$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

[해외논문] The fate of nitrogen in grain cropping systems: a meta‐analysis of 15N field experiments

Ecological applications : a publication of the Ecological Society of America, v.19 no.8, 2009년, pp.2167 - 2184  

Gardner, Jennifer B. ,  Drinkwater, Laurie E.

Abstract AI-Helper 아이콘AI-Helper

Intensively managed grain farms are saturated with large inputs of nitrogen (N) fertilizer, leading to N losses and environmental degradation. Despite decades of research directed toward reducing N losses from agroecosystems, progress has been minimal, and the currently promoted best management prac...

참고문헌 (71)

  1. Aber, John, McDowell, William, Nadelhoffer, Knute, Magill, Alison, Berntson, Glenn, Kamakea, Mark, McNulty, Steven, Currie, William, Rustad, Lindsey, Fernandez, Ivan. Nitrogen Saturation in Temperate Forest Ecosystems. Bioscience, vol.48, no.11, 921-934.

  2. Ainsworth, Elizabeth A., Long, Stephen P.. What have we learned from 15 years of free‐air CO2 enrichment (FACE)? A meta‐analytic review of the responses of photosynthesis, canopy properties and plant production to rising CO2. The New phytologist, vol.165, no.2, 351-372.

  3. U.S. agricultural policy and the 2007 Farm Bill: promoting the economic resilience and conserving the ecological integrity of American farmlands Arha K. 207 2006 Conserving ecosystem services across agrarian landscapes. 

  4. Arnqvist, Göran, Wooster, David. Meta-analysis: synthesizing research findings in ecology and evolution. Trends in ecology & evolution, vol.10, no.6, 236-240.

  5. Ambio Caraco N. F. 167 28 1999 Human impact on nitrate export: an analysis using major world rivers. 

  6. Carpenter, S. R., Caraco, N. F., Correll, D. L., Howarth, R. W., Sharpley, A. N., Smith, V. H.. NONPOINT POLLUTION OF SURFACE WATERS WITH PHOSPHORUS AND NITROGEN. Ecological applications : a publication of the Ecological Society of America, vol.8, no.3, 559-568.

  7. 10.1175/1525-7541(2002)003<0249:GLPAYM>2.0.CO;2 

  8. Clarholm, M.. Interactions of bacteria, protozoa and plants leading to mineralization of soil nitrogen. Soil biology & biochemistry, vol.17, no.2, 181-187.

  9. Clark, M. Sean, Horwath, William R., Shennan, Carol, Scow, Kate M.. Changes in Soil Chemical Properties Resulting from Organic and Low‐Input Farming Practices. Agronomy journal, vol.90, no.5, 662-671.

  10. An introduction to meta-analysis Cochrane Collaboration. 2008 

  11. Curtis, Peter S., Wang, Xianzhong. A meta-analysis of elevated CO 2 effects on woody plant mass, form, and physiology. Oecologia, vol.113, no.3, 299-313.

  12. 10.1175/1520-0442(1997)010<2943:SOGLPV>2.0.CO;2 

  13. Dai, Aiguo, Trenberth, Kevin E., Qian, Taotao. A Global Dataset of Palmer Drought Severity Index for 1870-2002: Relationship with Soil Moisture and Effects of Surface Warming. Journal of hydrometeorology, vol.5, no.6, 1117-1130.

  14. David, Mark B., Gentry, Lowell E.. Anthropogenic Inputs of Nitrogen and Phosphorus and Riverine Export for Illinois, USA. Journal of environmental quality, vol.29, no.2, 494-508.

  15. David, Mark B., Gentry, Lowell E., Kovacic, David A., Smith, Karen M.. Nitrogen Balance in and Export from an Agricultural Watershed. Journal of environmental quality, vol.26, no.4, 1038-1048.

  16. Donner, Simon D., Kucharik, Christopher J.. Corn-based ethanol production compromises goal of reducing nitrogen export by the Mississippi River. Proceedings of the National Academy of Sciences of the United States of America, vol.105, no.11, 4513-4518.

  17. Drinkwater, L.E.; Janke, R.R. etc. "Effects of tillage intensity on nitrogen dynamics and productivity in legume-based grain systems." Plant and soil, v.227 no.1/2 (2000), pp. 99-113, doi:10.1023/A:1026569715168.

  18. 10.1016/S0065-2113(04)92003-2 

  19. Drinkwater, L. E., Wagoner, P., Sarrantonio, M.. Legume-based cropping systems have reduced carbon and nitrogen losses. Nature, vol.396, no.6708, 262-265.

  20. Hypoxia in the Northern Gulf of Mexico: an update by the EPA Science Advisory Board. EPA-SAB-08-004 EPA SAB [Environmental Protection Agency Science Advisory Board]. 2007 

  21. Dead in the water EWG [Environmental Working Group]. 2006 

  22. Fenn, Mark E., Poth, Mark A., Aber, John D., Baron, Jill S., Bormann, Bernard T., Johnson, Dale W., Lemly, A. Dennis, McNulty, Steven G., Ryan, Douglas F., Stottlemyer, Robert. NITROGEN EXCESS IN NORTH AMERICAN ECOSYSTEMS: PREDISPOSING FACTORS, ECOSYSTEM RESPONSES, AND MANAGEMENT STRATEGIES. Ecological applications : a publication of the Ecological Society of America, vol.8, no.3, 706-733.

  23. Galloway, JN, Cowling, EB. Reactive Nitrogen and The World: 200 Years of Change. Ambio, vol.31, no.2, 64-71.

  24. Awakening the dead zone: an investment for agriculture, water quality, and climate change Greenhalgh S. 2003 

  25. Design and analysis of ecological experiments Gurevitch J. 378 1993 Meta-analysis: combining the results of independent experiments. 

  26. Gurevitch, Jessica, Hedges, Larry V.. STATISTICAL ISSUES IN ECOLOGICAL META-ANALYSES. Ecology, vol.80, no.4, 1142-1149.

  27. Hamid, A., Ahmad, M.. Interaction of 15N-labelled ammonium nitrate, urea and ammonium sulphate with soil N during growth of wheat (Triticum aestivum L.) under field conditions. Biology and fertility of soils, vol.20, no.3, 185-189.

  28. 10.1016/S0065-2113(08)60556-8 

  29. Energy in world agriculture 6 Helsel Z. R. 177 1992 Energy and alternatives for fertilizer and pesticide use. 

  30. Hodge, A., Stewart, J., Robinson, D., Griffiths, B. S., Fitter, A. H.. Competition between roots and soil micro-organisms for nutrients from nitrogen-rich patches of varying complexity. The Journal of ecology, vol.88, no.1, 150-164.

  31. Howarth, RW, Boyer, EW, Pabich, WJ, Galloway, JN. Nitrogen Use in the United States from 1961-2000 and Potential Future Trends. Ambio, vol.31, no.2, 88-96.

  32. 10.1016/S0166-2481(97)80039-6 

  33. JENKINSON, D. S., FOX, R. H., RAYNER, J. H.. Interactions between fertilizer nitrogen and soil nitrogen-the so‐called ‘priming’ effect. The Journal of soil science, vol.36, no.3, 425-444.

  34. Johnson, Dale W, Curtis, Peter S. Effects of forest management on soil C and N storage: meta analysis. Forest ecology and management, vol.140, no.2, 227-238.

  35. Jokela, William E., Randall, Gyles W.. Fate of Fertilizer Nitrogen as Affected by Time and Rate of Application on Corn. Soil Science Society of America journal, vol.61, no.6, 1695-1703.

  36. Kissel, D. E., Smith, S. J., Hargrove, W. L., Dillow, D. W.. Immobilization of Fertilizer Nitrate Applied to a Swelling Clay Soil in the Field. Soil Science Society of America journal, vol.41, no.2, 346-349.

  37. Kramer, Andrew W, Doane, Timothy A, Horwath, William R, van Kessel, Chris. Short-term nitrogen-15 recovery vs. long-term total soil N gains in conventional and alternative cropping systems. Soil biology & biochemistry, vol.34, no.1, 43-50.

  38. Kramer, Andrew W., Doane, Timothy A., Horwath, William R., Kessel, Chris van. Combining fertilizer and organic inputs to synchronize N supply in alternative cropping systems in California. Agriculture, ecosystems & environment, vol.91, no.1, 233-243.

  39. Kumar, Kuldip, Goh, K.M.. Recovery of 15N-labelled fertilizer applied to winter wheat and perennial ryegrass crops and residual 15N recovery by succeeding wheat crops under different crop residue management practices. Nutrient cycling in agroecosystems, vol.62, no.2, 123-130.

  40. Marriott, Emily E., Wander, Michelle. Qualitative and quantitative differences in particulate organic matter fractions in organic and conventional farming systems. Soil biology & biochemistry, vol.38, no.7, 1527-1536.

  41. Thirst for corn: what 2007 plantings could mean for the environment. WRI Policy Note Number 2 Marshall L. 2007 

  42. Matson, P. A., Parton, W. J., Power, A. G., Swift, M. J.. Agricultural Intensification and Ecosystem Properties. Science, vol.277, no.5325, 504-509.

  43. McCracken, Daniel V., Smith, M. Scott, Grove, John H., MacKown, Charles T., Blevins, Robert L.. Nitrate Leaching as Influenced by Cover Cropping and Nitrogen Source. Soil Science Society of America journal, vol.58, no.5, 1476-1483.

  44. McIsaac, Gregory F., David, Mark B., Gertner, George Z., Goolsby, Donald A.. Nitrate flux in the Mississippi River. Nature, vol.414, no.6860, 166-167.

  45. Crop production NASS [National Agriculture Statistics Service]. 2007 

  46. Osenberg, Craig W., Sarnelle, Orlando, Cooper, Scott D., Holt, Robert D.. RESOLVING ECOLOGICAL QUESTIONS THROUGH META-ANALYSIS: GOALS, METRICS, AND MODELS. Ecology, vol.80, no.4, 1105-1117.

  47. Paterson, Eric. Importance of rhizodeposition in the coupling of plant and microbial productivity. European journal of soil science, vol.54, no.4, 741-750.

  48. Soil organic matter in temperate agroecosystems: long-term experiments in North America Paustian K. 15 1997 Management controls on soil carbon. 

  49. Pilbeam, C. J.. Effect of climate on the recovery in crop and soil of15N-labelled fertilizer applied to wheat. Fertilizer research, vol.45, no.3, 209-215.

  50. Powlson, D. S., Hart, P. B. S., Poulton, P. R., Johnston, A. E., Jenkinson, D. S.. Influence of soil type, crop management and weather on the recovery of 15N-labelled fertilizer applied to winter wheat in spring. The Journal of agricultural science, vol.118, no.1, 83-100.

  51. Puget, P., Drinkwater, L.E.. Short‐Term Dynamics of Root‐ and Shoot‐Derived Carbon from a Leguminous Green Manure. Soil Science Society of America journal, vol.65, no.3, 771-779.

  52. Qian, Taotao, Dai, Aiguo, Trenberth, Kevin E., Oleson, Keith W.. Simulation of Global Land Surface Conditions from 1948 to 2004. Part I: Forcing Data and Evaluations. Journal of hydrometeorology, vol.7, no.5, 953-975.

  53. Rabalais, NN, Turner, RE, Scavia, D. Beyond Science into Policy: Gulf of Mexico Hypoxia and the Mississippi River. Bioscience, vol.52, no.2, 129-142.

  54. Nutrient cycling in terrestrial ecosystems Reynolds B. 103 1990 Field methods for estimating solute and sediment losses in small upland streams. 

  55. Rochester, I.J, Peoples, M.B, Hulugalle, N.R, Gault, R.R, Constable, G.A. Using legumes to enhance nitrogen fertility and improve soil condition in cotton cropping systems. Field crops research, vol.70, no.1, 27-41.

  56. Rolston, D. E., Broadbent, F. E., Goldhamer, D. A.. Field Measurement of Denitrification: II. Mass Balance and Sampling Uncertainty. Soil Science Society of America journal, vol.43, no.4, 703-708.

  57. Metawin statistical software for meta-analysis Rosenberg M. S. 2000 

  58. Sanchez, Jose E., Harwood, Richard R., Willson, Thomas C., Kizilkaya, Kadir, Smeenk, Jeffrey, Parker, Elaine, Paul, Eldor A., Knezek, Bernard D., Robertson, G. Philip. Managing Soil Carbon and Nitrogen for Productivity and Environmental Quality. Agronomy journal, vol.96, no.3, 769-775.

  59. Scavia, Donald., Donnelly, Kristina A.. Reassessing Hypoxia Forecasts for the Gulf of Mexico. Environmental science & technology, vol.41, no.23, 8111-8117.

  60. Sowers, Karen E., Pan, William L., Miller, Baird C., Smith, Jeffrey L.. Nitrogen Use Efficiency of Split Nitrogen Applications in Soft White Winter Wheat. Agronomy journal, vol.86, no.6, 942-948.

  61. 10.1007/978-1-4612-1224-9_15 

  62. Stevenson, F. C., Walley, F. L., van Kessel, C.. Direct vs. Indirect Nitrogen‐15 Approaches to Estimate Nitrogen Contributions from Crop Residues. Soil Science Society of America journal, vol.62, no.5, 1327-1334.

  63. Timmons, D. R., Cruse, R. M.. Effect of Fertilization Method and Tillage on Nitrogen‐15 Recovery by Corn. Agronomy journal, vol.82, no.4, 777-784.

  64. Tonitto, C., David, M.B., Drinkwater, L.E.. Replacing bare fallows with cover crops in fertilizer-intensive cropping systems: A meta-analysis of crop yield and N dynamics. Agriculture, ecosystems & environment, vol.112, no.1, 58-72.

  65. Tran, Thi Sen, Giroux, Marcel. Fate of 15N-labelled fertilizer applied to corn grown on different soil types. Canadian journal of soil science, vol.78, no.4, 597-605.

  66. Table 7 USDA-ERS [United States Department of Agriculture-Economic Research Service]. 2008 

  67. Ecological Applications Vitousek P. M. 737 7 1997 Human alteration of the global nitrogen cycle: sources and consequences. 

  68. Wand, Stephanie J. E., Midgley, GuY. F., Jones, Michael H., Curtis, Peter S.. Responses of wild C4 and C3 grass (Poaceae) species to elevated atmospheric CO2 concentration: a meta‐analytic test of current theories and perceptions. Global change biology, vol.5, no.6, 723-741.

  69. Soil organic matter in sustainable agriculture. Volume 11 Wander M. M. 67 2004 Soil organic matter fractions and their relevance to soil function. 

  70. Wolt, Jeffrey D.. A meta-evaluation of nitrapyrin agronomic and environmental effectiveness with emphasis on corn production in the Midwestern USA. Nutrient cycling in agroecosystems, vol.69, no.1, 23-41.

  71. Agricultural ecosystems: unifying concepts Woodmansee R. 145 1984 Comparative nutrient cycles of natural and agricultural ecosystems: a step toward principles. 

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로