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Potential precision of the δ15N natural abundance method in field estimates of nitrogen fixation by crop and pasture legumes in south-west Australia

MJ Unkovich, JS Pate, P Sanford and EL Armstrong
45(1) pp.119 - 132


133 articles found in Crossref database.

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Li Qiang, Song Yantao, Li Guangdi, Yu Pujia, Wang Ping, Zhou Daowei
Plant and Soil. 2015 394(1-2). p.271
Direct benefits of rhizobial inoculation toAcacia mearnsiiDe Wild, as tubed stock and in a plantation, and synergistic benefits to interplantedEucalyptus nitens(Deane & Maiden) Maiden
Brockwell John, Mitchell Peter A., Searle Suzette D., Leach M. A., Crews Tim E.
Australian Forestry. 2011 74(2). p.120
Nutritive value and the nitrogen dynamics of Trifolium subterraneum and Phalaris aquatica under warmer, high CO2 conditions
Lilley J. M., Bolger T. P., Peoples M. B., Gifford R. M.
New Phytologist. 2001 150(2). p.385
Grain legume–cereal intercropping: The practical application of diversity, competition and facilitation in arable and organic cropping systems
Hauggaard-Nielsen Henrik, Jørnsgaard Bjarne, Kinane Julia, Jensen Erik Steen
Renewable Agriculture and Food Systems. 2008 23(1). p.3
Photosynthesis, symbiotic N and C accumulation in leaves of 30 nodulated cowpea genotypes grown in the field at Wa in the Guinea savanna of Ghana
Belane Alphonsus K., Dakora Felix D.
Field Crops Research. 2011 124(3). p.279
Response of subterranean clover, balansa clover, and gland clover to lime when grown in mixtures on an acid soil
Hayes R. C., Dear B. S., Orchard B. A., Peoples M. B., Eberbach P. L.
Australian Journal of Agricultural Research. 2008 59(9). p.824
Nitrogen economy of annual crop and pasture legumes in southwest Australia
Unkovich M.J., Pate J.S., Armstrong E.L., Sanford P.
Soil Biology and Biochemistry. 1995 27(4-5). p.585
Nitrogen addition results inMedicago sativaswitching nitrogen sources
Wang Yinliu, Hasi Muqier, Bu Dongdong, Li Ang, Xue Jianguo, Wang Changhui, Tian Qiuying, Niu Guoxiang, Geng Qianqian, Wang Lixin, Huang Jianhui
Plant Ecology & Diversity. 2021 14(3-4). p.183
Advances in Ecological Research Volume 27 (1997)
Handley L.L., Scrimgeour C.M.
Cold stress reduces nodulation and symbiotic nitrogen fixation in winter annual legume cover crops
Thurston Charlotte L., Grossman Julie M., Fudge Rebecca, Maul Jude E., Mirsky S., Wiering Nick
Plant and Soil. 2022 481(1-2). p.661
Using δ15N to screen for nitrogen fixation: Reference plant position and species
Cox Amanda, Boots‐Haupt Laura, Brasier Kyle, Riar Ranjit, Zakeri Hossein
Agronomy Journal. 2022 114(3). p.1842
Isotopic fractionation during N2 fixation by chickpea
Kyei-Boahen S, Slinkard A.E, Walley F.L
Soil Biology and Biochemistry. 2002 34(3). p.417
Grass-clover undersowing affects nitrogen dynamics in a grain legume–cereal arable cropping system
Hauggaard-Nielsen Henrik, Mundus Simon, Jensen Erik Steen
Field Crops Research. 2012 136 p.23
An evolutionary perspective on increasing net benefits to crops from symbiotic microbes
Denison R. Ford, Muller Katherine E.
Evolutionary Applications. 2022 15(10). p.1490
Effects of surface application of lime and superphosphate to acid soils on growth and N2 fixation by subterranean clover in mixed pasture swards
Peoples M.B., Lilley D.M., Burnett V.F., Ridley A.M., Garden D.L.
Soil Biology and Biochemistry. 1995 27(4-5). p.663
Pea–barley intercropping for efficient symbiotic N2-fixation, soil N acquisition and use of other nutrients in European organic cropping systems
Hauggaard-Nielsen H., Gooding M., Ambus P., Corre-Hellou G., Crozat Y., Dahlmann C., Dibet A., von Fragstein P., Pristeri A., Monti M., Jensen E.S.
Field Crops Research. 2009 113(1). p.64
Breeding for enhanced nitrogen fixation in crop legumes
Herridge David, Rose Ian
Field Crops Research. 2000 65(2-3). p.229
Spatial variation of N2-fixation in field pea (Pisum sativum L.) at the field scale determined by the 15N natural abundance method
Hauggaard-Nielsen H., Holdensen L., Wulfsohn D., Jensen E. S.
Plant and Soil. 2010 327(1-2). p.167
Urochloa Grasses Swap Nitrogen Source When Grown in Association with Legumes in Tropical Pastures
Villegas Daniel M., Velasquez Jaime, Arango Jacobo, Obregon Karen, Rao Idupulapati M., Rosas Gelber, Oberson Astrid
Diversity. 2020 12(11). p.419
Enhanced foliar 15N enrichment with increasing nitrogen addition rates: Role of plant species and nitrogen compounds
Wang Yinliu, Niu Guoxiang, Wang Ruzhen, Rousk Kathrin, Li Ang, Hasi Muqier, Wang Changhui, Xue Jianguo, Yang Guojiao, Lü Xiaotao, Jiang Yong, Han Xingguo, Huang Jianhui
Global Change Biology. 2023 29(6). p.1591
15N natural abundance of biologically fixed N2 in soybean is controlled more by the Bradyrhizobium strain than by the variety of the host plant
Pauferro Natalie, Guimarães Ana Paula, Jantalia Claudia P., Urquiaga Segundo, Alves Bruno J.R., Boddey Robert M.
Soil Biology and Biochemistry. 2010 42(10). p.1694
Field measurement of lupin belowground nitrogen accumulation and recovery in the subsequent cereal-soil system in a semi-arid Mediterranean-type climate
McNeill A. M., Fillery I. R. P.
Plant and Soil. 2008 302(1-2). p.297
Fate of legume-derived nitrogen in monocultures and mixtures with cereals
Urbatzka Peer, Graß Rüdiger, Haase Thorsten, Schüler Christian, Heß Jürgen
Agriculture, Ecosystems & Environment. 2009 132(1-2). p.116
Symbiotic N2 fixation and nitrate utilisation in irrigated lucerne (Medicago sativa) systems
Yang Huimin, Unkovich Murray, McNeill Ann, Wang Xianzhi
Biology and Fertility of Soils. 2011 47(4). p.377
Symbiotic performance, shoot biomass and water-use efficiency of three groundnut (Arachis hypogaea L.) genotypes in response to phosphorus supply under field conditions in Ethiopia
MUHABA Sofiya K., DAKORA Felix D.
Frontiers of Agricultural Science and Engineering. 2020 7(4). p.455
Nitrogen balances in farmers fields under alternative uses of a cover crop legume: a case study from Nicaragua
Douxchamps Sabine, Humbert François-Lionel, van der Hoek Rein, Mena Martin, Bernasconi Stefano M., Schmidt Axel, Rao Idupulapati, Frossard Emmanuel, Oberson Astrid
Nutrient Cycling in Agroecosystems. 2010 88(3). p.447
N2 fixation, carbon accumulation, and plant water relations in soybean (Glycine max L. Merrill) varieties sampled from farmers’ fields in South Africa, measured using 15N and 13C natural abundance
Mapope Nyamande, Dakora Felix D.
Agriculture, Ecosystems & Environment. 2016 221 p.174
Annual Pasture Legumes: A Vital Component Stabilizing and Rehabilitating Low-Rainfall Mediterranean Ecosystems
Ewing M. A.
Arid Soil Research and Rehabilitation. 1999 13(4). p.327
B value and isotopic fractionation in N2 fixation by chickpea (Cicer arietinum L.) and faba bean (Vicia faba L.)
López-Bellido Francisco J., López-Bellido Rafael J., Redondo Ramón, López-Bellido Luis
Plant and Soil. 2010 337(1-2). p.425
Nitrogen contributions from faba bean (Vicia faba L.) reliant on soil rhizobia or inoculation
Denton Matthew D., Pearce David J., Peoples Mark B.
Plant and Soil. 2013 365(1-2). p.363
Are we there yet? The long walk towards the development of efficient symbiotic associations between nitrogen-fixing bacteria and non-leguminous crops
Pankievicz Vânia C. S., Irving Thomas B., Maia Lucas G. S., Ané Jean-Michel
BMC Biology. 2019 17(1).
De-inking Sludge and Phosphorus Effects on Growth and Symbiotic Dinitrogen Fixation in Forage Legumes
Allahdadi Iraj, Beauchamp Chantal J., Califour Francois P., Khalaj Hamideh, Labafi. H M.R.
Pakistan Journal of Biological Sciences. 2007 10(14). p.2379
Intercropping of Wheat and Pea as Influenced by Nitrogen Fertilization
Ghaley Bhim B., Hauggaard-Nielsen H., Høgh-Jensen H., Jensen E. S.
Nutrient Cycling in Agroecosystems. 2005 73(2-3). p.201
Stable Isotope Techniques in the Study of Biological Processes and Functioning of Ecosystems (2001)
Unkovich Murray, Pate John S.
Effect of legume plant density and mixed culture on symbiotic N2 fixation in five cowpea (Vigna unguiculata L. Walp.) genotypes in South Africa
Makoi Joachim H. J. R., Chimphango Samson B. M., Dakora Felix D.
Symbiosis. 2009 48(1-3). p.57
Quantifying biological nitrogen fixation of agroforestry shrub species using 15N dilution techniques under greenhouse conditions
Issah G., Kimaro A. A., Kort J., Knight J. D.
Agroforestry Systems. 2014 88(4). p.607
Post-Tin-Mining Agricultural Soil Regeneration Using Local Organic Amendments Improve Nitrogen Fixation and Uptake in a Legume–Cassava Intercropping System
Maftukhah Rizki, Keiblinger Katharina M., Ngadisih Ngadisih, Murtiningrum Murtiningrum, Kral Rosana M., Mentler Axel, Hood-Nowotny Rebecca
Land. 2023 12(5). p.1107
Short-range spatial variability of soil δ15N natural abundance – effects on symbiotic N2-fixation estimates in pea
Holdensen L., Hauggaard-Nielsen H., Jensen E. S.
Plant and Soil. 2007 298(1-2). p.265
Improved estimation of biological nitrogen fixation of soybean cultivars (Glycine max L. Merril) using 15N natural abundance technique
Houngnandan P., Yemadje R. G. H., Oikeh S. O., Djidohokpin C. F., Boeckx P., Van Cleemput O.
Biology and Fertility of Soils. 2008 45(2). p.175
Nitrogen and sulfur uptake and remobilisation in canola genotypes with varied N- and S-use efficiency differ at vegetative and maturity stages
Balint Tatjana, Rengel Zdenko
Crop and Pasture Science. 2011 62(4). p.299
Pinto peanut cover crop nitrogen contributions and potential to mitigate nitrous oxide emissions in subtropical coffee plantations
Rose Terry J., Kearney Lee J., Morris Stephen, Van Zwieten Lukas, Erler Dirk V.
Science of The Total Environment. 2019 656 p.108
Lower nodule biomass with increased nitrogenase efficiency in Robinia pseudoacacia seedlings when grown under low soil phosphorus conditions
McCulloch Lindsay A., Porder Stephen
SN Applied Sciences. 2020 2(11).
Estimates of seasonal nitrogen fixation of annual subterranean clover-based pastures using the15N natural abundance technique
Bolger T. P., Pate J. S., Unkovich M. J., Turner N. C.
Plant and Soil. 1995 175(1). p.57
New ley legumes increase nitrogen fixation and availability and grain crop yields in subtropical cropping systems
Bell Lindsay W., Lawrence John, Johnson Brian, Peoples Mark B.
Crop and Pasture Science. 2017 68(1). p.11
Symbiotic N2 fixation by soybean in organic and conventional cropping systems estimated by 15N dilution and 15N natural abundance
Oberson A., Nanzer S., Bosshard C., Dubois D., Mäder P., Frossard E.
Plant and Soil. 2007 290(1-2). p.69
Management of Biological Nitrogen Fixation for the Development of More Productive and Sustainable Agricultural Systems (1995)
Herridge D. F., Danso S. K. A.
Nitrogen Fixation in Crop Production (2015)
Peoples Mark B., Unkovich Murray J., Herridge David F.
Measurement of N2 fixation in 30 cowpea (Vigna unguiculata L. Walp.) genotypes under field conditions in Ghana, using the15N natural abundance technique
Belane Alphonsus K., Dakora Felix D.
Symbiosis. 2009 48(1-3). p.47
Biological nitrogen fixation estimated by dilution, natural abundance, and N difference techniques in a subterranean clover–grass sward under Mediterranean conditions
Carranca C., de Varennes A., Rolston D.E.
European Journal of Agronomy. 1999 10(2). p.81
Symbiotic N nutrition, carbon accumulation, and water-use efficiency in species of the genus Aspalathus native to the Cape fynbos, South Africa
Pampa Joshua M., Cupido Christopher N., Dakora Felix D.
South African Journal of Botany. 2023 163 p.736
Grain yield and contribution of symbiotically fixed nitrogen to seed in cowpea varieties using the15N natural abundance technique
Ayisi K. K.
South African Journal of Plant and Soil. 2000 17(4). p.151
N2 fixation by organically grown soybean in Central Europe: Method of quantification and agronomic effects
Schweiger P., Hofer M., Hartl W., Wanek W., Vollmann J.
European Journal of Agronomy. 2012 41 p.11
Lentil nitrogen fixation response to fertilizer and inoculant in the northern Great Plains
Baber Kaleb, Jones Clain, Miller Perry, Lamb Peggy, Atencio Sydney
Agronomy Journal. 2023 115(5). p.2614
Drying the surface soil reduces the nitrogen content of faba bean (Vicia faba L.) through a reduction in nitrogen fixation
Abdelhamid Magdi T., Palta Jairo A., Veneklaas Erik J., Atkins Craig, Turner Neil C., Siddique Kadambot H. M.
Plant and Soil. 2011 339(1-2). p.351
Do techniques based on 15N enrichment and 15N natural abundance give consistent estimates of the symbiotic dependence of N2-fixing plants?
Chalk Phillip M., Inácio Caio T., Balieiro Fabiano C., Rouws Janaina R. C.
Plant and Soil. 2016 399(1-2). p.415
Symbiotic performance of selectedCyclopia Vent. (honeybush) rhizobia under nursery and field conditions
Spriggs Amy C., Dakora Felix D.
Symbiosis. 2009 48(1-3). p.143
Positive nitrogen balance of Acacia mangium woodlots as fallows in the Philippines based on 15N natural abundance data of N2 fixation
Mercado Augustin R., Van Noordwijk Meine, Cadisch Georg
Agroforestry Systems. 2011 81(3). p.221
Interseeded alfalfa N2 fixation and transfer to maize are reduced by N fertilizer
Osterholz William, Ruark Matt, Renz Mark, Grabber John
Nutrient Cycling in Agroecosystems. 2023 126(1). p.67
Nitrogen-15 natural abundance is robust to quantify nitrogen transfer from clover to grass in temporary grassland
Hammelehle Andreas, Mayer Jochen, Lüscher Andreas, Oberson Astrid
Soil Biology and Biochemistry. 2024 192 p.109290
Biological nitrogen fixation maintains carbon/nitrogen balance and photosynthesis at elevated CO2
Brooks Matthew D., Szeto Ronnia C.
Plant, Cell & Environment. 2024
Hydrogen emission from nodulated soybeans [Glycine max (L.) Merr.] and consequences for the productivity of a subsequent maize (Zea mays L.) crop
Peoples Mark B., McLennan Paul D., Brockwell John
Plant and Soil. 2008 307(1-2). p.67
Estimation of phenotypic variability in symbiotic nitrogen fixation ability of common bean under drought stress using 15N natural abundance in grain
Polania Jose, Poschenrieder Charlotte, Rao Idupulapati, Beebe Stephen
European Journal of Agronomy. 2016 79 p.66
Direct and indirect trophic interactions of soil nematodes impact chickpea and oat nutrition
Gilarte P., Plett J., Pendall E., Carrillo Y., Nielsen U. N.
Plant and Soil. 2020 457(1-2). p.255
Water availability moderates N2 fixation benefit from elevated [CO2]: A 2‐year free‐air CO2 enrichment study on lentil (Lens culinaris MEDIK.) in a water limited agroecosystem
Parvin Shahnaj, Uddin Shihab, Bourgault Maryse, Roessner Ute, Tausz‐Posch Sabine, Armstrong Roger, O'Leary Garry, Fitzgerald Glenn, Tausz Michael
Plant, Cell & Environment. 2018 41(10). p.2418
Elevated CO2 improves yield and N2 fixation but not grain N concentration of faba bean (Vicia faba L.) subjected to terminal drought
Parvin Shahnaj, Uddin Shihab, Tausz-Posch Sabine, Fitzgerald Glenn, Armstrong Roger, Tausz Michael
Environmental and Experimental Botany. 2019 165 p.161
Quantification of nitrogen inputs from biological nitrogen fixation to whole farm nitrogen budgets of two dairy farms in Atlantic Canada
Nimmo J., Lynch D. H., Owen J.
Nutrient Cycling in Agroecosystems. 2013 96(1). p.93
Nitrogen Nutrition Optimization in Organic Greenhouse Tomato Through the Use of Legume Plants as Green Manure or Intercrops
Gatsios , Ntatsi , Celi , Said-Pullicino , Tampakaki , Giannakou , Savvas
Agronomy. 2019 9(11). p.766
Assessing and modeling the role of the native legume Lupinus meridanus in fertility restoration in a heterogeneous mountain environment of the tropical Andes
Sarmiento Lina, Abadín Josefa, González-Prieto Serafín, Carballas Tarsy
Agriculture, Ecosystems & Environment. 2012 159 p.29
Applicability of the natural15N abundance technique to measure N2fixation inArachis hypogaeagrown on an Ultisol
Cadisch G., Hairiah K., Giller K.E.
NJAS: Wageningen Journal of Life Sciences. 2000 48(1). p.31
Biochar-based Bradyrhizobium inoculum improves growth of lupin (Lupinus angustifolius L.) under drought stress
Egamberdieva Dilfuza, Reckling Moritz, Wirth Stephan
European Journal of Soil Biology. 2017 78 p.38
Nitrogen fixation in annual Trifolium species in alkaline soils as assessed by the 15N natural abundance method
Denton Matthew D., Coventry David R., Bellotti William D., Howieson John G.
Crop and Pasture Science. 2011 62(8). p.712
An overview of the role and significance of 15N methodologies in quantifying biological N2 fixation (BNF) and BNF dynamics in agro-ecosystems
Chalk Phillip M., Craswell Eric T.
Symbiosis. 2018 75(1). p.1
Measurement of biological dinitrogen fixation in grassland: Comparison of the enriched 15N dilution and the natural 15N abundance methods at different nitrogen application rates and defoliation frequencies
H�gh-Jensen H., Schjoerring J. K.
Plant and Soil. 1994 166(2). p.153
Foliar ẟ15N patterns in legumes and non-N fixers across a climate gradient, Hawaiʻi Island, USA
Burnett Michael W., Bobbett Ariel E., Brendel Corinna E., Marshall Kehaulani, von Sperber Christian, Paulus Elizabeth L., Vitousek Peter M.
Oecologia. 2022 198(1). p.229
Nitrogen fixation by pea and lentil green manures in a semi-arid agroecoregion: effect of planting and termination timing
McCauley Ann M., Jones Clain A., Miller Perry R., Burgess Macdonald H., Zabinski Catherine A.
Nutrient Cycling in Agroecosystems. 2012 92(3). p.305
Quantitative evidence of overestimated rhizodeposition using 15N leaf-labelling
Gasser Michael, Hammelehle Andreas, Oberson Astrid, Frossard Emmanuel, Mayer Jochen
Soil Biology and Biochemistry. 2015 85 p.10
Growing vetches (Vicia villosa Roth) in irrigated cotton systems: inputs of fixed N, N fertiliser savings and cotton productivity
Rochester Ian, Peoples Mark
Plant and Soil. 2005 271(1-2). p.251
Nitrogen fixation among pea and lentil varieties in the Northern Great Plains
Baber Kaleb, Jones Clain, McPhee Kevin, Miller Perry R., Lamb Peggy
Agronomy Journal. 2023 115(5). p.2325
Phenotypic evaluation and QTL analysis of yield and symbiotic nitrogen fixation in a common bean population grown with two levels of phosphorus supply
Diaz Lucy M., Ricaurte Jaumer, Cajiao Cesar, Galeano Carlos H., Rao Idupulapati, Beebe Steve, Raatz Bodo
Molecular Breeding. 2017 37(6).
Nitrogen mineralisation and plant nitrogen acquisition in a nitrogen-limited calcareous grassland
Unkovich Murray, Jamieson Nicola, Monaghan Ross, Barraclough Declan
Environmental and Experimental Botany. 1998 40(3). p.209
Selecting elite groundnut (Arachis hypogaea L) genotypes for symbiotic N nutrition, water-use efficiency and pod yield at three field sites, using 15N and 13C natural abundance
Oteng-Frimpong Richard, Dakora Felix D.
Symbiosis. 2018 75(3). p.229
Stable Isotope Markers Differentiate between Mass-Reared and Wild Lepidoptera in Sterile Insect Technique Programs
Hood-Nowotny Rebecca, Harari Ally, Seth Rakesh K., Wee Suk Ling, Conlong Des E., Suckling David M., Woods Bill, Lebdi-Grissa Kaouthar, Simmons Gregory, Carpenter James E.
Florida Entomologist. 2016 99(sp1). p.166
Symbiotic N2 fixation in 30 field-grown cowpea (Vigna unguiculata L. Walp.) genotypes in the Upper West Region of Ghana measured using 15N natural abundance
Belane Alphonsus K., Dakora Felix D.
Biology and Fertility of Soils. 2010 46(2). p.191
An overview of contemporary advances in the usage of 15N natural abundance (δ15N) as a tracer of agro-ecosystem N cycle processes that impact the environment
Chalk Phillip M., Inácio Caio T., Chen Deli
Agriculture, Ecosystems & Environment. 2019 283 p.106570
Nitrogen in Agricultural Systems (2015)
Mulvaney R. L.
Biological Nitrogen Fixation for the 21st Century (1998)
Boddey R. M., Giller K. E., Cadisch G., Alves B. J. R., Urquiaga S.
Changes in 15N natural abundance of biologically fixed N2 in soybean due to shading, rhizobium strain and plant growth stage
Araujo Karla E. C., Vergara Carlos, Guimarães Ana Paula, Rouws Janaina R. C., Jantalia Claudia P., Urquiaga Segundo, Alves Bruno J. R., Boddey Robert M.
Plant and Soil. 2018 426(1-2). p.413
Managing Nitrogen Contaminated Soils:Benefits of N2–Fixing Alfalfa
Russelle Michael P., Lamb JoAnn F. S., Turyk Nancy B., Shaw Byron H., Pearson Bill
Agronomy Journal. 2007 99(3). p.738
Positive legacy effect of previous legume proportion in a ley on the performance of a following crop of Lolium multiflorum
Fox Aaron, Suter Matthias, Widmer Franco, Lüscher Andreas
Plant and Soil. 2020 447(1-2). p.497
Management of Biological Nitrogen Fixation for the Development of More Productive and Sustainable Agricultural Systems (1995)
Herridge D. F., Danso S. K. A.
Nitrogen transfer and yield effects of legumes intercropped with the perennial grain crop intermediate wheatgrass
Reilly Evelyn C., Gutknecht Jessica L., Tautges Nicole E., Sheaffer Craig C., Jungers Jacob M.
Field Crops Research. 2022 286 p.108627
Free air CO2 enrichment (FACE) improves water use efficiency and moderates drought effect on N2 fixation of Pisum sativum L.
Parvin Shahnaj, Uddin Shihab, Fitzgerald Glenn J., Tausz-Posch Sabine, Armstrong Roger, Tausz Michael
Plant and Soil. 2019 436(1-2). p.587
Nitrogen fixation in six forage legumes in Mediterranean central Chile
Ovalle C., Urquiaga S., Pozo A. Del, Zagal E., Arredondo S.
Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 2006 56(4). p.277
Density and relative frequency effects on competitive interactions and resource use in pea–barley intercrops
Hauggaard-Nielsen H., Andersen M.K., Jørnsgaard B., Jensen E.S.
Field Crops Research. 2006 95(2-3). p.256
The relationship between N isotopic fractionation within soybean and N2 fixation during soybean development
Schweiger Peter, Hofer Michaela, Vollmann Johann, Wanek Wolfgang
Physiologia Plantarum. 2014 152(3). p.546
Biochar application rate affects biological nitrogen fixation in red clover conditional on potassium availability
Mia S., van Groenigen J.W., van de Voorde T.F.J., Oram N.J., Bezemer T.M., Mommer L., Jeffery S.
Agriculture, Ecosystems & Environment. 2014 191 p.83
Symbiotic nitrogen contribution and biodiversity of root-nodule bacteria nodulating Psoralea species in the Cape Fynbos, South Africa
Kanu Sheku A., Dakora Felix D.
Soil Biology and Biochemistry. 2012 54 p.68
Symbiotic N2 fixation of various legume species along an altitudinal gradient in the Swiss Alps
Jacot Katja A., Lüscher Andreas, Nösberger Josef, Hartwig Ueli A.
Soil Biology and Biochemistry. 2000 32(8-9). p.1043
Estimating agronomically relevant symbiotic nitrogen fixation in green manure breeding programs
Muller Katherine E., Guinness Joseph, Hecking Matthew, Drinkwater Laurie E.
Crop Science. 2021 61(5). p.3314
Nitrogen dynamics following grain legumes and subsequent catch crops and the effects on succeeding cereal crops
Hauggaard-Nielsen Henrik, Mundus Simon, Jensen Erik Steen
Nutrient Cycling in Agroecosystems. 2009 84(3). p.281
15N natural abundance as a tool for assessing N2-fixation of herbaceous, shrub and tree legumes in improved fallows
Gathumbi S.M, Cadisch G, Giller K.E
Soil Biology and Biochemistry. 2002 34(8). p.1059
Estimating biological nitrogen fixation in field-grown soybeans: impact of B value
Balboa G. R., Ciampitti I. A.
Plant and Soil. 2020 446(1-2). p.195
Effect of heat wave on N2 fixation and N remobilisation of lentil (Lens culinaris MEDIK) grown under free air CO2 enrichment in a mediterranean‐type environment
Parvin S., Uddin S., Bourgault M., Delahunty A., Nuttall J., Brand J., O'Leary G., Fitzgerald G. J., Armstrong R., Tausz M., De Kok L. J.
Plant Biology. 2020 22(S1). p.123
Influence of growth stage and seed nitrogen on B values and potential contributions to error in estimating biological N2 fixation using the 15N natural abundance method
Rose Terry J., Kearney Lee J., Erler Dirk V., Rose Michael T., Van Zwieten Lukas, Raymond Carolyn A.
Plant and Soil. 2018 425(1-2). p.389
Biological nitrogen fixation in secondary regrowth and mature rainforest of central Amazonia
Gehring Christoph, Vlek Paul L.G., de Souza Luiz A.G., Denich Manfred
Agriculture, Ecosystems & Environment. 2005 111(1-4). p.237
Enhancing crop legume N2 fixation through selection and breeding
Herridge D. F., Danso S. K. A.
Plant and Soil. 1995 174(1-2). p.51
Accumulation of biologically fixed nitrogen by legumes cultivated as cover crops in Switzerland
Büchi Lucie, Gebhard Claude-Alain, Liebisch Frank, Sinaj Sokrat, Ramseier Hans, Charles Raphaël
Plant and Soil. 2015 393(1-2). p.163
The effect of timing and severity of water deficit on growth, development, yield accumulation and nitrogen fixation of mungbean
Thomas , Robertson M.J., Fukai S., Peoples M.B.
Field Crops Research. 2004 86(1). p.67
Plant Responses to Drought Stress (2012)
Palta Jairo A., Berger Jens D., Bramley Helen
Variable root:shoot ratios and plant nitrogen concentrations discourage using just aboveground biomass to select legume service crops
Pinto Priscila, Rubio Gerardo, Gutiérrez Félix, Sawchik Jorge, Arana Santiago, Piñeiro Gervasio
Plant and Soil. 2021 463(1-2). p.347
Importance of correct B value determination to quantify biological N2 fixation and N balances of faba beans (Vicia faba L.) via 15N natural abundance
Nebiyu Amsalu, Huygens Dries, Upadhayay Hari Ram, Diels Jan, Boeckx Pascal
Biology and Fertility of Soils. 2014 50(3). p.517
Isotope discrimination provides new insight into biological nitrogen fixation
Unkovich Murray
New Phytologist. 2013 198(3). p.643
Promoting enhanced ecosystem services from cover crops using intra- and interspecific diversity
Reiss Emily R., Drinkwater Laurie E.
Agriculture, Ecosystems & Environment. 2022 323 p.107586
The contribution of nitrogen fixed by annual legume pastures to the productivity of wheat in two contrasting Mediterranean environments in central Chile
Espinoza Soledad, Ovalle Carlos, del Pozo Alejandro
Field Crops Research. 2020 249 p.107709
A model to predict the accuracy of measurements of legume N rhizodeposition using a split-root technique
Schmidtke Knut
Soil Biology and Biochemistry. 2005 37(5). p.829
Inhibition of N2 Fixation by N Fertilization of Common Bean (Phaseolus vulgaris L.) Plants Grown on Fields of Farmers in the Eastern Cape of South Africa, Measured Using 15N Natural Abundance and Tissue Ureide Analysis
Habinshuti Simon J., Maseko Sipho T., Dakora Felix D.
Frontiers in Agronomy. 2021 3
Soil fertility in silvopastoral systems integrating tree legumes with signalgrass (Urochloa decumbens Stapf. R. Webster)
Herrera Angulo Ana María, De Mello Alexandre Carneiro Leão , Apolinário Valéria Xavier de Oliveira, Dubeux Jr José Carlos B., Mora Robert Emilio, De Freitas Erinaldo Viana
Archivos Latinoamericanos de Producción Animal. 2023 31(4). p.287
Biological Nitrogen Fixation for the 21st Century (1998)
von Berswordt-Wallrabe P., Schäfer A., Bockisch U., Werner D.
Natural 15N abundance of plants and soils under different management practices in a montane grassland
Watzka Margarete, Buchgraber Karl, Wanek Wolfgang
Soil Biology and Biochemistry. 2006 38(7). p.1564
Variation in N2 fixation and N contribution by 25 groundnut (Arachis hypogaea L.) varieties grown in different agro-ecologies, measured using 15N natural abundance
Mokgehle Salmina N., Dakora Felix D., Mathews Cherian
Agriculture, Ecosystems & Environment. 2014 195 p.161
Global Application of Regenerative Agriculture: A Review of Definitions and Assessment Approaches
Jayasinghe Sadeeka L., Thomas Dean T., Anderson Jonathan P., Chen Chao, Macdonald Ben C. T.
Sustainability. 2023 15(22). p.15941
Nodulation and nitrogen fixation by subterranean clover in acid soils as influenced by lime application, toxic aluminium, soil mineral N, and competition from annual ryegrass
Unkovich M.J., Sanford P., Pate J.S.
Soil Biology and Biochemistry. 1996 28(4-5). p.639
Symbiotic effectiveness and tolerance to early season nitrate in indigenous populations of subterranean clover rhizobia from S.W. Australian pastures
Unkovich Murray J., Pate John S.
Soil Biology and Biochemistry. 1998 30(10-11). p.1435
Discrimination against15N in three N2-fixingTrifoliumspecies as influenced byRhizobiumstrain and plant age
Carlsson Georg, Palmborg Cecilia, Huss-Danell Kerstin
Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 2006 56(1). p.31
Symbiotic functioning, structural adaptation, and subcellular organization of root nodules from Psoralea pinnata (L.) plants grown naturally under wetland and upland conditions in the Cape Fynbos of South Africa
Kanu Sheku A., Dakora Felix D.
Protoplasma. 2017 254(1). p.137
An appraisal of recent field measurements of symbiotic N2 fixation by annual legumes
Unkovich Murray J., Pate John S.
Field Crops Research. 2000 65(2-3). p.211
Ecophysiological Variability of Alnus viridis (Chaix) DC. Green Alder Leaves in the Bieszczady Mountains (Poland)
Skoczowski Andrzej, Odrzywolska-Hasiec Magdalena, Oliwa Jakub, Ciereszko Iwona, Kornaś Andrzej
Plants. 2021 10(1). p.96
Nitrogen fixation and transfer in grass-clover leys under organic and conventional cropping systems
Oberson A., Frossard E., Bühlmann C., Mayer J., Mäder P., Lüscher A.
Plant and Soil. 2013 371(1-2). p.237
Legume inoculant application methods: effects on nodulation patterns, nitrogen fixation, crop growth and yield in narrow-leaf lupin and faba bean
Denton Matthew D, Phillips Lori A, Peoples Mark B, Pearce David J, Swan Antony D, Mele Pauline M, Brockwell John
Plant and Soil. 2017 419(1-2). p.25
Linking Research and Marketing Opportunities for Pulses in the 21st Century (2000)
Gregory P. J., Wery J., Herridge D. F., Bowden W., Fettell N.
Encyclopedia of Soil Science, Third Edition (2017)
Field assessment of symbiotic N2 fixation in wild and cultivated Cyclopia species in the South African fynbos by 15N natural abundance
Spriggs A. C., Dakora F. D.
Tree Physiology. 2008 29(2). p.239
Methods in Rhizosphere Biology Research (2019)
Stevenel Pierre, Frossard E., Abiven S., Rao I. M., Tamburini F., Oberson A.

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