Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

Factors affecting the potential contributions of N2 fixation by legumes in Australian pasture systems

M. B. Peoples A G H , J. Brockwell A , J. R. Hunt A , A. D. Swan A G , L. Watson A , R. C. Hayes B G , G. D. Li B G , B. Hackney C , J. G. Nuttall D , S. L. Davies E and I. R. P. Fillery F
+ Author Affiliations
- Author Affiliations

A CSIRO Sustainable Agriculture National Research Flagship, CSIRO Plant Industry, GPO Box 1600 Canberra, ACT 2601, Australia.

B EH Graham Centre for Agricultural Innovation (an alliance between New South Wales Department of Primary Industries and Charles Sturt University), Wagga Wagga Agricultural Institute, PMB, Pine Gully Road, Wagga Wagga, NSW 2650, Australia.

C New South Wales Department of Primary Industries, PO Box 1386, Research Station Drive, Bathurst, NSW 2795, Australia.

D Department of Primary Industries, PB 260, Horsham, Vic. 3401, Australia.

E Department of Agriculture and Food, Western Australia, PO Box 110, Geraldton, WA 6530, Australia.

F CSIRO Sustainable Agriculture National Research Flagship, CSIRO Plant Industry, PO Private Bag 5, Wembley, WA 6913, Australia.

G Future Farm Industries Cooperative Research Centre, 35 Stirling Highway, Crawley, WA 6009, Australia.

H Corresponding author. Email: mark.peoples@csiro.au

Crop and Pasture Science 63(9) 759-786 https://doi.org/10.1071/CP12123
Submitted: 30 March 2012  Accepted: 2 October 2012   Published: 10 December 2012



77 articles found in Crossref database.

Free-air CO2enrichment (FACE) reduces the inhibitory effect of soil nitrate on N2fixation ofPisum sativum
Butterly Clayton R., Armstrong Roger, Chen Deli, Tang Caixian
Annals of Botany. 2016 117(1). p.177
Legumes for Soil Health and Sustainable Management (2018)
Jhariya M. K., Banerjee A., Yadav D. K., Raj A.
Can legume species, crop residue management or no-till mitigate nitrous oxide emissions from a legume-wheat crop rotation in a semi-arid environment?
Li Guangdi D., Schwenke Graeme D., Hayes Richard C., Lowrie Adam J., Lowrie Richard J., Poile Graeme J., Oates Albert A., Xu Binbin, Rohan Maheswaran
Soil and Tillage Research. 2021 209 p.104910
Cross-host compatibility of commercial rhizobial strains for new and existing pasture legume cultivars in south-eastern Australia
Rigg Jessica L., Webster Ashlea T., Harvey Deirdre M., Orgill Susan E., Galea Francesca, Dando Adrian G., Collins Damian P., Harris Carol A., Newell Matthew T., Badgery Warwick B., Hayes Richard C.
Crop and Pasture Science. 2021 72(9). p.652
Can evolutionary constraints explain the rarity of nitrogen‐fixing trees in high‐latitude forests?
Menge Duncan N. L., Crews Timothy E.
New Phytologist. 2016 211(4). p.1195
Field applications of gypsum reduce pH and improve soil C in highly alkaline soils in southern Australia’s dryland cropping region
Tavakkoli Ehsan, Uddin Shihab, Rengasamy Pichu, McDonald Glenn K.
Soil Use and Management. 2022 38(1). p.466
A review of pasture establishment by undersowing with special reference to the mixed farming zone of south-eastern Australia
McCormick Jeff I., Hayes Richard C., Li Guangdi D., Norton Mark R.
Crop and Pasture Science. 2014 65(10). p.956
Co-application of a biosolids product and biochar to two coarse-textured pasture soils influenced microbial N cycling genes and potential for N leaching
Shanmugam Sanjutha, Jenkins Sasha N., Mickan Bede S., Jaafar Noraini Md, Mathes Falko, Solaiman Zakaria M., Abbott Lynette K.
Scientific Reports. 2021 11(1).
Agroecosystem Diversity (2019)
Peoples Mark B., Hauggaard-Nielsen Henrik, Huguenin-Elie Olivier, Jensen Erik Steen, Justes Eric, Williams Michael
Perennial pastures reduce nitrous oxide emissions in mixed farming systems in a semi-arid environment
Li Guangdi D., Schwenke Graeme D., Hayes Richard C., Lowrie Adam J., Lowrie Richard J., Price Andrew
Science of The Total Environment. 2022 834 p.155304
Adaptive Evolution of Rhizobial Symbiosis beyond Horizontal Gene Transfer: From Genome Innovation to Regulation Reconstruction
Liu Sheng, Jiao Jian, Tian Chang-Fu
Genes. 2023 14(2). p.274
The legacy of pasture drill rows on soil chemical characteristics and subsequent wheat production
Hayes Richard C., Li Guangdi D., Rawnsley Richard P., Pembleton Keith G., Corkrey Ross, Peoples Mark B.
Plant and Soil. 2020 455(1-2). p.319
Species richness and functional diversity enhance winter annual forage productivity and nutritive value
Rusch Hannah L., Dubeux Jose C. B., Queiroz Luana M. Dantas, Wallau Marcelo O., Wilson Chris H.
Crop Science. 2023 63(5). p.3136
Effectiveness of Rhizobium inoculation on common bean productivity as determined by inherent soil fertility status
Argaw Anteneh
Journal of Crop Science and Biotechnology. 2016 19(4). p.311
Carbon sink strength of nodules but not other organs modulates photosynthesis of faba bean (Vicia faba) grown under elevated [CO2] and different water supply
Parvin Shahnaj, Uddin Shihab, Tausz‐Posch Sabine, Armstrong Roger, Tausz Michael
New Phytologist. 2020 227(1). p.132
Nitrogen fixation and transfer between legumes and cereals under various cropping regimes
Zhao Yan, Tian Yuqiang, Li Xiaobing, Song Minghua, Fang Xingxing, Jiang Yan, Xu Xingliang
Rhizosphere. 2022 22 p.100546
Perennial cereal crops: An initial evaluation of wheat derivatives grown in mixtures with a regenerating annual legume
Hayes Richard C., Newell Matthew T., Crews Timothy E., Peoples Mark B.
Renewable Agriculture and Food Systems. 2017 32(3). p.276
Red clover (Trifolium pratense) in conservation agriculture: a compelling case for increased adoption
McKenna Patrick, Cannon Nicola, Conway John, Dooley John, Davies William Paul
International Journal of Agricultural Sustainability. 2018 16(4-5). p.342
Mineral nutrition of sub-alpine Australian vegetation under nutrient deficiency depends on lifeform
Netzer Florian, Turnbull Tarryn, Mult Susanne, Alfarraj Saleh, Albasher G., Herschbach Cornelia, Adams Mark, Rennenberg Heinz
Environmental and Experimental Botany. 2019 160 p.92
Biomass Production and Potential Fixed Nitrogen Inputs from Leguminous Cover Crops in Subtropical Avocado Plantations
Rose Terry J., Kearney Lee J.
Agronomy. 2019 9(2). p.70
Nitrogen from Australian dryland pastures
Angus J. F., Peoples M. B.
Crop and Pasture Science. 2012 63(9). p.746
Delayed inoculation of alfalfa with Sinorhizobium meliloti and Penicillium bilaiae
Knight J. D.
Canadian Journal of Plant Science. 2015 95(2). p.205
Legume Nitrogen Fixation and Symbioses in Low-Inputs Rainfed Rice Rotations
Razafintsalama Harimenja, Sauvadet Marie, Trap Jean, Autfray Patrice, Ripoche Aude, Becquer Thierry
Sustainability. 2021 13(22). p.12349
Seasonal Effect on Bacterial Communities Associated with the Rhizospheres of Polhillia, Wiborgia and Wiborgiella Species in the Cape Fynbos, South Africa
Mpai Tiisetso, Jaiswal Sanjay K., Cupido Christopher N., Dakora Felix D.
Microorganisms. 2022 10(10). p.1992
Increasing legume forage productivity through slurry application – A way to intensify sustainable agriculture?
Crotty Felicity V., Fychan Rhun, Sanderson Ruth, Marley Christina L.
Food and Energy Security. 2018 7(4).
Rhizobia inhabiting nodules and rhizosphere soils of alfalfa: A strong selection of facultative microsymbionts
Wang Xiao Lin, Cui Wen Jing, Feng Xue Ying, Zhong Zhi Ming, Li Ying, Chen Wen Xin, Chen Wen Feng, Shao Xiao Ming, Tian Chang Fu
Soil Biology and Biochemistry. 2018 116 p.340
Methodologies for estimating nitrogen transfer between legumes and companion species in agro-ecosystems: A review of 15N-enriched techniques
Chalk Phillip M., Peoples Mark B., McNeill Ann M., Boddey Robert M., Unkovich Murray J., Gardener Matthew J., Silva Caroline F., Chen Deli
Soil Biology and Biochemistry. 2014 73 p.10
Effects of contrasting seasonal growth patterns on composition and persistence of mixed grass‐legume pastures over 5 years in a semi‐arid Australian cropping environment
Hayes R. C., Li G. D., Norton M. R., Culvenor R. A.
Journal of Agronomy and Crop Science. 2018 204(3). p.228
Time of sowing and the presence of a cover-crop determine the productivity and persistence of perennial pastures in mixed farming systems
Li Guangdi D., Hayes Richard C., McCormick Jeff I., Gardner Matthew J., Sandral Graeme A., Dear Brian S.
Crop and Pasture Science. 2014 65(10). p.988
Colonization of Brachypodium distachyon by Gluconacetobacter diazotrophicus and its effect on plant growth promotion
Yang Xuan, Allen Hill Kathleen, Vessey J. Kevin, Tian Lining, Beres Brian
Canadian Journal of Plant Science. 2022 102(2). p.324
High performance of a low input, mixed western Australian farming system: public policy implications from the case of Tolga farm
Plunkett Bradley, Roberts Daniel, Kharel Sudarshan, Foster Kevin, Overheu Tim, Savage Brendon
Sustainable Earth Reviews. 2023 6(1).
Genetic improvement of subterranean clover (Trifolium subterraneum L.). 1. Germplasm, traits and future prospects
Nichols P. G. H., Foster K. J., Piano E., Pecetti L., Kaur P., Ghamkhar K., Collins W. J.
Crop and Pasture Science. 2013 64(4). p.312
Diversifying crop rotations with pulses enhances system productivity
Gan Yantai, Hamel Chantal, O’Donovan John T., Cutforth Herb, Zentner Robert P., Campbell Con A., Niu Yining, Poppy Lee
Scientific Reports. 2015 5(1).
Increases in forage legume biomass as a response to nitrogen input depend on temperature, soil characters and planting system: A meta‐analysis
Gao Limin, Su Jing, Chen Chun, Tian Qian, Shen Yixin
Grass and Forage Science. 2021 76(2). p.309
Productive and nutritional characteristics of Brachiaria brizantha cultivars intercropped with Stylosanthes cv. Campo Grande in different forage systems
Epifanio Patrícia Soares, de Pinho Costa Kátia Aparecida, da Costa Severiano Eduardo, Ferreira de Souza Wender, Teixeira Daniel Augusto Alves, Torres da Silva Jessika, de Moura Aquino Millena
Crop and Pasture Science. 2019 70(8). p.718
Going where no grains have gone before: From early to mid-succession
Crews Timothy E., Blesh Jennifer, Culman Steven W., Hayes Richard C., Jensen Erik Steen, Mack Michelle C., Peoples Mark B., Schipanski Meagan E.
Agriculture, Ecosystems & Environment. 2016 223 p.223
Sowing configuration affects competition and persistence of lucerne (
Hayes Richard C., Newell Matthew T., Pembleton Keith G., Peoples Mark B., Li Guangdi D.
Crop and Pasture Science. 2021 72(9). p.707
Relationships for estimating N2 fixation in legumes: incidence for N balance of legume‐based cropping systems in Europe
Anglade Juliette, Billen Gilles, Garnier Josette
Ecosphere. 2015 6(3). p.1
Site-Specific Ser/Thr/Tyr Phosphoproteome of Sinorhizobium meliloti at Stationary Phase
Liu Tao, Tian Chang Fu, Chen Wen Xin, Schlossmann Jens
PLOS ONE. 2015 10(9). p.e0139143
Australian Legume Research – synthesis and future directions
Virgona J. M., Harris C., Kemp S., Evans J., Salmon R.
Crop and Pasture Science. 2012 63(9). p.918
Advances in Plant Breeding Strategies: Agronomic, Abiotic and Biotic Stress Traits (2016)
Rauf Saeed, Sienkiewicz-Paderewska Dorota, Malinowski Dariusz P., Hussain M. Mubashar, Niazi Imtiaz Akram Khan, Kausar Maria
Nitrogen but not phosphorus addition affects symbiotic N2 fixation by legumes in natural and semi-natural grasslands located on four continents
Vázquez Eduardo, Schleuss Per-Marten, Borer Elizabeth T., Bugalho Miguel N., Caldeira Maria C., Eisenhauer Nico, Eskelinen Anu, Fay Philip A., Haider Sylvia, Jentsch Anke, Kirkman Kevin P., McCulley Rebecca L., Peri Pablo L., Price Jodi, Richards Anna E., Risch Anita C., Roscher Christiane, Schütz Martin, Seabloom Eric W., Standish Rachel J., Stevens Carly J., Tedder Michelle J., Virtanen Risto, Spohn Marie
Plant and Soil. 2022 478(1-2). p.689
Enhancing composition and persistence of mixed pasture swards in southern New South Wales through alternative spatial configurations and improved legume performance
Hayes Richard C., Li Guangdi D., Sandral Graeme A., Swan Tony D., Price Andrew, Hildebrand Shane, Goward Laura, Fuller Chris, Peoples Mark B.
Crop and Pasture Science. 2017 68(12). p.1112
A review of organic carbon accumulation in soils within the agricultural context of southern New South Wales, Australia
Conyers Mark, Liu De Li, Kirkegaard John, Orgill Susan, Oates Albert, Li Guangdi, Poile Graeme, Kirkby Clive
Field Crops Research. 2015 184 p.177
Tropical forage legumes provide large nitrogen benefits to maize except when fodder is removed
Traill Skye, Bell Lindsay W., Dalgliesh Neal P., Wilson Ainsleigh, Ramony Lina-May, Guppy Chris
Crop and Pasture Science. 2018 69(2). p.183
Prospects for improving perennial legume persistence in mixed grazed pastures of south-eastern Australia, with particular reference to white clover
Hayes R. C., Ara I., Badgery W. B., Culvenor R. A., Haling R. E., Harris C. A., Li G. D., Norton M. R., Orgill S. E., Penrose B., Smith R. W.
Crop and Pasture Science. 2019 70(12). p.1141
Developing the role of perennial forages for crop–livestock farms: a strategic multi-disciplinary approach
Llewellyn Rick S., Robertson Michael J., Hayes Richard C., Ferris David, Descheemaeker Katrien, Revell Clinton
Crop and Pasture Science. 2014 65(10). p.945
Soil acidity and nutrient deficiency cause poor legume nodulation in the permanent pasture and mixed farming zones of south-eastern Australia
Hackney B. F., Jenkins J., Powells J., Edwards C. E., De Meyer S., Howieson J. G., Yates R. J., Orgill S. E.
Crop and Pasture Science. 2019 70(12). p.1128
Enhancement of rhizosphere citric acid and decrease of NO3−/NH4+ ratio by root interactions facilitate N fixation and transfer
Wang Xinyu, Gao Yingzhi, Zhang Hualiang, Shao Zeqiang, Sun Baoru, Gao Qiang
Plant and Soil. 2020 447(1-2). p.169
Opportunities and challenges in Australian grasslands: pathways to achieve future sustainability and productivity imperatives
Bell Lindsay W., Hayes Richard C., Pembleton Keith G., Waters Cathy M.
Crop and Pasture Science. 2014 65(6). p.489
Soil nitrogen pools and turnover in native woodland and managed pasture soils
Prendergast-Miller Miranda T., de Menezes Alexandre B., Farrell Mark, Macdonald Lynne M., Richardson Alan E., Bissett Andrew, Toscas Peter, Baker Geoff, Wark Tim, Thrall Peter H.
Soil Biology and Biochemistry. 2015 85 p.63
Use of nitrogen-fixing plants to improve planted forest soil fertility and productivity in New Zealand: A review
Reid Nicola M., Wigley Kathryn, Nusrath Aysha, Smaill Simeon J., Garrett Loretta G.
New Zealand Journal of Forestry Science. 2024 54
Prospects for yield improvement in the Australian wheat industry: a perspective
Robertson Michael, Kirkegaard John, Rebetzke Greg, Llewellyn Rick, Wark Tim
Food and Energy Security. 2016 5(2). p.107
Response of canola and cereals to amendment of subsurface soil acidity and a hardpan
Conyers Mark K., Moroni J. Sergio, Poile Graeme J., Oates Albert A., Lowrie Richard, Swan Antony D., Angus John F., Peoples Mark B., Hamblin Peter, Kirkegaard John A., Armstrong Roger
Crop & Pasture Science. 2023 74(12). p.1128
Chicory stimulates companion legume species to fix more biological nitrogen
Gardner Matthew J., Condon Jason R., Peoples Mark B., Conyers Mark K., Dear Brian S., Li Guangdi D.
Plant and Soil. 2023
Cultivar complementarity for symbiotic nitrogen fixation and water use efficiency in pea-oat intercrops and its effect on forage yield and quality
Tsialtas Ioannis T., Baxevanos Dimitrios, Vlachostergios Dimitrios N., Dordas Christos, Lithourgidis Anastasios
Field Crops Research. 2018 226 p.28
Nitrogen balance in Australia and nitrogen use efficiency on Australian farms
Angus J. F., Grace P. R.
Soil Research. 2017 55(6). p.435
High-quality draft genome sequence of Ensifer meliloti Mlalz-1, a microsymbiont of Medicago laciniata (L.) miller collected in Lanzarote, Canary Islands, Spain
Osman Wan Adnawani Meor, van Berkum Peter, León-Barrios Milagros, Velázquez Encarna, Elia Patrick, Tian Rui, Ardley Julie, Gollagher Margaret, Seshadri Rekha, Reddy T. B. K., Ivanova Natalia, Woyke Tanja, Pati Amrita, Markowitz Victor, Baeshen Mohamed N., Baeshen Naseebh Nabeeh, Kyrpides Nikos, Reeve Wayne
Standards in Genomic Sciences. 2017 12(1).
The use of red clover (Trifolium pratense) in soil fertility-building: A Review
McKenna Patrick, Cannon Nicola, Conway John, Dooley John
Field Crops Research. 2018 221 p.38
How the Nitrogen Economy of a Perennial Cereal-Legume Intercrop Affects Productivity: Can Synchrony Be Achieved?
Crews Timothy E., Kemp Laura, Bowden James H., Murrell Ebony G.
Frontiers in Sustainable Food Systems. 2022 6
A comparison of field assessment methods for lucerne inoculation experiments
Tang Lin, Morel Julien, Halling Magnus, Öhlund Linda, Parsons David
Acta Agriculturae Scandinavica, Section B — Soil & Plant Science. 2022 72(1). p.860
Evolution in crop–livestock integration systems that improve farm productivity and environmental performance in Australia
Bell Lindsay W., Moore Andrew D., Kirkegaard John A.
European Journal of Agronomy. 2014 57 p.10
Double mulching improves soil properties and productivity of maize-based cropping system in eastern Indian Himalayas
Ngangom Bidyapati, Das Anup, Lal Rattan, Idapuganti Ramkrushna Gandhiji, Layek Jayanta, Basavaraj Savita, Babu Subhash, Yadav Gulab Singh, Ghosh Probir Kumar
International Soil and Water Conservation Research. 2020 8(3). p.308
A modelled quantification of reduced nitrogen fertiliser requirement and associated trade-offs from inclusion of legumes and fallows in wheat-based crop sequences
Flohr B.M., Meier E.A., Hunt J.R., McBeath T.M., Llewellyn R.S.
Field Crops Research. 2024 307 p.109236
Microbial Inoculants in Sustainable Agricultural Productivity (2016)
Sathya Arumugam, Vijayabharathi Rajendran, Gopalakrishnan Subramaniam
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
Biological nitrogen fixation and prospects for ecological intensification in cereal-based cropping systems
Ladha Jagdish K., Peoples Mark B., Reddy Pallavolu M., Biswas Jatish C., Bennett Alan, Jat Mangi L., Krupnik Timothy J.
Field Crops Research. 2022 283 p.108541
A review of legume research and extension in New Zealand (1990–2022)
Moot Derrick J., Cullen Brendan
Crop & Pasture Science. 2022 74(8). p.647
Can differences in 15N natural abundance be used to quantify the transfer of nitrogen from legumes to neighbouring non-legume plant species?
Peoples Mark B., Chalk Phillip M., Unkovich Murray J., Boddey Robert M.
Soil Biology and Biochemistry. 2015 87 p.97
Farmer experience with perennial pastures in the mixed farming areas of southern New South Wales: on-farm participatory research investigating pasture establishment with cover-cropping
Swan A. D., Peoples M. B., Hayes R. C., Li G. D., Casburn G. R., McCormick J. I., Dear B. S.
Crop and Pasture Science. 2014 65(10). p.973
Consequences of changing spatial configuration at sowing in the transitions between crop and pasture phases
Hayes Richard C., Newell Matthew T., Swan Anthony D., Peoples Mark B., Pembleton Keith G., Li Guangdi D.
Journal of Agronomy and Crop Science. 2022 208(3). p.394
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
Mycorrhizal Mediation of Soil (2017)
Abbott L.K., Johnson N.C.
Contrasting soil microbial abundance and diversity on and between pasture drill rows in the third growing season after sowing
Hayes Richard C., Gupta Vadakattu V. S. R., Li Guangdi D., Peoples Mark B., Rawnsley Richard P., Pembleton Keith G.
Renewable Agriculture and Food Systems. 2021 36(2). p.163
Soil mineral nitrogen benefits derived from legumes and comparisons of the apparent recovery of legume or fertiliser nitrogen by wheat
Peoples Mark B., Swan Antony D., Goward Laura, Kirkegaard John A., Hunt James R., Li Guangdi D., Schwenke Graeme D., Herridge David F., Moodie Michael, Wilhelm Nigel, Potter Trent, Denton Matthew D., Browne Claire, Phillips Lori A., Khan Dil Fayaz
Soil Research. 2017 55(6). p.600
Simulated seasonal responses of grazed dairy pastures to nitrogen fertilizer in SE Australia: Pasture production
Christie Karen M., Smith Andrew P., Rawnsley Richard P., Harrison Matthew T., Eckard Richard J.
Agricultural Systems. 2018 166 p.36
Legume persistence for grasslands in tableland environments of south-eastern Australia
Hayes Richard C., Newell Matthew T., Li Guangdi D., Haling Rebecca E., Harris Carol A., Culvenor Richard A., Badgery Warwick B., Munday Neil, Price Andrew, Stutz Rebecca S., Simpson Richard J., Cullen Brendan
Crop & Pasture Science. 2023 74(8). p.712

Committee on Publication Ethics


Abstract Export Citation Get Permission