Uneingeschränkter Zugang

Growth analysis of winter wheat cultivars as affected by nitrogen fertilization / Wachstumsanalyse von Winterweizensorten in Abhängigkeit von Stickstoffdüngung


Zitieren

Afifi, A., Clark, V.A. and S. May (2004): Computer-aided multivariate analysis. Chapman & Hall/CRC, Boca Raton, FL.AfifiA.ClarkV.A.MayS.2004Computer-aided multivariate analysisChapman & Hall/CRCBoca Raton, FLSearch in Google Scholar

Barneix, A.J. (1990): Yield variation in wheat: nitrogen accumulation, light interception and harvest index. In: Lambers, H. et al. (Eds.): Causes and consequences of variation in growth rate and productivity of higher plants. SPB Academic Publishing, The Hague, The Netherlands, pp. 87–100.BarneixA.J.1990Yield variation in wheat: nitrogen accumulation, light interception and harvest indexLambersH.Causes and consequences of variation in growth rate and productivity of higher plantsSPB Academic PublishingThe Hague, The Netherlands87100Search in Google Scholar

Blake, N., Lanning, S.P., Martin, J.M., Sherman, J.D. and L.E. Talbert (2007): Relationship of flag leaf characteristics to economically important traits in two spring wheat crosses. Crop Science 47, 491–496.BlakeN.LanningS.P.MartinJ.M.ShermanJ.D.TalbertL.E.2007Relationship of flag leaf characteristics to economically important traits in two spring wheat crossesCrop Science4749149610.2135/cropsci2006.05.0286Search in Google Scholar

Boote, K.J., Jones, J.W., Tollenaar, M., Dzotsi, K.A., Prasad, P.V.V. and J.I. Lizaso (2016): Testing approaches and components in physiologically based crop models for sensitivity to climatic factors. In: Hatfield, J.L. and D. Fleischer (Eds.): Improving Modeling Tools to Assess Climate Change Effects on Crop Response. Advances in Agricultural Systems Modeling 7. ASA, CSSA, SSSA, Madison, WI, pp. 1–31.BooteK.J.JonesJ.W.TollenaarM.DzotsiK.A.PrasadP.V.V.LizasoJ.I.2016Testing approaches and components in physiologically based crop models for sensitivity to climatic factorsHatfieldJ.L.FleischerD.Improving Modeling Tools to Assess Climate Change Effects on Crop Response. Advances in Agricultural Systems Modeling 7ASA, CSSA, SSSA, Madison, WI13110.2134/advagricsystmodel7.2014.0019.5Search in Google Scholar

Borrell, A.K., Hammer, G.L. and R.G. Henzell (2000): Does maintaining green leaf area in sorghum improve yield under drought? I. Leaf growth and senescence. Crop Science 40, 1026–1037.BorrellA.K.HammerG.L.HenzellR.G.2000Does maintaining green leaf area in sorghum improve yield under drought? Leaf I. growth and senescenceCrop Science401026103710.2135/cropsci2000.4041026xSearch in Google Scholar

Bullock, D.G., Simons, F.W, Chung, I.M. and G.I. Johnson (1993): Growth analysis of corn grown with or without starter fertilizer. Crop Science 33, 112–117.BullockD.G.SimonsF.WChungI.M.JohnsonG.I.1993Growth analysis of corn grown with or without starter fertilizerCrop Science3311211710.2135/cropsci1993.0011183X003300010021xSearch in Google Scholar

Causton, D.R. and J.C. Venus (1981): The Biometry of Plant Growth. Edward Arnold, London.CaustonD.R.VenusJ.C.1981The Biometry of Plant GrowthEdward ArnoldLondonSearch in Google Scholar

Clawson, K.L., Specht J.E. and B.L. Blad (1986): Growth analysis of soybean isolines differing in pubescence density. Agrononomy Journal 78, 164–172.ClawsonK.L.SpechtJ.E.BladB.L.1986Growth analysis of soybean isolines differing in pubescence densityAgrononomy Journal7816417210.2134/agronj1986.00021962007800010033xSearch in Google Scholar

Davidson, H.R. and C.A. Campbell (1984): Growth rates, harvest index and moisture use of Manitou spring wheat as influenced by nitrogen, temperature and moisture. Canadian Journal of Plant Science 64, 825–839.DavidsonH.R.CampbellC.A.1984Growth rates, harvest index and moisture use of Manitou spring wheat as influenced by nitrogen, temperature and moistureCanadian Journal of Plant Science6482583910.4141/cjps84-114Search in Google Scholar

Evans, L.T., Wardlaw, I.E. and R.A. Fischer (1975): Wheat. In: Evans, L.T. (Ed.): Crop Physiology: Some Case Histories. Cambridge University Press, Cambridge, UK, pp. 101–150.EvansL.T.WardlawI.E.FischerR.A.1975WheatEvansL.T.Crop Physiology: Some Case HistoriesCambridge University PressCambridge, UK101150Search in Google Scholar

Farmaha, B.S., Sims, A.L. and J.J. Wiersma (2015): Impact of nitrogen fertility on the production performance of four hard red spring wheat cultivars. Agronomy Journal 107, 864–870.FarmahaB.S.SimsA.L.WiersmaJ.J.2015Impact of nitrogen fertility on the production performance of four hard red spring wheat cultivarsAgronomy Journal10786487010.2134/agronj14.0278Search in Google Scholar

Hansen, K.A., Martin, J.M., Lanning, S.P. and L.E. Talbert (2005): Correlation of genotype performance for agronomic and physiological traits in space-planted versus densely seeded conditions. Crop Science 45, 1023–1028.HansenK.A.MartinJ.M.LanningS.P.TalbertL.E.2005Correlation of genotype performance for agronomic and physiological traits in space-planted versus densely seeded conditionsCrop Science451023102810.2135/cropsci2004.0194Search in Google Scholar

Hatfield, J.L., Boote, K.J., Kimball, B.A., Ziska, L.H., Izaurralde, R.C., Ort, D., Thomson, A.M. and D. Wolfe (2011): Climate impacts on agriculture: Implications for crop production. Agronomy Journal 103, 351–370.HatfieldJ.L.BooteK.J.KimballB.A.ZiskaL.H.IzaurraldeR.C.OrtD.ThomsonA.M.WolfeD.2011Climate impacts on agriculture: Implications for crop productionAgronomy Journal10335137010.2134/agronj2010.0303Search in Google Scholar

Heggenstaller, A.H., Liebman, M. and R.P. Anex (2009): Growth analysis of biomass production in sole-crop and double-crop corn systems. Crop Science 49, 2215–2224.HeggenstallerA.H.LiebmanM.AnexR.P.2009Growth analysis of biomass production in sole-crop and double-crop corn systemsCrop Science492215222410.2135/cropsci2008.12.0709Search in Google Scholar

Helsel, D.B. and K.J. Frey (1978): Grain yield variations in oats associated with differences in leaf area duration among oat lines. Crop Science 18, 765–769.HelselD.B.FreyK.J.1978Grain yield variations in oats associated with differences in leaf area duration among oat linesCrop Science1876576910.2135/cropsci1978.0011183X001800050018xSearch in Google Scholar

Hoffmann, C.M. and S. Kluge-Severin (2011): Growth analysis of autumn and spring sown sugar beet. European Journal of Agronomy 34, 1–9.HoffmannC.M.Kluge-SeverinS.2011Growth analysis of autumn and spring sown sugar beetEuropean Journal of Agronomy341910.1016/j.eja.2010.09.001Search in Google Scholar

Hu, M. and P. Wiatrak (2012): Effect of planting date on soybean growth, yield, and grain quality: review. Agronomy Journal 104, 785–790.HuM.WiatrakP.2012Effect of planting date on soybean growth, yield, and grain quality: reviewAgronomy Journal10478579010.2134/agronj2011.0382Search in Google Scholar

Hunt, R. (1982): Plant Growth Curves: The Functional Approach to Plant Growth Analysis. Edward Arnold, London, UK.HuntR.1982Plant Growth Curves: The Functional Approach to Plant Growth AnalysisEdward ArnoldLondon, UKSearch in Google Scholar

Hunt, R. and I.T. Parsons (1974): A computer program for deriving growth-functions in plant growth-analysis. Journal of Applied Ecology 11, 297–307.HuntR.ParsonsI.T.1974A computer program for deriving growth-functions in plant growth-analysisJournal of Applied Ecology1129730710.2307/2402022Search in Google Scholar

Karimi, M.M. and K.H.M. Siddique (1991): Crop growth and relative growth rates of old and modern wheat cultivars. Australian Journal of Agricultural Research 42, 13–20.KarimiM.M.SiddiqueK.H.M.1991Crop growth and relative growth rates of old and modern wheat cultivarsAustralian Journal of Agricultural Research42132010.1071/AR9910013Search in Google Scholar

Kimball, B.A., White, J.W., Wall, G.A. and M.J. Ottman (2016): Wheat responses to a wide range of temperatures: The hot serial cereal experiment. In: Hatfield, J.L. and D. Fleischer (Eds.): Improving Modeling Tools to Assess Climate Change Effects on Crop Response. Advances in Agricultural Systems Modeling 7. ASA, CSSA, SSSA, Madison, WI, pp. 33–44.KimballB.A.WhiteJ.W.WallG.A.OttmanM.J.2016Wheat responses to a wide range of temperatures: The hot serial cereal experimentHatfieldJ.L.FleischerD.Improving Modeling Tools to Assess Climate Change Effects on Crop ResponseAdvances in Agricultural Systems Modeling 7ASA, CSSA, SSSA, Madison, WI334410.2134/advagricsystmodel7.2014.0014Search in Google Scholar

Lambers, H., Poorter, H. and M.M.I. Van Vuuren (1998): Inherent Variation in Plant Growth. Backhuys Publisher, Leiden, The Netherlands.LambersH.PoorterH.Van VuurenM.M.I.1998Inherent Variation in Plant GrowthBackhuys PublisherLeiden, The NetherlandsSearch in Google Scholar

Munier-Jolain, N., Biarnes, V., Chaillet, I., Lecoeur, J. and M.-H. Jeuffroy (2010): Physiology of the Pea Crop. CRC Press, Enfield, New Hampshire.Munier-JolainN.BiarnesV.ChailletI.LecoeurJ.JeuffroyM.-H.2010Physiology of the Pea CropCRC PressEnfield, New Hampshire10.1201/b10504Search in Google Scholar

Neugschwandtner, R.W., Wichmann, S., Gimplinger, D.M., Wagentristl, H. and H.-P. Kaul (2013): Chickpea performance compared to pea, barley and oat in Central Europe: Growth analysis and yield. Turkish Journal of Field Crops 18, 179–184.NeugschwandtnerR.W.WichmannS.GimplingerD.M.WagentristlH.KaulH.-P.2013Chickpea performance compared to pea, barley and oat in Central Europe: Growth analysis and yieldTurkish Journal of Field Crops18179184Search in Google Scholar

Neugschwandtner, R.W., Böhm, K., Hall, R.M. and H.P. Kaul (2015): Development, growth, and nitrogen use of autumn- and spring-grown facultative wheat. Acta Agriculturae Scandinavica, Section B — Soil & Plant Science 65, 6–13.NeugschwandtnerR.W.BöhmK.HallR.M.KaulH.P.2015Development, growth, and nitrogen use of autumn- and spring-grown facultative wheatActa Agriculturae Scandinavica, Section B — Soil & Plant Science6561310.1080/09064710.2014.958522Search in Google Scholar

Oliveira, J.S., Brown, H.E., Gash, A. and D.J. Moot (2016): An explanation of yield differences in three potato cultivars. Agronomy Journal 108, 1434–1446.OliveiraJ.S.BrownH.E.GashA.MootD.J.2016An explanation of yield differences in three potato cultivarsAgronomy Journal1081434144610.2134/agronj2015.0486Search in Google Scholar

Ozturk, A., Caglar, O. and S. Bulu (2006): Growth and yield response of facultative wheat to winter sowing, freezing sowing and spring sowing at different seeding rates. Journal of Agronomy and Crop Science 192, 10–16.OzturkA.CaglarO.BuluS.2006Growth and yield response of facultative wheat to winter sowing, freezing sowing and spring sowing at different seeding ratesJournal of Agronomy and Crop Science192101610.1111/j.1439-037X.2006.00187.xSearch in Google Scholar

Poorter, H. (1990): Interspecific variation in relative growth rate: On ecological causes and physiological consequences. In: Lambers et al. (Eds.): Causes and Consequences of Variation in Growth Rate and Productivity of Higher Plants. SPB Academic Publishing, The Hague, The Netherlands, pp. 35–44.PoorterH.1990Interspecific variation in relative growth rate: On ecological causes and physiological consequencesLambers et al.Causes and Consequences of Variation in Growth Rate and Productivity of Higher PlantsSPB Academic PublishingThe Hague, The Netherlands3544Search in Google Scholar

Reynolds, M., Foulkes, M.J., Slafer, G.A., Berry, P., Parry, M.A.J., Snape, J.W. and W.J. Angus (2009): Raising yield potential in wheat. Journal of Experimental Botany 60, 1899–1918.ReynoldsM.FoulkesM.J.SlaferG.A.BerryP.ParryM.A.J.SnapeJ.W.AngusW.J.2009Raising yield potential in wheatJournal of Experimental Botany601899191810.1093/jxb/erp01619363203Search in Google Scholar

Royo, C. and R. Blanco (1999): Growth analysis of five spring and five winter triticale genotypes. Agronomy Journal 91, 305–311.RoyoC.BlancoR.1999Growth analysis of five spring and five winter triticale genotypesAgronomy Journal9130531110.2134/agronj1999.00021962009100020020xSearch in Google Scholar

Serrago, R.A., Alzueta, I., Savin, R. and G.A. Slafer (2013): Understanding grain yield responses to source-sink ratios during grain filling in wheat and barley under contrasting environments. Field Crops Research 150, 42–51.SerragoR.A.AlzuetaI.SavinR.SlaferG.A.2013Understanding grain yield responses to source-sink ratios during grain filling in wheat and barley under contrasting environmentsField Crops Research150425110.1016/j.fcr.2013.05.016Search in Google Scholar

Shearman, V.J., Sylvester-Bradley, R., Scott, R.K. and M.J. Foulkes (2005): Physiological processes associated with wheat yield progress in the UK. Crop Science 45, 175–185.ShearmanV.J.Sylvester-BradleyR.ScottR.K.FoulkesM.J.2005Physiological processes associated with wheat yield progress in the UKCrop Science45175185Search in Google Scholar

Silim, S.N., Hebblethwaite, P.D. and M.C. Heath (1985): Comparison of the effects of autumn and spring sowing date on growth and yield of combining peas (Pisum sativum L.). The Journal of Agricultural Science 104, 35–46.SilimS.N.HebblethwaiteP.D.HeathM.C.1985Comparison of the effects of autumn and spring sowing date on growth and yield of combining peas (Pisum sativum L.)The Journal of Agricultural Science104354610.1017/S0021859600042969Search in Google Scholar

Silva, V.J., Pedreira, C.G.S., Sollenberger, L.E., Carvalho, M.S.S., Tonato, F. and D.C. Basto (2016): Growth analysis of irrigated ‘Tifton 85’ and Jiggs Bermudagrasses as affected by harvest management. Crop Science 56, 882–890.SilvaV.J.PedreiraC.G.S.SollenbergerL.E.CarvalhoM.S.S.TonatoF.BastoD.C.2016Growth analysis of irrigated ‘Tifton 85’ and Jiggs Bermudagrasses as affected by harvest managementCrop Science5688289010.2135/cropsci2015.07.0430Search in Google Scholar

Slafer, G.A., Savin, R. and V.O. Sadras (2014): Coarse and fine regulation of wheat yield components in response to genotype and environment. Field Crops Research 157, 71–83.SlaferG.A.SavinR.SadrasV.O.2014Coarse and fine regulation of wheat yield components in response to genotype and environmentField Crops Research157718310.1016/j.fcr.2013.12.004Search in Google Scholar

Sugár, E., Berzsenyi, Z., Árendás, T. and P. Bónis (2016): Effect of nitrogen fertilization and genotype on the yield and yield components of winter wheat. Die Bodenkultur: Journal of Land Management, Food and Environment 67, 25–34.SugárE.BerzsenyiZ.ÁrendásT.BónisP.2016Effect of nitrogen fertilization and genotype on the yield and yield components of winter wheatDie Bodenkultur: Journal of Land Management, Food and Environment67253410.1515/boku-2016-0003Search in Google Scholar

Thorne, G.N. (1973): Physiology of wheat and barley. Rothamsted Experimental Station Report, 1973, Part 2, 2–25.ThorneG.N.1973Physiology of wheat and barleyRothamsted Experimental Station Report, 1973, Part2225Search in Google Scholar

Tollenaar, M. and T.B. Daynard (1978): Leaf senescence in short-season maize hybrids. Canadian Journal of Plant Science 58, 869–874.TollenaarM.DaynardT.B.1978Leaf senescence in short-season maize hybridsCanadian Journal of Plant Science5886987410.4141/cjps78-126Search in Google Scholar

Tollenaar, M., Dwyer, L.M. and D.W. Stewart (1992): Ear and kernel formation in maize hybrids representing three decades of grain yield improvement in Ontario. Crop Science, 432–438.TollenaarM.DwyerL.M.StewartD.W.1992Ear and kernel formation in maize hybrids representing three decades of grain yield improvement in OntarioCrop Science43243810.2135/cropsci1992.0011183X003200020030xSearch in Google Scholar

Wolfe, D.W., Henderson, D.W., Hsiao, T.C. and A. Alvino (1988): Interactive water and nitrogen effects on senescence of maize. I. Leaf area duration, nitrogen distribution, and yield. Agronomy Journal 80, 859–864.WolfeD.W.HendersonD.W.HsiaoT.C.AlvinoA.1988Interactive water and nitrogen effects on senescence of maize. I. Leaf area duration, nitrogen distribution, and yieldAgronomy Journal8085986410.2134/agronj1988.00021962008000060004xSearch in Google Scholar

Yusuf, R.I., Siemens, J.C. and D.G. Bullock (1999): Growth analysis of soybean under no-tillage and conventional tillage systems. Agronomy Journal 91, 928–933.YusufR.I.SiemensJ.C.BullockD.G.1999Growth analysis of soybean under no-tillage and conventional tillage systemsAgronomy Journal9192893310.2134/agronj1999.916928xSearch in Google Scholar

eISSN:
0006-5471
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Biologie, Ökologie, andere