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

Articles citing this paper

Environmental and genotypic control of time to flowering in canola and Indian mustard

and I. Farre M. J. Robertson, S. Asseng, J. A. Kirkegaard, N. Wratten, J. F. Holland, A. R. Watkinson, T. D. Potter, W. Burton, G. H. Walton, D. J. Moot
53(7) pp.793 - 809


57 articles found in Crossref database.

Simulating lupin development, growth, and yield in a Mediterranean environment
Farré Imma, Robertson Michael J., Asseng Senthold, French Robert J., Dracup Miles
Australian Journal of Agricultural Research. 2004 55(8). p.863
Automatic canola mapping using time series of sentinel 2 images
Ashourloo Davoud, Shahrabi Hamid Salehi, Azadbakht Mohsen, Aghighi Hossein, Nematollahi Hamed, Alimohammadi Abbas, Matkan Ali Akbar
ISPRS Journal of Photogrammetry and Remote Sensing. 2019 156 p.63
Molecular mapping of QTL alleles of Brassica oleracea affecting days to flowering and photosensitivity in spring Brassica napus
Rahman Habibur, Bennett Rick A., Kebede Berisso, Rajcan Istvan
PLOS ONE. 2018 13(1). p.e0189723
Uncertainty in canola phenology modelling induced by cultivar parameterization and its impact on simulated yield
He Di, Wang Enli, Wang Jing, Lilley Julianne, Luo Zhongkui, Pan Xuebiao, Pan Zhihua, Yang Ning
Agricultural and Forest Meteorology. 2017 232 p.163
Data requirement for effective calibration of process-based crop models
He Di, Wang Enli, Wang Jing, Robertson Michael J.
Agricultural and Forest Meteorology. 2017 234-235 p.136
Temperature variation caused by sowing dates significantly affects floral initiation and floral bud differentiation processes in rapeseed ( Brassica napus L.)
Luo Tao, Zhang Jing, Khan Mohammad Nauman, Liu Jiahuan, Xu Zhenghua, Hu Liyong
Plant Science. 2018 271 p.40
Frost risk in canola and carinata as a function of sowing date in the agricultural central region of South America
Verocai Maximiliano, Castro Marina, Manasliski Santiago, Mazzilli Sebastián R.
Agronomy Journal. 2022 114(5). p.2920
Global Agricultural Production: Resilience to Climate Change (2022)
Hamza Ameer, Fayyaz-ul-Hassan , Ahmed Mukhtar, Yaqub Emaan, Hussain Muhammad Iftikhar, Shabbir Ghulam
A phenological model of winter oilseed rape according to the BBCH scale
Böttcher Ulf, Rampin Enrico, Hartmann Karla, Zanetti Federica, Flenet Francis, Morison Muriel, Kage Henning
Crop and Pasture Science. 2016 67(4). p.345
Adaptation of wheat, barley, canola, field pea and chickpea to the thermal environments of Australia
Sadras Victor, Dreccer M. Fernanda
Crop and Pasture Science. 2015 66(11). p.1137
Re-evaluating sowing time of spring canola (Brassica napus L.) in south-eastern Australia—how early is too early?
Kirkegaard J. A., Lilley J. M., Brill R. D., Sprague S. J., Fettell N. A., Pengilley G. C.
Crop and Pasture Science. 2016 67(4). p.381
Predicting growth and yield of winter rapeseed in a Mediterranean environment: Model adaptation at a field scale
Deligios Paola A., Farci Roberta, Sulas Leonardo, Hoogenboom Gerrit, Ledda Luigi
Field Crops Research. 2013 144 p.100
Encyclopedia of Food Grains (2016)
Mendham N.J., Robertson M.J.
Regression Model for Time to Flowering of Chickpea Landraces
Kozlov K. N., Samsonova M. G., Nuzhdin S. V.
Russian Journal of Genetics. 2019 55(8). p.1046
Drivers of trends in Australian canola productivity and future prospects
Kirkegaard John A., Lilley Julianne M., Morrison Malcolm J.
Crop and Pasture Science. 2016 67(4). p.i
Carbon and water dynamics in co-located winter wheat and canola fields in the U.S. Southern Great Plains
Wagle Pradeep, Gowda Prasanna H., Manjunatha Priyanka, Northup Brian K., Rocateli Alexandre C., Taghvaeian Saleh
Agricultural and Forest Meteorology. 2019 279 p.107714
Effect of High Temperature on Crop Productivity and Metabolism of Macro Molecules (2019)
Bhattacharya Amitav
Composición nutritiva y productividad de forrajes alternativos de otoño-invierno en diferentes fechas de siembra del norte de México
López-Jara Anabel Guadalupe , Reta-Sánchez David Guadalupe , Reyes-González Arturo , Santana Omar Iván , López-Calderón Magali Jeaneth , Sánchez-Duarte Juan Isidro
Revista Mexicana de Ciencias Agrícolas. 2022 (28). p.125
Encyclopedia of Grain Science (2004)
Mendham N.J., Robertson M.J.
Vernalisation in Australian spring canola explains variable flowering responses
Whish J.P.M., Lilley J.M., Morrison M.J., Cocks B., Bullock M.
Field Crops Research. 2020 258 p.107968
Selenium supplementation stimulates vegetative and reproductive growth in canola (Brassica napus L.) plants
HAJIBOLAND Roghieh, KEIVANFAR Nasrin
Acta agriculturae Slovenica. 2012 99(1).
Canola and Camelina as New Crop Options for Cool‐Season Production in California
George Nicholas, Hollingsworth Joy, Yang Wan‐Ru, Kaffka Stephen
Crop Science. 2017 57(2). p.693
Yield performance of late-maturing winter canola (Brassica napus L.) types in the High Rainfall Zone of southern Australia
Riffkin Penny, Potter Trent, Kearney Gavin
Crop and Pasture Science. 2012 63(1). p.17
Simulation of growth, development and yield of canola (Brassica napus) in APSIM
Robertson M. J., Lilley J. M.
Crop and Pasture Science. 2016 67(4). p.332
Crop species present different qualitative types of response to N deficiency during their vegetative growth
Lemaire Gilles, van Oosterom Erik, Jeuffroy Marie-Hélène, Gastal François, Massignam Angelo
Field Crops Research. 2008 105(3). p.253
Parameterization of SSM Model to Analyze Wheat Growth and Yield Potential Under Pakdasht Conditions
Azad Hamed, Abbas Akbar Gholam, Ali Akbari Gholam, Soltani Elias
Biomedical and Pharmacology Journal. 2018 11(4). p.1913
Model sensitivity of simulated yield of winter oilseed rape to climate change scenarios in Europe
Pullens Johannes Wilhelmus Maria, Kersebaum Kurt Christian, Böttcher Ulf, Kage Henning, Olesen Jørgen Eivind
European Journal of Agronomy. 2021 129 p.126341
Dual-purpose canola—a new opportunity in mixed farming systems
Kirkegaard J. A., Sprague S. J., Dove H., Kelman W. M., Marcroft S. J., Lieschke A., Howe G. N., Graham J. M.
Australian Journal of Agricultural Research. 2008 59(4). p.291
Production risk of canola in the semi-arid subtropics of Australia
Robertson M. J., Holland J. F.
Australian Journal of Agricultural Research. 2004 55(5). p.525
Determinants of nectar production in oilseed rape
Enkegaard Annie, Kryger Per, Boelt Birte
Journal of Apicultural Research. 2016 55(1). p.89
Genotype × environment interactions for phenological adaptation in narrow-leafed lupin: A simulation study with a parameter optimized model
Chen Chao, Berger Jens, Fletcher Andrew, Lawes Roger, Robertson Michael
Field Crops Research. 2016 197 p.28
Long-season canola (Brassica napus L.) cultivars offer potential to substantially increase grain yield production in south-eastern Australia compared with current spring cultivars
Christy Brendan, O'Leary Garry, Riffkin Penny, Acuna Tina, Potter Trent, Clough Angela
Crop and Pasture Science. 2013 64(9). p.901
Forage yield and chemical composition of canola (Brassica napus L.) as affected by sowing methods
Reta‐Sánchez D. G., Serrato‐Corona J. S., Quiroga‐Garza H. M., Gaytán‐Mascorro A., Figueroa‐Viramontes U.
Grass and Forage Science. 2016 71(2). p.281
Reference Module in Food Science (2016)
Mendham N.J., Robertson M.J.
Optimising grain yield and grazing potential of crops across Australia’s high-rainfall zone: a simulation analysis. 2. Canola
Lilley Julianne M., Bell Lindsay W., Kirkegaard John A.
Crop and Pasture Science. 2015 66(4). p.349
Can genomics assist the phenological adaptation of canola to new and changing environments?
Nelson Matthew N., Lilley Julianne M., Helliwell Chris, Taylor Candy M., Siddique Kadambot H. M., Chen Sheng, Raman Harsh, Batley Jacqueline, Cowling Wallace A.
Crop and Pasture Science. 2016 67(4). p.284
Modelling the comparative growth, water use and productivity of the perennial legumes, tedera (Bituminaria bituminosa var. albomarginata) and lucerne (Medicago sativa) in dryland mixed farming systems
Chen Chao, Smith Andrew, Ward Phil, Fletcher Andrew, Lawes Roger, Norman Hayley
Crop and Pasture Science. 2017 68(7). p.643
Low Temperature Rather Than Nitrogen Application Mainly Modulates the Floral Initiation of Different Ecotypes of Rapeseed (Brassica napus L.)
Luo Tao, Lin Rongmei, Cheng Tai, Hu Liyong
Agronomy. 2022 12(7). p.1624
Water-use efficiency of dryland canola in an equi-seasonal rainfall environment
Robertson Michael J., Kirkegaard John A.
Australian Journal of Agricultural Research. 2005 56(12). p.1373
Breeding Indian mustard [Brassica juncea (L.) Czern.] for cold-pressed, edible oil production—a review
Oram R. N., Kirk J. T. O., Veness P. E., Hurlstone C. J., Edlington J. P., Halsall D. M.
Australian Journal of Agricultural Research. 2005 56(6). p.581
Contribution of phase durations to canola (Brassica napus L.) grain yields in the High Rainfall Zone of southern Australia
Riffkin Penny, Christy Brendan, O'Leary Garry, Partington Debra
Crop and Pasture Science. 2016 67(4). p.359
Behavioral variations due to effects of day length on yield and related characteristics of some Brassica juncea L. genotypes under hot humid continental conditions
KAYAÇETİN Fatma
International Journal of Agriculture Environment and Food Sciences. 2020 4(3). p.296
Forage canola (Brassica napus): spring-sown winter canola for biennial dual-purpose use in the high-rainfall zone of southern Australia
Paridaen Annieka, Kirkegaard John A.
Crop and Pasture Science. 2015 66(4). p.275
Is crop N demand more closely related to dry matter accumulation or leaf area expansion during vegetative growth?
Lemaire Gilles, Oosterom Erik van, Sheehy John, Jeuffroy Marie Hélène, Massignam Angelo, Rossato Laurence
Field Crops Research. 2007 100(1). p.91
Effect of seeding date on winter canola (Brassica napus L.) yield and oil quality in southern Ontario
Page Eric R., Meloche Sydney, Moran Meghan, Caldbeck Brian, Barthet Véronique, Beres Brian
Canadian Journal of Plant Science. 2021 101(4). p.490
Crop Physiology Case Histories for Major Crops (2021)
Kirkegaard John A., Lilley Julianne M., Berry Peter M., Rondanini Deborah P.
Identification of variability in phenological responses in canola-quality Brassica juncea for utilisation in Australian breeding programs
Burton W. A., Flood R. F., Norton R. M., Field B., Potts D. A., Robertson M. J., Salisbury P. A.
Australian Journal of Agricultural Research. 2008 59(9). p.874
Evaluating the accuracy of the Agricultural Production Systems Simulator (APSIM) simulating growth, development, and herbage nutritive characteristics of forage crops grown in the south-eastern dairy regions of Australia
Pembleton K. G., Rawnsley R. P., Jacobs J. L., Mickan F. J., O'Brien G. N., Cullen B. R., Ramilan T.
Crop and Pasture Science. 2013 64(2). p.147
Agroclimatology (2018)
Shaykewich C.F., Bullock P.R.
Optimising canola establishment and yield in south-eastern Australia with hybrids and large seed
Brill R. D., Jenkins M. L., Gardner M. J., Lilley J. M., Orchard B. A.
Crop and Pasture Science. 2016 67(4). p.409
Quantitative Trait Loci for Thermal Time to Flowering and Photoperiod Responsiveness Discovered in Summer Annual-Type Brassica napus L
Nelson Matthew N., Rajasekaran Ravikesavan, Smith Alison, Chen Sheng, Beeck Cameron P., Siddique Kadambot H. M., Cowling Wallace A., Lukens Lewis
PLoS ONE. 2014 9(7). p.e102611
Non-linear regression models for time to flowering in wild chickpea combine genetic and climatic factors
Kozlov Konstantin, Singh Anupam, Berger Jens, Bishop-von Wettberg Eric, Kahraman Abdullah, Aydogan Abdulkadir, Cook Douglas, Nuzhdin Sergey, Samsonova Maria
BMC Plant Biology. 2019 19(S2).
Modeling chickpea growth and development: Phenological development
Soltani A., Hammer G.L., Torabi B., Robertson M.J., Zeinali E.
Field Crops Research. 2006 99(1). p.1
How to build a crop model. A review
Pasley Heather, Brown Hamish, Holzworth Dean, Whish Jeremy, Bell Lindsay, Huth Neil
Agronomy for Sustainable Development. 2023 43(1).
Spring-planted cover crops for weed control in soybean
Koehler-Cole Katja, Proctor Christopher A., Elmore Roger W., Wedin David A.
Renewable Agriculture and Food Systems. 2021 36(5). p.501
Factors that modify early and late reproductive phases in oilseed rape (Brassica napus L.): Its impact on seed yield and oil content
Gomez Nora V., Miralles Daniel J.
Industrial Crops and Products. 2011 34(2). p.1277
Physiological response of spring canola (Brassica napus) to defoliation in diverse environments
Kirkegaard J.A., Sprague S.J., Lilley J.M., McCormick J.I., Virgona J.M., Morrison M.J.
Field Crops Research. 2012 125 p.61

Committee on Publication Ethics


Abstract Export Citation Get Permission