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Original Articles

Nitrate leaching, nitrous oxide emission and N use efficiency of aerobic rice under different N application strategy

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Pages 465-479 | Received 06 Mar 2017, Accepted 17 Jul 2017, Published online: 01 Sep 2017

References

  • Akiyama H, Yan X, Yagi K. 2010. Evaluation of effectiveness of enhanced efficiency fertilizers as mitigation options for N2O and NO emissions from agricultural soils: meta-analysis. Glob Change Biol. 16:1837–1846.
  • Arp D, Stein L. 2003. Metabolism of inorganic N compounds by ammonia-oxidizing bacteria. Crit Rev Biochem Mol Biol. 38:471–495.
  • Bateman EJ, Baggs EM. 2005. Contributions of nitrification and denitrification to N2O emissions from soils at different water-filled pore space. Biol Fertil Soils. 41:379–388.
  • Bhatia A, Sasmal S, Jain N, Pathak H, Kumar R, Singh A. 2010. Mitigating nitrous oxide emission from soil under conventional and no-tillage in wheat using nitrification inhibitors. Agric Ecosyst Environ. 136:247–253.
  • Bhattacharyya P, Nayak AK, Mohanty S, Tripathi R, Shahid M, Kumar A, Raja R, Panda BB, Roy KS, Neogi S, et al. 2013. Greenhouse gas emission in relation to labile soil C, N pools and functional microbial diversity as influenced by 39 years long-term fertilizer management in tropical rice. Soil Till Res. 129:93–105.
  • Bhattacharyya P, Roy KS, Neogi S, Adhya TK, Rao KS, Manna MC. 2012. Effects of rice straw and nitrogen fertilization on greenhouse gas emissions and carbon storage in tropical flooded soil planted with rice. Soil Till Res. 124:119–130.
  • Bijay-Singh, Varinderpal-Singh, Yadvinder-Singh, Thind HS, Kumara A, Gupta RK, Kaula A, Vashistha M. 2012. Fixed-time adjustable dose site-specific fertilizer nitrogen management in transplanted irrigated rice (Oryza sativa L.) in South Asia. Field Crop Res. 126:63–69.
  • Bouman BAM. 2001. Water-efficient management strategies in rice production. Int Rice Res Notes. 16:17–22.
  • Bouman BAM, Peng S, Castaneda AR, Visperas RM. 2005. Yield and water use of irrigated tropical aerobic rice systems. Agric Water Manage. 74:87–105.
  • Bouman BAM, Yang X, Wang H, Wang Z, Zhao J, Chen B. 2006. Performance of aerobic rice varieties under irrigated conditions in North China. Field Crop Res. 97:53–65.
  • Bremner JM. 1965. Total nitrogen. In: Black CA, editor. Methods of soil analysis. Part 2: Chemical and microbial properties. Number 9 in series Agronomy. Madison, USA: American Society of Agronomy, Inc.; p. 1049–1178.
  • Cassman KG, Dobermann A, Walters DT. 2002. Agroecosystems, nitrogen-use efficiency, and nitrogen management. Ambio. 31:132–140.
  • Davidson EAM, Keller HE, Erickson LV, Verchot E, Veldkamp E. 2000. Testing a conceptual model of soil emissions of nitrous and nitric oxides. Bio Sci. 50:667–680.
  • Devakumar C, Goswami BK. 1992. Nematicidal principles from Neem-isolated and bioassay of some melicians. Pestic Res J. 4:79–84.
  • Firestone MK, Davidson EA. 1989. Microbiological basis of NO and N2O production and consumption in soil. In: Andrea MO and Schimel DS, editors. Exchange of trace gases between terrestrial ecosystems and the atmosphere. p. 7–21. Chichester: John Wiley & Sons
  • Flechard CR, Ambus P, Skiba U, Rees RM, Hensen A, Van Amstel A. 2007. Effects of climate and management intensity on nitrous oxide emissions in grassland systems across Europe. Agric Ecosyst Environ. 121:135–152.
  • Gehl RJ, Schmidt JP, Stone LR, Schlegel AJ, Clark GA. 2005. In situ measurements of nitrate leaching implicate poor nitrogen and irrigation management on sandy soils. J Environ Qual. 34:2243–2254.
  • Hao X, Chang C, Carefoot JM, Janzen HH, Ellert BH. 2001. Nitrous oxide emissions from an irrigated soil as affected by fertilizer and straw management. Nutr Cycl Agroecosys. 60:1–8.
  • Humphreys E, Meisner C, Gupta R, Timsina J, Beecher HG, YongLu T, Yadvinder-Singh Y-S, Gill MA, Masih I, Guo ZJ, et al. 2005. Water saving in rice-wheat systems. Plant Prod Sci. 8:242–258.
  • Humphreys E, Muirhead WA, Melhuish FM, White RJ, Chalk PM, Douglas LA. 1987. Effects of time of urea application on combine-sown Calrose rice in South-east Australia. II. Mineral nitrogen transformations in the soil-water system. Crop Pasture Sci. 38:113–127.
  • IRRI. 1996. Use of leaf colour chart (LCC) for N management. In: Rice. Philippines: IRRI.
  • Jackson WA, Frost CE, Hildreth DM. 1975. Versatile multi-range analytical manifold for automated analysis of nitrate-nitrogen. Soil Sci Soc Am. 39:592–593.
  • Jäger N, Stange CF, Ludwig B, Flessa H. 2011. Emission rates of N2O and CO2 from soils with different organic matter content from three long-term fertilization experiments—a laboratory study. Biol Fertil Soils. 47:483.
  • Jayanthi T, Gali SK, Chimmad VP, Angadi VV. 2007. Leaf colour chart based N management on yield, harvest index and partial factor productivity of rainfed rice. Karnataka J Agr Sci. 20:405–406.
  • Kaiser EA, Ruser R. 2000. Nitrous oxide emissions from arable soils in Germany— an evaluation of six long-term field experiments. J Plant Nutr Soil Sc. 163:249–259.
  • Kempers AJ. 1974. Determination of sub microquantities of ammonium and nitrates in soils with phenol, sodium nitrates in soils with pehnol, sodium nitroprusside and hypochlorite. Geoderma. 12:201–206.
  • Kiran U, Patra DD. 2003. Medicinal and aromatic plant materials as nitrification inhibitors for augmenting yield and nitrogen uptake of Japanese mint (Mentha arvensis L. Var. Piperascens). Bioresour Technol. 86:267–276.
  • Kumar N, Prasad R, Zaman FU. 2007. Relative response of high yielding variety and a hybrid of rice to levels and sources of nitrogen. Proc Indian Natl Sci Acad. 73:1–6.
  • Kumar A, Nayak AK, Mohanty S, Das BS. 2016. Greenhouse gas emission from direct seeded paddy fields under different soil water potentials in Eastern India. Agric Ecosyst Environ. 228:111–123.
  • Lafitte RH, Courtois B, Arraudeau M. 2002. Genetic improvement of rice in aerobic systems: progress from yield to genes. Field Crop Res. 75:171–190.
  • Lal R. 2004. Soil carbon sequestration to mitigate climate change. Geoderma. 123:1–22.
  • Majumdar D. 2005. Crop yield and soil nitrogen dynamics in an intermittently flooded rice field affected by nitrification inhibitors. Arch Agron Soil Sci. 51:645–653.
  • Majumdar D, Kumar S, Pathak H, Jain MC, Kumar U. 2000. Reducing nitrous oxide emission from an irrigated rice field of North India with nitrification inhibitors. Agric Ecosyst Environ. 81:163–169.
  • Majumdar D, Pathak H, Kumar S, Jain MC. 2002. Nitrous oxide emission from a sandy loam Inceptisol under irrigated wheat in India as influenced by different nitrification inhibitors. Agric Ecosys Environ. 91:283–293.
  • Malla G, Bhati A, Pathak H, Prasad S, Jain N, Singh J. 2005. Mitigating nitrous oxide and methane emissions from soil in rice–wheat system of the Indo-Gangetic plain with nitrification and urease inhibitors. Chemosphere. 58:141–147.
  • Mclain JE, Martens DA. 2005. Nitrous oxide flux from soil amino acid mineralization. Soil Biol Biochem. 37:289–299.
  • Miller MN, Zebarth BJ, Dandie CE, Burton DL, Goyer C, Trevors JT. 2008. Crop residue influence on denitrification, N2O emissions and denitrifier community abundance in soil. Soil Biol Biochem. 40:2553–2562.
  • Mohanty S, Patra AK, Chhonkar PK. 2008. Neem (Azadirachta indica) seed kernel powder retards urease and nitrification activities in different soils at contrasting moisture and temperature regimes. Bioresour Technol. 99:894–899.
  • Mohanty S, Swain CK, Sethi SK, Dalai PC, Bhattachrayya P, Kumar A, Tripathi R, Shahid M, Panda BB, Kumar U, et al. 2017. Crop establishment and nitrogen management affect greenhouse gas emission and biological activity in tropical rice production. Ecol Eng. 104:80–98.
  • Nie L, Xiang J, Peng S, Bouman BAM, Huang J, Cui K. 2009. Alleviating soil sickness caused by aerobic monocropping: responses of aerobic rice to fallow, flooding and crop rotation. J Food Agric Environ. 7:723–727.
  • Patel DP, Das A, Munda GC, Ghosh PK, Bordoloi J, Kumar M. 2010. Evaluation of yield and physiological attributes of high-yielding rice varieties under aerobic and flood-irrigated management practices in mid-hills ecosystem. Agric Water Manage. 97:1269–1276.
  • Peng S, Bouman B, Visperas RM, Castaneda A, Nie L, Park HK. 2006. Comparison between aerobic and flooded rice in the tropics: agronomic performance in an eight-season experiment. Field Crop Res. 96:252–259.
  • Sahrawat KL. 1980. Soil and fertilizer nitrogen transformations under alternate flooding and drying moisture regimes. Plant Soil. 55:225–233.
  • SAS Institute. 2011. The SAS system for Windows. Release 9.2. Cary (NC): SAS Institute.
  • Smith S, Tiedje JM. 1979. The effect of roots on soil denitrification. Soil Sci Soc Am J. 43:951–955.
  • Sosulski T, Szara E, Stępień W, Rutkowska B. 2015. The influence of mineral fertilization and legumes cultivation on the N. Plant Soil Environ. 61:529–536.
  • Sosulski T, Szara E, Szymańska M, Stępień W. 2017. N2O emission and nitrogen and carbon leaching from the soil in relation to long-term and current mineral and organic fertilization–a laboratory study. Plant Soil Environ. 63:97–104.
  • Subbiah BV, Asija GL. 1956. A rapid procedure for the determination of available nitrogen in soils. Curr Sci. 25:259–260.
  • Suresh S, Velu V, Kennedy RR. 1995. Effect of nitrogen sources on Nitrosomonas population, inorganic nitrogen forms and yield of rice in Typic Ustopept. J Indian Soc Soil Sci. 43:274–275.
  • Suri IK, Prasad R, Devakumar C. 2004. Neem coating of urea-present status and future trends. Indian J Fert. 49:21–24.
  • Thind HS, Bijay-Singh, Pannu RPS, Yadvinder-Singh, Varinderpal-Singh, Gupta RK, Vashistha M, Singh J, Kumar A. 2010. Relative performance of neem (Azadirachta indica) coated urea vis-à-vis ordinary urea applied to rice on the basis of soil test or following need based nitrogen management using leaf colour chart. Nutr Cycl Agroecosyst. 87:1–8.
  • Tiedje JM. 1994. Denitrifiers. In: Weaver RW, Angle SJ, Bottomley PJ, Bezdicek DF, Smith S, Tabatabai MA, Wollum AGI, editors. Method of soil analysis, part 2: microbiological and biochemical properties, 5, Soil Sci Soc Am J. p. 245–267.
  • Towprayoon S, Smakgahn K, Poonkaew S. 2005. Mitigation of methane and nitrous oxide emissions from drained irrigated rice fields. Chemosphere. 59:1547–1556.
  • Van Groenigen JW, Velthof GL, Oenema O, Van Groenigen KJ, Van Kessel C. 2010. Towards an agronomic assessment of N2o emissions: a case study for arable crops. Eur J Soil Sci. 61:903-13.
  • Varindrapal-Sing, Bijaya-Singh, Yadvinder-Singh, Thind HS, Gupta RK. 2010. Need based nitrogen management using the chlorophyll meter and leaf colour chart in rice and wheat in South Asia: a review. Nutr Cycl Agroecosys. 88:361–380.
  • Veihmeyer FJ, Hendrickson AH. 1948. Soil density and root penetration. Soil Sci. 65:487–494.
  • Velthof GL, Kuikman PJ, Oenema O. 2002. Nitrous oxide emission from soils amended with crop residues. Nutr Cycl Agroecosys. 62:249–261.
  • Velthof GL, Kuikman PJ, Oenema O. 2003. Nitrous oxide emission from animal manures applied to soil under controlled conditions. Biol Fertil Soils. 37:221–230.
  • Vyas BN, Godrej NB, Mistry KB. 1981. Development and evaluation of neem extract as a coating of urea fertilizer. Fert News. 2:19–25.
  • Walkley A, Black IA. 1934. Estimation of soil organic carbon by the chromic acid titration method. Soil Sci. 37:29–38.
  • Yue J, Shi Y, Liang W, Wu J, Wang C, Huang G. 2005. Methane and nitrous oxide emissions from rice field and related microorganism in black soil, northeastern China. Nutr Cycl Agroecosys. 73:293–301.
  • Zebarth BJ, Rochette P, Burton DL. 2008. N2O emissions from spring barley production as influenced by fertilizer nitrogen rate. Can J Soil Sci. 88:197–205.
  • Zhang A, Chen Z, Ahrens L, Liu W, Li YF. 2012. Concentrations of DDTs and enantiomeric fractions of chiral DDTs in agricultural soils from Zhejiang Province, China, and correlations with total organic carbon and pH. J Agric Food Chem. 60:8294–8301.
  • Zhang L, Lin S, Bouman BAM, Xue C, Wei F, Tao H, Yang X, Wang H, Zhao D, Dittert K. 2009. Response of aerobic rice growth and grain yield to N fertilizer at two contrasting sites near Beijing, China. Field Crop Res. 114:45–53.
  • Zhao X, Xie YX, Xiong ZQ, Yan XY, Xing GX, Zhu ZL. 2009. Nitrogen fate and environmental consequence in paddy soil under rice-wheat rotation in the Taihu lake region, China. Plant Soil. 319:225–234.

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