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Original Articles

Carbon dioxide enrichment decreases critical nitrate and nitrogen concentrations in wheat

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Pages 571-584 | Published online: 21 Nov 2008

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Emmanuel Chakwizira, Mitchell Andrews, Edmar Teixeira & Derrick J. Moot. (2023) Quantifying biomass and whole crop macro-nutrient accumulation for six hard spring wheat genotypes grown under different nitrogen rates at ambient and elevated carbon-dioxide levels. Journal of Plant Nutrition 46:11, pages 2595-2607.
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A.K. Srivastava, Qiang-Sheng Wu, Seyed Majid Mousavi & Debashish Hota. (2021) Integrated Soil Fertility Management in Fruit Crops: An Overview. International Journal of Fruit Science 21:1, pages 413-439.
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Articles from other publishers (60)

Nkulu Rolly Kabange, Bong-Gyu Mun, So-Myeong Lee, Youngho Kwon, Dasol Lee, Geun-Mo Lee, Byung-Wook Yun & Jong-Hee Lee. (2022) Nitric oxide: A core signaling molecule under elevated GHGs (CO2, CH4, N2O, O3)-mediated abiotic stress in plants. Frontiers in Plant Science 13.
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Lekshmy Sathee, Sandeep B. Adavi, Birendra K. Padhan, A. Sinto, Anjali Anand, Ngursangzuala Sailo, Vanita Jain & Shailendra K. Jha. 2022. Climate Change and Crop Stress. Climate Change and Crop Stress 71 94 .
Rupali Sharma & Hukum Singh. (2021) Alteration in biochemical constituents and nutrients partitioning of Asparagus racemosus in response to elevated atmospheric CO2 concentration. Environmental Science and Pollution Research 29:5, pages 6812-6821.
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Sandeep B. Adavi & Lekshmy Sathee. (2021) Elevated CO2 differentially regulates root nitrate transporter kinetics in a genotype and nitrate dose-dependent manner. Plant Science 305, pages 110807.
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Sandeep B. Adavi & Lekshmy Sathee. (2020) Elevated CO2 alters tissue balance of nitrogen metabolism and downregulates nitrogen assimilation and signalling gene expression in wheat seedlings receiving high nitrate supply. Protoplasma 258:1, pages 219-233.
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A.K. Srivastava. 2020. Fruit Crops. Fruit Crops 521 540 .
Damilola Grace Ogunrotimi & Joshua Kayode. 2020. Handbook of Climate Change Resilience. Handbook of Climate Change Resilience 785 796 .
Rishikesh Pandey. (2017) Farmers’ perception on agro-ecological implications of climate change in the Middle-Mountains of Nepal: a case of Lumle Village, Kaski. Environment, Development and Sustainability 21:1, pages 221-247.
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Lekshmy Sathee, Sandeep B. Adavi, Vanita Jain, Renu Pandey, Sangeeta Khetarpal, Hari Singh Meena & Arun Kumar. (2018) Influence of Elevated CO2 on kinetics and expression of high affinity nitrate transport systems in wheat. Indian Journal of Plant Physiology 23:1, pages 111-117.
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Damilola Grace Ogunrotimi & Joshua Kayode. 2018. Handbook of Climate Change Resilience. Handbook of Climate Change Resilience 1 12 .
Sonali Mehrotra, Ashish Praveen, K. P. Tripathi & Nandita Singh. (2017) Interaction between CO2 elevation and nitrogen metabolism in two varieties of Guar (Cyamopsis tetragonoloba) plants. Russian Agricultural Sciences 43:3, pages 225-233.
Crossref
Eline Vanuytrecht & Peter J. Thorburn. (2017) Responses to atmospheric CO 2 concentrations in crop simulation models: a review of current simple and semicomplex representations and options for model development . Global Change Biology 23:5, pages 1806-1820.
Crossref
José S. Rubio-Asensio & Arnold J. Bloom. (2016) Inorganic nitrogen form: a major player in wheat and Arabidopsis responses to elevated CO 2 . Journal of Experimental Botany, pages erw465.
Crossref
Mohamed Abdalla, Mark Richards, Mark Pogson, Jo U. Smith & Pete Smith. (2016) Estimating the effect of nitrogen fertilizer on the greenhouse gas balance of soils in Wales under current and future climate. Regional Environmental Change 16:8, pages 2357-2368.
Crossref
Sparkle L. Malone, Cynthia Keough, Christina L. Staudhammer, Michael G. Ryan, William J. Parton, Paulo Olivas, Steven F. Oberbauer, Jessica Schedlbauer & Gregory Starr. (2015) Ecosystem resistance in the face of climate change: a case study from the freshwater marshes of the Florida Everglades. Ecosphere 6:4, pages 1-23.
Crossref
M. Madhu & Jerry L. Hatfield. (2015) Elevated Carbon Dioxide and Soil Moisture on Early Growth Response of Soybean. Agricultural Sciences 06:02, pages 263-278.
Crossref
Madegowda Madhu & Jerry L. Hatfield. (2014) Interaction of Carbon Dioxide Enrichment and Soil Moisture on Photosynthesis, Transpiration, and Water Use Efficiency of Soybean. Agricultural Sciences 05:05, pages 410-429.
Crossref
Sabine Tausz-Posch, Roger Armstrong & Michael Tausz. 2014. Nutrient Use Efficiency in Plants. Nutrient Use Efficiency in Plants 229 252 .
Jorge Álvaro-Fuentes, Mark Easter & Keith Paustian. (2012) Climate change effects on organic carbon storage in agricultural soils of northeastern Spain. Agriculture, Ecosystems & Environment 155, pages 87-94.
Crossref
S. Seneweera & R. M. Norton. 2011. Crop Adaptation to Climate Change. Crop Adaptation to Climate Change 198 217 .
M. Abdalla, M. Jones, J. Yeluripati, P. Smith, J. Burke & M. Williams. (2010) Testing DayCent and DNDC model simulations of N2O fluxes and assessing the impacts of climate change on the gas flux and biomass production from a humid pasture. Atmospheric Environment 44:25, pages 2961-2970.
Crossref
Dinesh Chandra Uprety, Sangita Sen & Neeta Dwivedi. (2010) Rising atmospheric carbon dioxide on grain quality in crop plants. Physiology and Molecular Biology of Plants 16:3, pages 215-227.
Crossref
P. K. Aggarwal & Mannava V. K. Sivakumar. 2011. Climate Change and Food Security in South Asia. Climate Change and Food Security in South Asia 253 275 .
P. K. Aggarwal & A. K. Singh. 2010. Global Change: Impacts on Water and food Security. Global Change: Impacts on Water and food Security 49 63 .
Altaf Ahmad, Hema Diwan & Yash P. Abrol. 2010. Abiotic Stress Adaptation in Plants. Abiotic Stress Adaptation in Plants 503 521 .
Petra Högy & Andreas Fangmeier. (2008) Effects of elevated atmospheric CO2 on grain quality of wheat. Journal of Cereal Science 48:3, pages 580-591.
Crossref
Chunwu Zhu, Qing Zeng, Lewis H. Ziska, Jianguo Zhu, Zubing Xie & Gang Liu. (2008) Effect of Nitrogen Supply on Carbon Dioxide–Induced Changes in Competition between Rice and Barnyardgrass (Echinochloa crus-galli). Weed Science 56:1, pages 66-71.
Crossref
TROELS ANDERSEN, OLE PEDERSEN & FREDE O. ANDERSEN. (2005) Nutrient concentrations in a Littorella uniflora community at higher CO2 concentrations and reduced light intensities. Freshwater Biology 50:7, pages 1178-1189.
Crossref
Madan Pal, V. Karthikeyapandian, Vanita Jain, A.C. Srivastava, Anupam Raj & U.K. Sengupta. (2004) Biomass production and nutritional levels of berseem (Trifolium alexandrium) grown under elevated CO2. Agriculture, Ecosystems & Environment 101:1, pages 31-38.
Crossref
George Bowes. 2004. Photosynthesis and the Environment. Photosynthesis and the Environment 387 407 .
Lewis H. Ziska. (2003) The impact of nitrogen supply on the potential response of a noxious, invasive weed, Canada thistle ( Cirsium arvense ) to recent increases in atmospheric carbon dioxide . Physiologia Plantarum 119:1, pages 105-112.
Crossref
P. Matt, M. Geiger, P. Walch-Liu, C. Engels, A. Krapp & M. Stitt. (2001) Elevated carbon dioxide increases nitrate uptake and nitrate reductase activity when tobacco is growing on nitrate, but increases ammonium uptake and inhibits nitrate reductase activity when tobacco is growing on ammonium nitrate. Plant, Cell & Environment 24:11, pages 1119-1137.
Crossref
Sherwood B. Idso & Keith E. Idso. (2001) Effects of atmospheric CO2 enrichment on plant constituents related to animal and human health. Environmental and Experimental Botany 45:2, pages 179-199.
Crossref
M. Geiger, V. Haake, F. Ludewig, U. Sonnewald & M. Stitt. (2002) The nitrate and ammonium nitrate supply have a major influence on the response of photosynthesis, carbon metabolism, nitrogen metabolism and growth to elevated carbon dioxide in tobacco. Plant, Cell & Environment 22:10, pages 1177-1199.
Crossref
M. STITT & A. KRAPP. (2002) The interaction between elevated carbon dioxide and nitrogen nutrition: the physiological and molecular background. Plant, Cell & Environment 22:6, pages 583-621.
Crossref
M Vivekanandan, R Suresh Babu & V Saralabai. 1999. Handbook of Plant and Crop Stress, Second Edition. Handbook of Plant and Crop Stress, Second Edition 1137 1161 .
S. Grossman-Clarke, B.A. Kimball, D.J. Hunsaker, S.P. Long, R.L. Garcia, Th. Kartschall, G.W. Wall, P.J. PrinterJr.Jr., F. Wechsung & R.L. LaMorte. (1999) Effects of elevated atmospheric CO2 on canopy transpiration in senescent spring wheat. Agricultural and Forest Meteorology 93:2, pages 95-109.
Crossref
P.J. Reyenga, S.M. Howden, H. Meinke & G.M. McKeon. (1999) Modelling global change impacts on wheat cropping in south-east Queensland, Australia. Environmental Modelling & Software 14:4, pages 297-306.
Crossref
Hugo H. Rogers, G. Brett Runion, Stephen A. Prior & H. Allen Torbert. 1999. Carbon Dioxide and Environmental Stress. Carbon Dioxide and Environmental Stress 215 244 .
Tom Vindbæk Madsen, Peter Hahn & Jane Johansen. (1998) Effects of inorganic carbon supply on the nitrogen requirement of two submerged macrophytes, Elodea canadensis and Callitriche cophocarpa. Aquatic Botany 62:2, pages 95-106.
Crossref
TOLENTINO B. MOYALEWIS H. ZISKAOFELIA S. NAMUCODAVE. OLSZYK. (2004) Growth dynamics and genotypic variation in tropical, field‐grown paddy rice (Oryza sativa L.) in response to increasing carbon dioxide and temperature. Global Change Biology 4:6, pages 645-656.
Crossref
Changhui Peng & Michael J. Apps. (1998) simulating carbon dynamics along the Boreal Forest Transect Case Study (BFTCS) in central Canada: 2. Sensitivity to climate change. Global Biogeochemical Cycles 12:2, pages 393-402.
Crossref
M. Geiger, P. Walch‐Liu, C. Engels, J. Harnecker, E.‐D. Schulze, F. Ludewig, U. Sonnewald, W.‐R. Scheible & M. Stitt. (2002) Enhanced carbon dioxide leads to a modified diurnal rhythm of nitrate reductase activity in older plants, and a large stimulation of nitrate reductase activity and higher levels of amino acids in young tobacco plants. Plant, Cell & Environment 21:3, pages 253-268.
Crossref
M. Francesca CotrufoPhil Ineson & AndY. Scott. (2002) Elevated CO 2 reduces the nitrogen concentration of plant tissues . Global Change Biology 4:1, pages 43-54.
Crossref
Michael B. Coughenour & De-Xing Chen. (1997) ASSESSMENT OF GRASSLAND ECOSYSTEM RESPONSES TO ATMOSPHERIC CHANGE USING LINKED PLANT–SOIL PROCESS MODELS. Ecological Applications 7:3, pages 802-827.
Crossref
Bert G. Drake, Miquel A. Gonzàlez-Meler & Steve P. Long. (1997) MORE EFFICIENT PLANTS: A Consequence of Rising Atmospheric CO 2 ? . Annual Review of Plant Physiology and Plant Molecular Biology 48:1, pages 609-639.
Crossref
Leanne M. Jablonski. (1997) Responses of vegetative and reproductive traits to elevated CO 2 and nitrogen in Raphanus varieties . Canadian Journal of Botany 75:4, pages 533-545.
Crossref
Tsutomu Matsui, Ofelia S. Namuco, Lewis H. Ziska & Takeshi Horie. (1997) Effects of high temperature and CO2 concentration on spikelet sterility in indica rice. Field Crops Research 51:3, pages 213-219.
Crossref
Jabulani M. Mjwara, C. Edward J. Botha & Sarah E. Radloff. (2006) Photosynthesis, growth and nutrient changes in non‐nodulated Phaseolus vulgaris grown under atmospheric and elevated carbon dioxide conditions . Physiologia Plantarum 97:4, pages 754-763.
Crossref
R. Manderscheid, J. Bender, H.-J. Jäger & H.J. Weigel. (1995) Effects of season long CO2 enrichment on cereals. II. Nutrient concentrations and grain quality. Agriculture, Ecosystems & Environment 54:3, pages 175-185.
Crossref
J. M. Mjwara & C. E. J. Botha. 1995. Photosynthesis: from Light to Biosphere. Photosynthesis: from Light to Biosphere 4865 4868 .
Y. LUO, C. B. FIELD & H. A. MOONEY. (2006) Predicting responses of photosynthesis and root fraction to elevated [CO 2 ] a : interactions among carbon, nitrogen, and growth* . Plant, Cell & Environment 17:11, pages 1195-1204.
Crossref
G. Huluka, D.R. Hileman, P.K. Biswas, K.F. Lewin, J. Nagy & G.R. Hendrey. (1994) Effects of elevated CO2 and water stress on mineral concentration of cotton. Agricultural and Forest Meteorology 70:1-4, pages 141-152.
Crossref
Jann Conroy & Peter Hocking. (2006) Nitrogen nutrition of C 3 plants at elevated atmospheric CO 2 concentrations . Physiologia Plantarum 89:3, pages 570-576.
Crossref
G. S. Rogers, L. Payne, P. Milham & J. Conroy. (1993) Nitrogen and phosphorus requirements of cotton and wheat under changing atmospheric CO2 concentrations. Plant and Soil 155-156:1, pages 231-234.
Crossref
David T. Clarkson & Malcolm J. Hawkesford. (1993) Molecular biological approaches to plant nutrition. Plant and Soil 155-156:1, pages 21-31.
Crossref
G. S. Rogers, L. Payne, P. Milham & J. Conroy. 1993. Plant Nutrition — from Genetic Engineering to Field Practice. Plant Nutrition — from Genetic Engineering to Field Practice 257 260 .
David T. Clarkson & Malcolm J. Hawkesford. 1993. Plant Nutrition — from Genetic Engineering to Field Practice. Plant Nutrition — from Genetic Engineering to Field Practice 23 33 .
Roger M. Gifford. 1993. The Global Carbon Cycle. The Global Carbon Cycle 159 199 .
J. P. CONROY, P. J. MILHAM & E. W. R. BARLOW. (1992) Effect of nitrogen and phosphorus availability on the growth response of Eucalyptus grandis to high CO2. Plant, Cell and Environment 15:7, pages 843-847.
Crossref

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