N Response of No-Till Dryland Winter Triticale Forage
Triticale's forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the forage-yield response of dryland winter triticale to applied N and residual nitrate N and (2) fit the yield data to a regression equation based...
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| Veröffentlicht in: | Communications in Soil Science and Plant Analysis Jg. 47; H. 9; S. 1117 - 1127 |
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Taylor & Francis
14.05.2016
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| Abstract | Triticale's forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the forage-yield response of dryland winter triticale to applied N and residual nitrate N and (2) fit the yield data to a regression equation based on both applied N and residual soil nitrates and use the fitted equation to calculate economic optimum N rates for this crop (EONR). Winter triticale was direct seeded no-till into wheat or millet stubble for four site years at the United States Department of Agriculture, Agricultural Research Service (USDA-ARS) Central Great Plains Research Station. In each experiment (1995, 2007, 2009 and 2010) just prior to planting, the soil was sampled for nitrate-N. Replicated field plots were top-dressed with 0, 22, 34, 67, 90, 101 or 135 kg of N fertilizer per ha as urea-N. Yield and total biomass N was then measured in each plot in late spring each year. A relative yield N response equation, fitted to all four years of data, was able to explain 93% of the variability in yield. That equation provided reasonable EONR estimates that matched 87% of the EONRs calculated for individual years. |
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| AbstractList | Triticale's forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the forage-yield response of dryland winter triticale to applied N and residual nitrate N and (2) fit the yield data to a regression equation based on both applied N and residual soil nitrates and use the fitted equation to calculate economic optimum N rates for this crop (EONR). Winter triticale was direct seeded no-till into wheat or millet stubble for four site years at the United States Department of Agriculture, Agricultural Research Service (USDA-ARS) Central Great Plains Research Station. In each experiment (1995, 2007, 2009 and 2010) just prior to planting, the soil was sampled for nitrate-N. Replicated field plots were top-dressed with 0, 22, 34, 67, 90, 101 or 135 kg of N fertilizer per ha as urea-N. Yield and total biomass N was then measured in each plot in late spring each year. A relative yield N response equation, fitted to all four years of data, was able to explain 93% of the variability in yield. That equation provided reasonable EONR estimates that matched 87% of the EONRs calculated for individual years. Triticale's forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the forage-yield response of dryland winter triticale to applied N and residual nitrate N and (2) fit the yield data to a regression equation based on both applied N and residual soil nitrates and use the fitted equation to calculate economic optimum N rates for this crop (EONR). Winter triticale was direct seeded no-till into wheat or millet stubble for four site years at the United States Department of Agriculture, Agricultural Research Service (USDA-ARS) Central Great Plains Research Station. In each experiment (1995, 2007, 2009 and 2010) just prior to planting, the soil was sampled for nitrate-N. Replicated field plots were top-dressed with 0, 22, 34, 67, 90, 101 or 135 kg of N fertilizer per ha as urea-N. Yield and total biomass N was then measured in each plot in late spring each year. A relative yield N response equation, fitted to all four years of data, was able to explain 93% of the variability in yield. That equation provided reasonable EONR estimates that matched 87% of the EONRs calculated for individual years. |
| Author | Poss, David J. Vigil, Merle F. |
| Author_xml | – sequence: 1 givenname: Merle F. surname: Vigil fullname: Vigil, Merle F. email: merle.vigil@ars.usda.gov organization: United States Department of Agriculture (USDA) Agricultural Research Service, Central Great Plains Research Station – sequence: 2 givenname: David J. surname: Poss fullname: Poss, David J. organization: United States Department of Agriculture (USDA) Agricultural Research Service, Central Great Plains Research Station |
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| Cites_doi | 10.2134/agronj2003.0347 10.2134/agronj2007.0030 10.2136/sssaj1993.03615995005700060037x 10.1080/00224561.2002.12457479 10.2134/agronj2009.0348 10.2134/agronj2004.0825 10.2134/agronj2007.0273 10.1081/PLN-120017134 |
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| References | Cabrera M. L. (CIT0003) 1994 Vigil M. F. (CIT0019) 2002; 57 Shroyer J. P. (CIT0016) 1996 Colorado Agricultural Statistics (CIT0005) 2002 CIT0010 CIT0020 CIT0012 CIT0011 Dahnke W. C. (CIT0006) 1988 Surowiecki J. (CIT0017) 2004 SAS Institute (CIT0015) 2009 Franzen D. (CIT0008) 2010; 13 (CIT0007) 2008 CIT0014 CIT0002 CIT0013 CIT0004 CIT0009 |
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| Snippet | Triticale's forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the... Triticale’s forage-yield response to fertilizer nitrogen (N) is impressive on soils testing low in available N. Our objectives were to (1) quantify the... |
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| SubjectTerms | Agricultural research Agricultural Research Service arid lands Arid zones biomass direct seeding equations Fertilizers forage grain yield Great Plains region millets nitrate nitrogen nitrates Nitrogen nitrogen fertilizers no-till no-tillage planting Residual soils soil Soil testing spring stubble triticale Triticum aestivum Urea urea nitrogen wheat Winter |
| Title | N Response of No-Till Dryland Winter Triticale Forage |
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