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Concentrations and uptake of micronutrients by oat and pea in intercrops in response to N fertilization and sowing ratio


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Ahmadi, M., Beuerlein, J.E., Wiebold, W.J. and J.H. Cline (1993): Effects of cultural practices on oat grain yield and mineral composition. Communications in Soil Science and Plant Analysis 24, 457–474.AhmadiMBeuerleinJEWieboldWJClineJH1993Effects of cultural practices on oat grain yield and mineral compositionCommunications in Soil Science and Plant Analysis242445710.1080/00103629309368814Search in Google Scholar

Anderson, D.C. (1978): Use of cereal residues in beef cattle production systems. Journal of Animal Science 46, 849–861.AndersonDC1978Use of cereal residues in beef cattle production systemsJournal of Animal Science464684910.2527/jas1978.463849xSearch in Google Scholar

Arduini, I., Masoni, A., Ercoli, L. and M. Mariotti (2006): Grain yield, and dry matter and nitrogen accumulation and remobilization in durum wheat as affected by variety and seeding rate. European Journal of Agronomy 25, 309–318.ArduiniIMasoniAErcoliLMariottiM2006Grain yield, and dry matter and nitrogen accumulation and remobilization in durum wheat as affected by variety and seeding rateEuropean Journal of Agronomy252530910.1016/j.eja.2006.06.009Search in Google Scholar

Aufhammer, W., Kübler, E. and H.-P. Piepho (2004): Cereals and grain legumes as components of mixed stands – 1st communication: Mixing effects on grain yield. Pflanzenbauwissenschaften 8, 56–63.AufhammerWKüblerEPiephoH-P2004Cereals and grain legumes as components of mixed stands – 1st communication: Mixing effects on grain yieldPflanzenbauwissenschaften8856Search in Google Scholar

Bartle, S.J. and T.J. Klopfenstein (1988): Nonchemical opportunities for improving crop residue feed quality: A review. Journal of Production Agriculture 1, 356–361.BartleSJKlopfensteinTJ1988Nonchemical opportunities for improving crop residue feed quality: A reviewJournal of Production Agriculture1135610.2134/jpa1988.0356Search in Google Scholar

Beaty, R.D. and J.D. Kerber (1993): Concepts, Instrumentation and Techniques in Atomic Absorption Spectrophotometry. 2nd ed., The Perkin-Elmer Corporation, Norwalk, CT, USA.BeatyRDKerberJD1993Concepts, Instrumentation and Techniques in Atomic Absorption Spectrophotometry. 2nd edThe Perkin-Elmer CorporationNorwalk, CT, USASearch in Google Scholar

Bedoussac, L. and E. Justes (2011): A comparison of commonly used indices for evaluating species interactions and intercrop efficiency: Application to durum wheat-winter pea intercrops. Field Crop Research 124, 25–36.BedoussacLJustesE2011A comparison of commonly used indices for evaluating species interactions and intercrop efficiency: Application to durum wheat-winter pea intercropsField Crop Research1241242510.1016/j.fcr.2011.05.025Search in Google Scholar

Biabani, A. (2009): Agronomic performance of intercropped wheat cultivars. Asian Journal of Plant Sciences 8, 78–81.BiabaniA2009Agronomic performance of intercropped wheat cultivarsAsian Journal of Plant Sciences887810.3923/ajps.2009.78.81Search in Google Scholar

Cakmak, I. (2008): Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? Plant and Soil 302, 1–17.CakmakI2008Enrichment of cereal grains with zinc: Agronomic or genetic biofortification?Plant and Soil302302110.1007/s11104-007-9466-3Search in Google Scholar

Callaway, R.M. (1995): Positive interactions among plants. Botanical Review 61, 306–349.CallawayRM1995Positive interactions among plantsBotanical Review616130610.1007/BF02912621Search in Google Scholar

Campbell, M.H., Miller, J.K. and F.N. Schrick (1999): Effect of additional cobalt, copper, manganese, and zinc on reproduction and milk yield of lactating dairy cows receiving bovine somatotropin. Journal of Dairy Science 82, 1019–1025.CampbellMHMillerJKSchrickFN1999Effect of additional cobalt, copper, manganese, and zinc on reproduction and milk yield of lactating dairy cows receiving bovine somatotropinJournal of Dairy Science8282101910.3168/jds.S0022-0302(99)75322-1Search in Google Scholar

Ciampitti, I.A. and T.J. Vyn (2013): Maize nutrient accumulation and partitioning in response to plant density and nitrogen rate: II. Calcium, Magnesium, and Micronutrients. Agronomy Journal 105, 1645–1657.CiampittiIAVynTJ2013Maize nutrient accumulation and partitioning in response to plant density and nitrogen rate: II. Calcium, Magnesium, and MicronutrientsAgronomy Journal105105164510.2134/agronj2013.0126Search in Google Scholar

Coleman, S.W. and J.E. Moore (2003): Feed quality and animal performance. Field Crops Research 84, 17–29.ColemanSWMooreJE2003Feed quality and animal performanceField Crops Research84841710.1016/S0378-4290(03)00138-2Search in Google Scholar

Dai, X., Zhou, X., Jia, D., Xiao, L., Kong, H. and M. He (2013): Managing the seeding rate to improve nitrogen–use efficiency of winter wheat. Field Crops Research 154, 100–109.DaiXZhouXJiaDXiaoLKongHHeM2013Managing the seeding rate to improve nitrogen–use efficiency of winter wheatField Crops Research15415410010.1016/j.fcr.2013.07.024Search in Google Scholar

Dinkelaker, B., Römheld, V. and H. Marschner (1989): Citric acid excretion and precipitation of calcium citrate in the rhizosphere of white lupin (Lupinus albus L). Plant and Cell Physiology 12, 285–292.DinkelakerBRömheldVMarschnerH1989Citric acid excretion and precipitation of calcium citrate in the rhizosphere of white lupin (Lupinus albus L)Plant and Cell Physiology121228510.1111/j.1365-3040.1989.tb01942.xSearch in Google Scholar

Fageria, N.K., Baligar, V.C. and R.B. Clark (2002): Micronutrients in crop production. Advances in Agronomy 77, 185–268.FageriaNKBaligarVCClarkRB2002Micronutrients in crop productionAdvances in Agronomy777718510.1016/S0065-2113(02)77015-6Search in Google Scholar

Fischer, G.E.J. (2008): Micronutrients and animal nutrition and the link between the application of micronutrients to crops and animal health. Turkish Journal of Agriculture and Forestry 32, 221–233.FischerGEJ2008Micronutrients and animal nutrition and the link between the application of micronutrients to crops and animal healthTurkish Journal of Agriculture and Forestry3232221Search in Google Scholar

Fridley, J.D. (2001): The influence of species diversity on ecosystem productivity: How, where, and why? Oikos 93, 514–526.FridleyJD2001The influence of species diversity on ecosystem productivity: How, where, and why?Oikos939351410.1034/j.1600-0706.2001.930318.xSearch in Google Scholar

Gardner, W.K., Barber, D.A. and D.G. Parbery (1983): The acquisition of phosphorus by Lupinus albus L. III. The probable mechanism by which phosphorus movement in the soil/root interface is enhanced. Plant and Soil 70, 107–124.GardnerWKBarberDAParberyDG1983The acquisition of phosphorus by Lupinus albus L. III. The probable mechanism by which phosphorus movement in the soil/root interface is enhancedPlant and Soil707010710.1007/BF02374754Search in Google Scholar

Głowacka, A. (2013): Uptake of Cu, Zn, Fe and Mn by maize in the strip cropping system. Plant, Soil and Environment 59, 322–328.GłowackaA2013Uptake of Cu, Zn, Fe and Mn by maize in the strip cropping systemPlant, Soil and Environment595932210.17221/122/2013-PSESearch in Google Scholar

Gunes, A., Cicek, N., Inal, A., Alpaslan, M., Eraslan, F., Guneri, E. and T. Guzelordu (2006): Genotypic response of chickpea (Cicer arietinum L.) cultivars to drought stress implemented at pre- and post-anthesis stages and its relations with nutrient uptake and efficiency. Plant, Soil and Environment 52, 368–376.GunesACicekNInalAAlpaslanMEraslanFGuneriEGuzelorduT2006Genotypic response of chickpea (Cicer arietinum L.) cultivars to drought stress implemented at pre- and post-anthesis stages and its relations with nutrient uptake and efficiencyPlant, Soil and Environment525236810.17221/3454-PSESearch in Google Scholar

Gunes, A., Inal, A., Adak, M.S., Alpaslan, M., Bagci, E.G., Erol, T. and D.J. Pilbeam (2007): Mineral nutrition of wheat, chickpea and lentil as affected by mixed cropping and soil moisture. Nutrient Cycling in Agroecosystems 78, 83–96.GunesAInalAAdakMSAlpaslanMBagciEGErolTPilbeamDJ2007Mineral nutrition of wheat, chickpea and lentil as affected by mixed cropping and soil moistureNutrient Cycling in Agroecosystems78788310.1007/s10705-006-9075-1Search in Google Scholar

Hauggaard-Nielsen, H., Gooding, M., Ambus, P., Corre-Hellou, G., Crozat, Y., Dahlmann, C., Dibet, A., von Fragstein, P., Pristeri, A., Monti, M. and E.S. Jensen (2009): Pea-barley intercropping and short-term subsequent crop effects across European organic cropping conditions. Nutrient Cycling in Agroecosystems 85, 141–155.Hauggaard-NielsenHGoodingMAmbusPCorre-HellouGCrozatYDahlmannCDibetAvon FragsteinPPristeriAMontiMJensenES2009Pea-barley intercropping and short-term subsequent crop effects across European organic cropping conditionsNutrient Cycling in Agroecosystems858514110.1007/s10705-009-9254-ySearch in Google Scholar

Hidiroglou, M. (1979): Trace element deficiencies and fertility in ruminants: A review. Journal of Dairy Science 62, 1995–2206.HidiroglouM1979Trace element deficiencies and fertility in ruminants: A reviewJournal of Dairy Science6262199510.3168/jds.S0022-0302(79)83400-1Search in Google Scholar

Høgh-Jensen, H. and K. Søegaard (2012): Robustness in the mineral supply from temporary grasslands. Acta Agriculturae Scandinavica, Section B—Soil & Plant Science 62, 79–90.Høgh-JensenHSøegaardK2012Robustness in the mineral supply from temporary grasslandsActa Agriculturae Scandinavica, Section B—Soil & Plant Science62627910.1080/09064710.2011.577443Search in Google Scholar

Inal, A., Gunes, A., Zhang, F. and I. Cakmak (2007): Peanut/maize intercropping induced changes in rhizosphere and nutrient concentrations in shoots. Plant Physiology and Biochemistry 45, 350–356.InalAGunesAZhangFCakmakI2007Peanut/maize intercropping induced changes in rhizosphere and nutrient concentrations in shootsPlant Physiology and Biochemistry454535010.1016/j.plaphy.2007.03.016Search in Google Scholar

Jackson, M.L. (1958): Soil Chemical Analysis. Prentice-Hall Inc., Englewood Cliffs, New Jersey.JacksonML1958Soil Chemical AnalysisPrentice-Hall IncEnglewood Cliffs, New JerseySearch in Google Scholar

Kübler, E., Aufhammer, W. and H.-P. Piepho (2008): Mixing effects in cereal-grain legume stands on the composition of the above ground dry matter yield and the grain yield in dependence of the mixing ratio. Die Bodenkultur 59, 85–94.KüblerEAufhammerWPiephoH-P2008Mixing effects in cereal-grain legume stands on the composition of the above ground dry matter yield and the grain yield in dependence of the mixing ratioDie Bodenkultur595985Search in Google Scholar

Li, L., Tang, T., Rengel, Z. and F.S. Zhang (2004): Calcium, magnesium and microelement uptake as affected by phosphorus sources and interspecific root interactions between wheat and chickpea. Plant and Soil 261, 29–37.LiLTangTRengelZZhangFS2004Calcium, magnesium and microelement uptake as affected by phosphorus sources and interspecific root interactions between wheat and chickpeaPlant and Soil2612612910.1023/B:PLSO.0000035579.39823.16Search in Google Scholar

Lošák, T., Hlušek, J., Martinec, J., Jandák, J., Szostkowa, M., Filipčík, R., Maňásek, J., Prokeš, K., Peterka, J., Varga, L., Ducsay, L., Orosz, F. and A. Martensson (2011): Nitrogen fertilization does not affect micronutrient uptake in grain maize (Zea mays L.). Acta Agriculture Scandinavica, Section B—Soil & Plant Science 61, 543–550.LošákTHlušekJMartinecJJandákJSzostkowaMFilipčíkRMaňásekJProkešKPeterkaJVargaLDucsayLOroszFMartenssonA2011Nitrogen fertilization does not affect micronutrient uptake in grain maize (Zea mays L.)Acta Agriculture Scandinavica, Section B—Soil & Plant Science6161543Search in Google Scholar

Marschner, H. (1998): Role of root growth, arbuscular mycorrhiza, and root exudates for the efficiency in nutrient acquisition. Field Crop Research 56, 203–207.MarschnerH1998Role of root growth, arbuscular mycorrhiza, and root exudates for the efficiency in nutrient acquisitionField Crop Research565620310.1016/S0378-4290(97)00131-7Search in Google Scholar

Micek, P., Kulig, B., Woźnica, P. and A. Sajdak (2012): The nutritive value for ruminants of faba bean (Vicia faba) seeds and naked oat (Avena nuda) grain cultivated in an organic farming system. Journal of Animal and Feed Sciences 21, 773–786.MicekPKuligBWoźnicaPSajdakA2012The nutritive value for ruminants of faba bean (Vicia faba) seeds and naked oat (Avena nuda) grain cultivated in an organic farming systemJournal of Animal and Feed Sciences212177310.22358/jafs/66149/2012Search in Google Scholar

McCartney, D.H., Block, H.C., Dubeski, P.L. and A.J. Ohama (2006): Review: The composition and availability of straw and chaff from small grain cereals for beef cattle in western Canada. Canadian Journal of Animal Science 86, 443–455.McCartneyDHBlockHCDubeskiPLOhamaAJ2006Review: The composition and availability of straw and chaff from small grain cereals for beef cattle in western CanadaCanadian Journal of Animal Science868644310.4141/A05-092Search in Google Scholar

Mead, R. and W.R. Wiley (1980): The concept of land equivalent ratio and advantages in yields from intercropping. Experimental Agriculture 16, 217–228.MeadRWileyWR1980The concept of land equivalent ratio and advantages in yields from intercroppingExperimental Agriculture161621710.1017/S0014479700010978Search in Google Scholar

Mehlich, A. (1984): Mehlich 3 soil extractant: A modification of Mehlich 2 extractant. Communications in Soil Science and Plant Analysis 15, 1409–1416.MehlichA1984Mehlich 3 soil extractant: A modification of Mehlich 2 extractantCommunications in Soil Science and Plant Analysis1515140910.1080/00103628409367568Search in Google Scholar

Midmore, D.J. (1993): Agronomic modification of resource use and intercrop productivity. Field Crops Research 34, 357–380.MidmoreDJ1993Agronomic modification of resource use and intercrop productivityField Crops Research343435710.1016/0378-4290(93)90122-4Search in Google Scholar

Mondal, S., Samanta, C.C., Bairagi, B. and P. Biswas (2009): Effects of organic and inorganic forms of supplemental copper, zinc, iron and manganese at different dose levels on growth performance and plasma minerals in crossbred male calves. Animal Nutrition and Feed Technology 9, 45–50.MondalSSamantaCCBairagiBBiswasP2009Effects of organic and inorganic forms of supplemental copper, zinc, iron and manganese at different dose levels on growth performance and plasma minerals in crossbred male calvesAnimal Nutrition and Feed Technology9945Search in Google Scholar

Neugschwandtner, R.W. and H.-P. Kaul (2016): Concentrations and uptake of macronutrients by oat and pea in intercrops in response to N fertilization and sowing ratio. Archives of Agronomy and Soil Science, DOI: 10.1080/03650340.2016.1147648.NeugschwandtnerRWKaulH-P2016Concentrations and uptake of macronutrients by oat and pea in intercrops in response to N fertilization and sowing ratioArchives of Agronomy and Soil Science10.1080/03650340.2016.1147648Open DOISearch in Google Scholar

Neugschwandtner, R.W. and H.-P. Kaul (2015): Nitrogen uptake, use and utilization efficiency by oat-pea intercrops. Field Crops Research 179, 113–119.NeugschwandtnerRWKaulH-P2015Nitrogen uptake, use and utilization efficiency by oat-pea intercropsField Crops Research17917911310.1016/j.fcr.2015.04.018Search in Google Scholar

Neugschwandtner, R.W. and H.-P. Kaul (2014): Sowing ratio and N fertilization affect yield and yield components of oat and pea in intercrops. Field Crops Research 155, 159–163.NeugschwandtnerRWKaulH-P2014Sowing ratio and N fertilization affect yield and yield components of oat and pea in intercropsField Crops Research15515515910.1016/j.fcr.2013.09.010Search in Google Scholar

Neugschwandtner, R.W., Wagentristl, H. and H.-P. Kaul (2015a): Concentrations and uptake of macro and micronutrients by chickpea compared to pea, barley and oat in Central Europe. Journal of Cultivated Plants 67, 404–409.NeugschwandtnerRWWagentristlHKaulH-P2015aConcentrations and uptake of macro and micronutrients by chickpea compared to pea, barley and oat in Central EuropeJournal of Cultivated Plants6767404Search in Google Scholar

Neugschwandtner, R.W., Wagentristl, H. and H.-P. Kaul (2015b): Nitrogen yield and nitrogen use of chickpea compared to pea, barley and oat in Central Europe. International Journal of Plant Production 9, 291–304.NeugschwandtnerRWWagentristlHKaulH-P2015bNitrogen yield and nitrogen use of chickpea compared to pea, barley and oat in Central EuropeInternational Journal of Plant Production99291Search in Google Scholar

Rengel, Z., Batten, G.D. and D.E. Crowley (1999): Agronomic approaches for improving the micronutrient density in edible portions of field crops. Field Crops Research 60, 29–40.RengelZBattenGDCrowleyDE1999Agronomic approaches for improving the micronutrient density in edible portions of field cropsField Crops Research60602910.1016/S0378-4290(98)00131-2Search in Google Scholar

Schmidt, W. (2003): Iron solutions: Acquisition strategies and signaling pathways in plants. Trends in Plant Science 8, 188–193.SchmidtW2003Iron solutions: Acquisition strategies and signaling pathways in plantsTrends in Plant Science8818810.1016/S1360-1385(03)00048-7Search in Google Scholar

Sedlář, O., Balík, J., Černý, J., Peklová, L. and K. Kubešová (2014): Influence of nitrogen injection application on zinc and iron uptake by winter wheat and spring barley. Journal of Central European Agriculture 15, 39–48.SedlářOBalíkJČernýJPeklováLKubešováK2014Influence of nitrogen injection application on zinc and iron uptake by winter wheat and spring barleyJournal of Central European Agriculture15153910.5513/JCEA01/15.1.1408Search in Google Scholar

Shi, R., Zhang, Y., Chen, X., Sun, Q., Zhang, F., Römheld, V. and C. Zou (2010): Influence of long-term nitrogen fertilization on micronutrient density in grain of winter wheat (Triticum aestivum L.). Journal of Cereal Science 51, 165–170.ShiRZhangYChenXSunQZhangFRömheldVZouC2010Influence of long-term nitrogen fertilization on micronutrient density in grain of winter wheat (Triticum aestivum L.)Journal of Cereal Science515116510.1016/j.jcs.2009.11.008Search in Google Scholar

Tanaka, A. and S.A. Navasero (1966): Interaction between iron and manganese in the rice plant. Soil Science and Plant Nutrition 12, 29–33.TanakaANavaseroSA1966Interaction between iron and manganese in the rice plantSoil Science and Plant Nutrition12122910.1080/00380768.1966.10431958Search in Google Scholar

Vandermeer, J.H. (1989): The ecology of intercropping. Cambridge University Press, Cambridge, Great Britain.VandermeerJH1989The ecology of intercroppingCambridge University PressCambridge, Great Britain10.1017/CBO9780511623523Search in Google Scholar

Watson, C.A., Öborn, I., Edwards, A.C., Dahlin, A.S., Eriksson, J., Lindström, B.E.M., Linse, L., Owens, K., Topp, C.F.E. and R.L. Walker (2012): Using soil and plant properties and farm management practices to improve the micronutrient composition of food and feed. Journal of Geochemical Exploration 121, 15–24.WatsonCAÖbornIEdwardsACDahlinASErikssonJLindströmBEMLinseLOwensKToppCFEWalkerRL2012Using soil and plant properties and farm management practices to improve the micronutrient composition of food and feedJournal of Geochemical Exploration1211211510.1016/j.gexplo.2012.06.015Search in Google Scholar

Yamamoto, S., Ito, K., Suzuki, K., Matsushima, Y., Watanabe, I., Watanabe, Y., Abiko, K., Kamada, T. and K. Sato (2014): Kinematic gait analysis and lactation performance in dairy cows fed a diet supplemented with zinc, manganese, copper and cobalt. Animal Science Journal 85, 330–335.YamamotoSItoKSuzukiKMatsushimaYWatanabeIWatanabeYAbikoKKamadaTSatoK2014Kinematic gait analysis and lactation performance in dairy cows fed a diet supplemented with zinc, manganese, copper and cobaltAnimal Science Journal858533010.1111/asj.12141Search in Google Scholar

Zając, T., Oleksy, A., Stokłosa, A., Klimek-Kopyra, A., Styrc, N., Mazurek, R. and W. Budzyński (2014): Pure sowings versus mixtures of winter cereal species as an effective option for fodder-grain production in temperate zone. Field Crops Research 166, 152–161.ZającTOleksyAStokłosaAKlimek-KopyraAStyrcNMazurekRBudzyńskiW2014Pure sowings versus mixtures of winter cereal species as an effective option for fodder-grain production in temperate zoneField Crops Research16616615210.1016/j.fcr.2014.06.019Search in Google Scholar

Zerbini, E. and D. Thomas (2003): Opportunities for improvement of nutritive value in sorghum and pearl millet residues in South Asia through genetic enhancement. Field Crops Research 84, 3–15.ZerbiniEThomasD2003Opportunities for improvement of nutritive value in sorghum and pearl millet residues in South Asia through genetic enhancementField Crops Research8484310.1016/S0378-4290(03)00137-0Search in Google Scholar

Zhang, F., Shen, J., Zhang, J., Zuo, Y., Li, L. and X. Chen (2010): Rhizosphere processes and management for improving nutrient use efficiency and crop productivity: Implications for China. Advances in Agronomy 107, 1–32.ZhangFShenJZhangJZuoYLiLChenX2010Rhizosphere processes and management for improving nutrient use efficiency and crop productivity: Implications for ChinaAdvances in Agronomy107107110.1016/S0065-2113(10)07001-XSearch in Google Scholar

Zuo, Y. and F. Zhang (2008): Effect of peanut mixed cropping with gramineous species on micronutrient concentrations and iron chlorosis of peanut plants grown in a calcareous soil. Plant and Soil 306, 23–36.ZuoYZhangF2008Effect of peanut mixed cropping with gramineous species on micronutrient concentrations and iron chlorosis of peanut plants grown in a calcareous soilPlant and Soil3063062310.1007/s11104-007-9484-1Search in Google Scholar

Zuo, Y. and F. Zhang (2009): Iron and zinc biofortification strategies in dicot plants by intercropping with gramineous species: A review. Agronomy for Sustainable Development 29, 63–71.ZuoYZhangF2009Iron and zinc biofortification strategies in dicot plants by intercropping with gramineous species: A reviewAgronomy for Sustainable Development29296310.1007/978-90-481-2666-8_35Search in Google Scholar

Zuo, Y., Zhang, F., Li, X. and Y. Cao (2000): Studies on the improvement in iron nutrition of peanut by intercropping with maize on a calcareous soil. Plant and Soil 220, 13–25.ZuoYZhangFLiXCaoY2000Studies on the improvement in iron nutrition of peanut by intercropping with maize on a calcareous soilPlant and Soil2202201310.1023/A:1004724219988Search in Google Scholar

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