nitrogen in climate change and the impacts of nitrogen–climate interactions in the United States: foreword to thematic issue
resolves10.1111/1365-2745.12743Nitrogen deposition and climate change have increased vascular plant species richness and altered the composition of grazed subalpine grasslands
resolves10.1038/338499a0Microbial biomass acts as a source of plant nutrients in dry tropical forest and savanna
resolves10.1023/A:1010693614196Microbial biomass and nitrogen cycling responses to fertilization and litter removal in young northern hardwood forests
resolves10.1007/s11461-009-0013-7Effects of elevated nitrogen deposition on soil microbial biomass carbon in major subtropical forests of southern China
resolves10.1371/journal.pone.0171022Evaluation and simulation of nitrogen mineralization of paddy soils in Mollisols area of Northeast China under waterlogged incubation
resolves10.1007/BF00257645Effect of pH on nitrogen mineralization in crop-residue-treated soils
resolves10.1007/s10533-004-0356-yNitrogen additions to pristine, high-latitude, forest ecosystems: consequences for soil nitrogen transformations and retention in mid and late succession
resolves10.1007/s11104-004-3848-6Divergent effects of elevated CO2, N fertilization, and plant diversity on soil C and N dynamics in a grassland field experiment
resolves10.1016/j.soilbio.2006.04.048Impacts of anthropogenic N additions on nitrogen mineralization from plant litter in exotic annual grasslands
resolves10.4141/S04-072Soil nitrogen dynamics as affected by landscape position and nitrogen fertilizer
resolves10.2136/sssaj1999.6351448xLong‐Term Effects of Nitrogen Fertilization on Nitrogen Availability in Coastal Douglas‐Fir Forest Floors
resolves10.1139/cjfr-31-10-1768Temporal and spatial variation of nitrogen transformations in nitrogen-saturated soils of a central Appalachian hardwood forest
resolves10.1023/A:1015858922200Effects of Liming and Fertilization (N, PK) on Chemistry and Nitrogen Turnover in Acidic Forest Soils in SW Sweden
resolves10.1111/j.1747-0765.2006.00031.xRelationships between microbial biomass nitrogen, nitrate leaching and nitrogen uptake by corn in a compost and chemical fertilizer-amended regosol
resolves10.1007/s004420000544A meta-analysis of the response of soil respiration, net nitrogen mineralization, and aboveground plant growth to experimental ecosystem warming
resolves10.1139/cjfr-2016-0529Effects of nitrogen deposition on nitrate leaching from forests of the northeastern United States will change with tree species composition
resolves10.1007/s10021-008-9203-7Large Loss of Dissolved Organic Nitrogen from Nitrogen-Saturated Forests in Subtropical China
resolves10.1002/ecm.1279Nutrient limitation of soil microbial processes in tropical forests
resolves10.1088/1748-9326/8/2/024031Environmental effects of the recent emission changes in China: implications for particulate matter pollution and soil acidification
resolves10.1111/j.1365-2435.2009.01663.xContribution of acidification and eutrophication to declines in species richness of calcifuge grasslands along a gradient of atmospheric nitrogen deposition
resolves10.1007/s10669-010-9276-7Effects of soil physical characteristics and biotic interferences on the herbaceous community composition and species diversity on the campus of Banaras Hindu University, India
resolves10.1038/ngeo339Negative impact of nitrogen deposition on soil buffering capacity
resolves10.2134/jeq2003.0480Nitrate Leaching and Nitrogen Recovery Following Application of Polyolefin-Coated Urea to Potato
resolves10.1093/jpe/rtu018Changes in species composition, diversity and biomass of herbaceous plant traits due to N amendment in a dry tropical environment of India
resolves10.1016/0038-0717(94)90261-5Nitrogen and phosphorus availability and mineralization in dryland reduced tillage cultivation: Effects of residue placement and chemical fertilizer
resolves10.1002/eap.2037Responses of diversity, productivity, and stability to the nitrogen input in a tropical grassland
resolves10.1111/1365-2745.12468Differential responses of grasses and forbs led to marked reduction in below‐ground productivity in temperate steppe following chronic N deposition
resolves10.1111/gcb.12665Nitrogen deposition contributes to soil acidification in tropical ecosystems
resolves10.2307/1932179Energy Storage and the Balance of Producers and Decomposers in Ecological Systems
resolves10.2307/2388624Experimental Decomposition of Litter from the Tamaulipan Cloud Forest: A Comparison of Four Simple Models
resolves10.2307/2261259Consequences of Habitat Heterogeneity for Availability of Nutrients in a Dry Tropical Forest
resolves10.1016/0038-0717(85)90144-0Chloroform fumigation and the release of soil nitrogen: A rapid direct extraction method to measure microbial biomass nitrogen in soil
resolves10.1081/ESE-120024443Ambient Concentrations of Total Suspended Particulate Matter and Its Elemental Constituents at the Wider Area of the Mining Facilities of TVX Hellas in Chalkidiki, Greece
resolves10.1007/s004420050381A meta-analysis of elevated CO 2 effects on woody plant mass, form, and physiology
resolves10.1007/BF00000849Landscape interactions among nitrogen mineralization, species composition, and long-term fire frequency
resolves10.1023/A:1004828221756Influence of gap size and soil properties on microbial biomass in a subtropical humid forest of north-east India
resolves10.1016/j.ecolind.2015.10.033The effects of a 9-year nitrogen and water addition on soil aggregate phosphorus and sulfur availability in a semi-arid grassland
resolves10.1007/s11104-014-2219-1Soil carbon fractions in grasslands respond differently to various levels of nitrogen enrichments
resolves10.1002/ecy.1635Fungi exposed to chronic nitrogen enrichment are less able to decay leaf litter
resolves10.1016/0038-0717(92)90265-YMicrobial biomass responses to seasonal change and imposed drying regimes at increasing depths of undisturbed topsoil profiles
resolves10.3390/f9030153Seasonal Effects on Microbial Community Structure and Nitrogen Dynamics in Temperate Forest Soil
resolves10.1007/s100210000042Interactions between Litter Lignin and Nitrogenitter Lignin and Soil Nitrogen Availability during Leaf Litter Decomposition in a Hawaiian Montane Forest
resolves10.1890/05-0150NITROGEN ADDITIONS AND LITTER DECOMPOSITION: A META-ANALYSIS
resolves10.2136/sssaj2006.0339Chronic Nitrogen Deposition Enhances Nitrogen Mineralization Potential of Semiarid Shrubland Soils
resolves10.1038/s41598-017-08554-1Microbial communities with distinct denitrification potential in spruce and beech soils differing in nitrate leaching
resolves10.1007/s11368-014-0909-1pH, nitrogen mineralization, and KCl-extractable aluminum as affected by initial soil pH and rate of vetch residue application: results from a laboratory study
resolves10.1017/S0266467407004233Effects of tree cover and season on soil nitrogen dynamics and microbial biomass in an African savanna woodland dominated by <i>Colophospermum mopane</i>
resolves10.1890/08-2210.1Atmospheric nitrogen deposition influences denitrification and nitrous oxide production in lakes
resolves10.1016/j.fcr.2014.02.014Nitrogen dynamics, apparent mineralization and balance calculations in a maize – wheat double cropping system of the North China Plain
resolves10.1038/s41598-017-12953-9Effect of Nitrate Leaching Caused by Swine Manure Application in Fields of the Yellow River Irrigation Zone of Ningxia, China
resolves10.4172/2375-4397.1000136Nitrogen Sources and Cycling in the Ecosystem and its Role in Air, Water and Soil Pollution: A Critical Review
resolves10.1016/0378-1127(92)90469-PNitrogen-induced nutritional imbalances — a contributing factor to Norway spruce decline in the Bohemian forest (Austria)
resolves10.1111/j.1467-7652.2008.00351.xGenetic engineering of improved nitrogen use efficiency in rice by the tissue‐specific expression of
<i>alanine aminotransferase</i>
The 14 references without a DOI — listed, not checked
no DOI — not checkedSagar, R., Verma, P., Verma, H., Singh, D. K. & Verma, P. Species diversity–primary productivity relationships in a nitrogen amendment experiment in grasslands at Varanasi, India. Curr. Sci. 108, 2163–2166 (2015).
no DOI — not checkedDavidson, E. A., et al. Excess nitrogen in the U.S. environment: trends, risks, and solutions. Issues Ecol. 15, 1–16 (2012).
no DOI — not checkedSDG (Sustainable Development Goal). 2019. UN Report: Nature’s Dangerous Decline ‘Unprecedented; Species Extinction Rates ‘Accelerating’. (Assessed on 6th June, 2019); https://www.un.org/sustainabledevelopment/blog/2019/05/nature-decline-unprecedented-report/.
no DOI — not checkedAgrawal, R. R. & Mehrotra, C. L. Soil Work in Uttar Pradesh Vol. 2 (Department of Agriculture, Lucknow, 1952).
no DOI — not checkedBuol, S. W., Southard, R. J., Graham, R. C. & McDaniel, P. A. Soil Genesis and Classification 5th edn. (Iowa State Press, Ames, IA, 2003).
no DOI — not checkedSagar, R., Singh, A. & Singh, J. S. Differential effect of woody plant canopies on species composition and diversity of ground vegetation: a case study. Trop. Ecol. 49, 189–197 (2008).
no DOI — not checkedJackson, M. Soil Chemical Analysis (Prentice Hall, Englewood Cliffs, NJ, 1958).
no DOI — not checkedAPHA. Standard methods for the examination of water and wastewater (American Public Health Association APHA, Washington, DC, 1985).
no DOI — not checkedSPSS. SPSS Base 7.5, Applications Guide (SPSS, Chicago, 1997).
no DOI — not checkedArbuckle, J. L. AMOS 16 User’s Guide (AMOS Development Corporation, Spring House, 2007).
no DOI — not checkedSmith, S. E. & Read, D. J. Mycorrhizal Symbiosis 3rd edn. (Academic Press, New York, 2008).
no DOI — not checkedSchwab, G. J. & Murdock, L. W. Nitrogen Transformation Inhibitors and Controlled Release Urea. University of Kentucky College of Agriculture, Lexington, KY, 40546. AGR185. www.ca.uky.edu (2010).
no DOI — not checkedEckert, D. Efficient Fertilizer Use Mannual—Nitrogen. http://www.rainbowplantfood.com/agronomics/efu/nitrogen.pdf (2009).
no DOI — not checkedGarzio-Hadzick, A. M. Experimental nitrogen deposition influences microbial denitrifying communities and increases denitrification rates in a Northern Hardwood Forest. M.Sc. Thesis, Submitted to the University of Michigan (2012).
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