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

Articles citing this paper

Australian grains free-air carbon dioxide enrichment (AGFACE) facility: design and performance

Mahabubur Mollah A D , Rob Norton B and Jeff Huzzey C
+ Author Affiliations
- Author Affiliations

A Department of Primary Industries, 110 Natimuk Road, Private Bag 260, Horsham, Vic. 3402, Australia.

B The University of Melbourne, 110 Natimuk Road, Private Bag 260, Horsham, Vic. 3402, Australia.

C Land Technology Pty Ltd, 445 Smiths Road, Laharum, Vic. 3401, Australia.

D Corresponding author. Email: Mahabubur.Mollah@dpi.vic.gov.au

Crop and Pasture Science 60(8) 697-707 https://doi.org/10.1071/CP08354
Submitted: 10 October 2008  Accepted: 25 May 2009   Published: 5 August 2009



84 articles found in Crossref database.

Atmospheric CO2 data from the Australian Grains Free Air CO2 Enrichment (AGFACE) facility
Mollah Mahabubur R., Fitzgerald Glenn J.
Data in Brief. 2022 41 p.107937
Understand distribution of carbon dioxide to interpret crop growth data: Australian grains free-air carbon dioxide enrichment experiment
Mollah Mahabubur, Partington Debra, Fitzgerald Genn
Crop and Pasture Science. 2011 62(10). p.883
Spatial Variation of CO2 Inside Australian Grains Free Air Carbon Dioxide Enrichment (AGFACE) Rings
2009 Second International Conference on Environmental and Computer Science (2009)
Mollah Mahabubur, Norton Rob, Partington Debra, Fitzgerald Glenn
Does Elevated [CO2] Only Increase Root Growth in the Topsoil? A FACE Study with Lentil in a Semi-Arid Environment
Bourgault Maryse, Tausz-Posch Sabine, Greenwood Mark, Löw Markus, Henty Samuel, Armstrong Roger D., O’Leary Garry L., Fitzgerald Glenn J., Tausz Michael
Plants. 2021 10(4). p.612
Nitrogen demand and the recovery of 15N-labelled fertilizer in wheat grown under elevated carbon dioxide in southern Australia
Lam Shu Kee, Chen Deli, Norton Rob, Armstrong Roger
Nutrient Cycling in Agroecosystems. 2012 92(2). p.133
Water use dynamics of dryland canola (Brassica napus L.) grown on contrasting soils under elevated CO2
Uddin Shihab, Parvin Shahnaj, Löw Markus, Fitzgerald Glenn J, Tausz-Posch Sabine, Armstrong Roger, Tausz Michael
Plant and Soil. 2019 438(1-2). p.205
Yield, growth and grain nitrogen response to elevated CO2 of five field pea (Pisum sativum L.) cultivars in a low rainfall environment
Bourgault Maryse, Brand Jason, Tausz Michael, Fitzgerald Glenn J.
Field Crops Research. 2016 196 p.1
Nitrogen nutrition and aspects of root growth and function of two wheat cultivars under elevated [CO2]
Tausz Michael, Bilela Silvija, Bahrami Helale, Armstrong Roger, Fitzgerald Glenn, O’Leary Garry, Simon Judy, Tausz-Posch Sabine, Rennenberg Heinz
Environmental and Experimental Botany. 2017 140 p.1
Uncertainties in assessing climate change impacts and adaptation options with wheat crop models
Luo Qunying, Hoogenboom Gerrit, Yang Hong
Theoretical and Applied Climatology. 2022 149(1-2). p.805
Use of the Canopy Chlorophyl Content Index (CCCI) for Remote Estimation of Wheat Nitrogen Content in Rainfed Environments
Cammarano Davide, Fitzgerald Glenn, Basso Bruno, O'Leary Garry, Chen Deli, Grace Peter, Fiorentino Costanza
Agronomy Journal. 2011 103(6). p.1597
Design and performance of a new FACE (free air carbon dioxide enrichment) system for crop and short vegetation exposure
Fangmeier Andreas, Torres-Toledo Victor, Franzaring Jürgen, Damsohn Walter
Environmental and Experimental Botany. 2016 130 p.151
Benefits of increasing transpiration efficiency in wheat under elevated CO2 for rainfed regions
Christy Brendan, Tausz‐Posch Sabine, Tausz Michael, Richards Richard, Rebetzke Greg, Condon Anthony, McLean Terry, Fitzgerald Glenn, Bourgault Maryse, O'Leary Garry
Global Change Biology. 2018 24(5). p.1965
Atmospheric Tomography as a Tool for Quantification of CO2 Emissions from Potential Surface Leaks: Signal Processing Workflow for a Low Accuracy Sensor Array
Kuske Tehani, Jenkins Charles, Zegelin Steve, Mollah Mahabubur, Feitz Andrew
Energy Procedia. 2013 37 p.4065
Impact of elevated CO2 on grain nutrient concentration varies with crops and soils – A long-term FACE study
Jin Jian, Armstrong Roger, Tang Caixian
Science of The Total Environment. 2019 651 p.2641
Can elevated CO2 buffer the effects of heat waves on wheat in a dryland cropping system?
Macabuhay Allene, Houshmandfar Alireza, Nuttall James, Fitzgerald Glenn J., Tausz Michael, Tausz-Posch Sabine
Environmental and Experimental Botany. 2018 155 p.578
Can nitrogen fertiliser maintain wheat (Triticum aestivum) grain protein concentration in an elevated CO2 environment?
Walker Cassandra, Armstrong Roger, Panozzo Joe, Partington Debra, Fitzgerald Glenn
Soil Research. 2017 55(6). p.518
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
Residue decomposition and soil carbon priming in three contrasting soils previously exposed to elevated CO2
Butterly Clayton R., Armstrong Roger D., Chen Deli, Tang Caixian
Biology and Fertility of Soils. 2019 55(1). p.17
Remote estimation of chlorophyll on two wheat cultivars in two rainfed environments
Cammarano Davide, Fitzgerald Glenn, Basso Bruno, Chen Deli, Grace Peter, O'Leary Garry
Crop and Pasture Science. 2011 62(4). p.269
A reduced‐tillering trait shows small but important yield gains in dryland wheat production
Houshmandfar Alireza, Ota Noboru, O'Leary Garry J., Zheng Bangyou, Chen Yang, Tausz‐Posch Sabine, Fitzgerald Glenn J., Richards Richard, Rebetzke Greg J., Tausz Michael
Global Change Biology. 2020 26(7). p.4056
Role of Nitrogen and Sulphur Fertilization for Sustaining the Growth, Physiology and Defence of Brassica juncea L. (Indian Mustard) Plants Exposed to Enhanced CO2 Concentration
Mathur Piyush, Sharma Esha, Kapoor Rupam
Journal of Soil Science and Plant Nutrition. 2022 22(1). p.778
The proportion of nitrate in leaf nitrogen, but not changes in root growth, are associated with decreased grain protein in wheat under elevated [CO2]
Bahrami Helale, De Kok Luit J., Armstrong Roger, Fitzgerald Glenn J., Bourgault Maryse, Henty Samuel, Tausz Michael, Tausz-Posch Sabine
Journal of Plant Physiology. 2017 216 p.44
Early vigour in wheat: Could it lead to more severe terminal drought stress under elevated atmospheric [CO2] and semi‐arid conditions?
Bourgault Maryse, Webber Heidi A., Chenu Karine, O’Leary Garry J., Gaiser Thomas, Siebert Stefan, Dreccer Fernanda, Huth Neil, Fitzgerald Glenn J., Tausz Michael, Ewert Frank
Global Change Biology. 2020 26(7). p.4079
Can additional N fertiliser ameliorate the elevated CO2‐induced depression in grain and tissue N concentrations of wheat on a high soil N background?
Tausz M., Norton R. M., Tausz‐Posch S., Löw M., Seneweera S., O'Leary G., Armstrong R., Fitzgerald G. J.
Journal of Agronomy and Crop Science. 2017 203(6). p.574
Genotypic response of wheat under semi-arid conditions showed no specific responsive traits when grown under elevated CO2
Maphosa Lancelot, Fitzgerald Glenn J., Panozzo Joe, Partington Debra, Walker Cassandra, Kant Surya
Plant Production Science. 2019 22(3). p.333
A short-term study of wheat grain protein response to post-anthesis foliar nitrogen application under elevated CO 2 and supplementary irrigation
Sultana Humaira, Armstrong Roger, Suter Helen, Chen Deli, Nicolas Marc E.
Journal of Cereal Science. 2017 75 p.135
A system for free-air ozone concentration elevation with rice and wheat: Control performance and ozone exposure regime
Tang Haoye, Liu Gang, Han Yong, Zhu Jianguo, Kobayashi Kazuhiko
Atmospheric Environment. 2011 45(35). p.6276
Susceptibility of soil organic carbon to priming after long-term CO2 fumigation is mediated by soil texture
Xu Qiao, Jin Jian, Wang Xiaojuan, Armstrong Roger, Tang Caixian
Science of The Total Environment. 2019 657 p.1112
Rising CO2 concentration altered wheat grain proteome and flour rheological characteristics
Fernando Nimesha, Panozzo Joe, Tausz Michael, Norton Robert, Fitzgerald Glenn, Khan Alamgir, Seneweera Saman
Food Chemistry. 2015 170 p.448
Impacts of elevated atmospheric CO2 on nutrient content of important food crops
Dietterich Lee H., Zanobetti Antonella, Kloog Itai, Huybers Peter, Leakey Andrew D. B., Bloom Arnold J., Carlisle Eli, Fernando Nimesha, Fitzgerald Glenn, Hasegawa Toshihiro, Holbrook N. Michele, Nelson Randall L., Norton Robert, Ottman Michael J., Raboy Victor, Sakai Hidemitsu, Sartor Karla A., Schwartz Joel, Seneweera Saman, Usui Yasuhiro, Yoshinaga Satoshi, Myers Samuel S.
Scientific Data. 2015 2(1).
Performance of the enlarged Rice-FACE system using pure CO2 installed in Tsukuba, Japan
NAKAMURA Hirofumi, TOKIDA Takeshi, YOSHIMOTO Mayumi, SAKAI Hidemitsu, FUKUOKA Minehiko, HASEGAWA Toshihiro
Journal of Agricultural Meteorology. 2012 68(1). p.15
Effects of elevated carbon dioxide and soil nitrogen on growth of two leafyBrassicavegetables
Thomson G, Mollah MR, Partington DL, Jones R, Argall R, Tregenza J, Fitzgerald GJ
New Zealand Journal of Crop and Horticultural Science. 2013 41(2). p.69
Rising atmospheric CO2 concentration affects mineral nutrient and protein concentration of wheat grain
Fernando Nimesha, Panozzo Joe, Tausz Michael, Norton Robert, Fitzgerald Glenn, Seneweera Saman
Food Chemistry. 2012 133(4). p.1307
Intra-specific variation of wheat grain quality in response to elevated [CO2] at two sowing times under rain-fed and irrigation treatments
Fernando Nimesha, Panozzo Joe, Tausz Michael, Norton Robert M., Fitzgerald Glenn J., Myers Samuel, Nicolas Marc E., Seneweera Saman
Journal of Cereal Science. 2014 59(2). p.137
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
Agronomic Crops (2019)
Ahmed Mukhtar, Ahmad Shakeel
Climate change impact and adaptation for wheat protein
Asseng Senthold, Martre Pierre, Maiorano Andrea, Rötter Reimund P., O’Leary Garry J., Fitzgerald Glenn J., Girousse Christine, Motzo Rosella, Giunta Francesco, Babar M. Ali, Reynolds Matthew P., Kheir Ahmed M. S., Thorburn Peter J., Waha Katharina, Ruane Alex C., Aggarwal Pramod K., Ahmed Mukhtar, Balkovič Juraj, Basso Bruno, Biernath Christian, Bindi Marco, Cammarano Davide, Challinor Andrew J., De Sanctis Giacomo, Dumont Benjamin, Eyshi Rezaei Ehsan, Fereres Elias, Ferrise Roberto, Garcia‐Vila Margarita, Gayler Sebastian, Gao Yujing, Horan Heidi, Hoogenboom Gerrit, Izaurralde R. César, Jabloun Mohamed, Jones Curtis D., Kassie Belay T., Kersebaum Kurt-Christian, Klein Christian, Koehler Ann‐Kristin, Liu Bing, Minoli Sara, Montesino San Martin Manuel, Müller Christoph, Naresh Kumar Soora, Nendel Claas, Olesen Jørgen Eivind, Palosuo Taru, Porter John R., Priesack Eckart, Ripoche Dominique, Semenov Mikhail A., Stöckle Claudio, Stratonovitch Pierre, Streck Thilo, Supit Iwan, Tao Fulu, Van der Velde Marijn, Wallach Daniel, Wang Enli, Webber Heidi, Wolf Joost, Xiao Liujun, Zhang Zhao, Zhao Zhigan, Zhu Yan, Ewert Frank
Global Change Biology. 2019 25(1). p.155
Does a freely tillering wheat cultivar benefit more from elevated CO2 than a restricted tillering cultivar in a water-limited environment?
Tausz-Posch Sabine, Dempsey Raymond W., Seneweera Saman, Norton Robert M., Fitzgerald Glenn, Tausz Michael
European Journal of Agronomy. 2015 64 p.21
Grain mineral quality of dryland legumes as affected by elevated CO2 and drought: a FACE study on lentil (Lens culinaris) and faba bean (Vicia faba)
Parvin Shahnaj, Uddin Shihab, Tausz-Posch Sabine, Armstrong Roger, Fitzgerald Glenn, Tausz Michael
Crop and Pasture Science. 2019 70(3). p.244
Understanding crop physiology to select breeding targets and improve crop management under increasing atmospheric CO2 concentrations
Tausz Michael, Tausz-Posch Sabine, Norton Robert M., Fitzgerald Glenn J., Nicolas Marc E., Seneweera Saman
Environmental and Experimental Botany. 2013 88 p.71
Elevated CO2 (free-air CO2 enrichment) increases grain yield of aluminium-resistant but not aluminium-sensitive wheat (Triticum aestivum) grown in an acid soil
Dong Jinlong, Grylls Stephen, Hunt James, Armstrong Roger, Delhaize Emmanuel, Tang Caixian
Annals of Botany. 2019 123(3). p.461
Elevated atmospheric [CO2] can dramatically increase wheat yields in semi‐arid environments and buffer against heat waves
Fitzgerald Glenn J., Tausz Michael, O'Leary Garry, Mollah Mahabubur R., Tausz‐Posch Sabine, Seneweera Saman, Mock Ivan, Löw Markus, Partington Debra L., McNeil David, Norton Robert M.
Global Change Biology. 2016 22(6). p.2269
Long-term CO2 enrichment alters the diversity and function of the microbial community in soils with high organic carbon
Jin Jian, Wood Jen, Franks Ashley, Armstrong Roger, Tang Caixian
Soil Biology and Biochemistry. 2020 144 p.107780
Elevated CO2 has concurrent effects on leaf and grain metabolism but minimal effects on yield in wheat
Tcherkez Guillaume, Ben Mariem Sinda, Larraya Luis, García-Mina Jose M, Zamarreño Angel M, Paradela Alberto, Cui Jing, Badeck Franz-Werner, Meza Diego, Rizza Fulvia, Bunce James, Han Xue, Tausz-Posch Sabine, Cattivelli Luigi, Fangmeier Andreas, Aranjuelo Iker, Sharwood Robert
Journal of Experimental Botany. 2020 71(19). p.5990
Performance characteristics of an area distributed free air carbon dioxide enrichment (FACE) system
Bunce James A.
Agricultural and Forest Meteorology. 2011 151(8). p.1152
The effectiveness of nitrification inhibitor application on grain yield and quality, fertiliser nitrogen recovery and soil nitrous oxide emissions in a legume–wheat rotation under elevated carbon dioxide (FACE)
Sultana Humaira, Suter Helen C., Armstrong Roger, Nicolas Marc E., Chen Deli
Soil Research. 2018 56(2). p.145
Potential impact of elevated atmospheric carbon dioxide and climate change on Victorian wheat marketing grades and value
Korte Chris J., Wilson Patrick, Kearns Brian, Fitzgerald Glenn J., Panozzo Joe F., Walker Cassandra K., Christy Brendan, Nuttall James G., Armstrong Roger D., Tausz Michael, Leary Garry J. O'
Crop and Pasture Science. 2019 70(11). p.926
Narrowing uncertainties in the effects of elevated CO2 on crops
Toreti Andrea, Deryng Delphine, Tubiello Francesco N., Müller Christoph, Kimball Bruce A., Moser Gerald, Boote Kenneth, Asseng Senthold, Pugh Thomas A. M., Vanuytrecht Eline, Pleijel Håkan, Webber Heidi, Durand Jean-Louis, Dentener Frank, Ceglar Andrej, Wang Xuhui, Badeck Franz, Lecerf Remi, Wall Gerard W., van den Berg Maurits, Hoegy Petra, Lopez-Lozano Raul, Zampieri Matteo, Galmarini Stefano, O’Leary Garry J., Manderscheid Remy, Mencos Contreras Erik, Rosenzweig Cynthia
Nature Food. 2020 1(12). p.775
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
The effect of elevated CO2 on photochemistry and antioxidative defence capacity in wheat depends on environmental growing conditions – A FACE study
Tausz-Posch Sabine, Borowiak Klaudia, Dempsey Raymond W., Norton Robert M., Seneweera Saman, Fitzgerald Glenn J., Tausz Michael
Environmental and Experimental Botany. 2013 88 p.81
Assessing the Robustness of Vegetation Indices to Estimate Wheat N in Mediterranean Environments
Cammarano Davide, Fitzgerald Glenn, Casa Raffaele, Basso Bruno
Remote Sensing. 2014 6(4). p.2827
Machine learning produces higher prediction accuracy than the Jarvis-type model of climatic control on stomatal conductance in a dryland wheat agro-ecosystem
Houshmandfar Alireza, O'Leary Garry, Fitzgerald Glenn J, Chen Yang, Tausz-Posch Sabine, Benke Kurt, Uddin Shihab, Tausz Michael
Agricultural and Forest Meteorology. 2021 304-305 p.108423
(2022)
Fitzgerald Glenn J., Tausz Michael, Armstrong Roger, Panozzo Joe, Trębicki Piotr, Mollah Mahabubur, Tausz-Posch Sabine, Walker Cassandra, Nuttall James G., Bourgault Maryse, Löw Markus, Partington Debra, Butterly Clayton R., Lam Shu Kee, Norton Robert M., O'Leary Garry J.
‘Haying-off' in wheat is predicted to increase under a future climate in south-eastern Australia
Nuttall J. G., O'Leary G. J., Khimashia N., Asseng S., Fitzgerald G., Norton R.
Crop and Pasture Science. 2012 63(7). p.593
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
Influence of elevated atmospheric carbon dioxide and supplementary irrigation on greenhouse gas emissions from a spring wheat crop in southern Australia
LAM S. K., CHEN D., NORTON R., ARMSTRONG R., MOSIER A. R.
The Journal of Agricultural Science. 2013 151(2). p.201
Water use dynamics of dryland wheat grown under elevated CO2 with supplemental nitrogen
Uddin Shihab, Parvin Shahnaj, Armstrong Roger, Fitzgerald Glenn J., Löw Markus, Houshmandfar Alireza, Tavakkoli Ehsan, Tausz-Posch Sabine, O’Leary Garry J., Tausz Michael, Fukai Shu
Crop & Pasture Science. 2023 75(1).
Expression patterns of C- and N-metabolism related genes in wheat are changed during senescence under elevated CO2 in dry-land agriculture
Buchner Peter, Tausz Michael, Ford Rebecca, Leo Audrey, Fitzgerald Glenn J., Hawkesford Malcolm J., Tausz-Posch Sabine
Plant Science. 2015 236 p.239
Trade-offs between water-use related traits, yield components and mineral nutrition of wheat under Free-Air CO2 Enrichment (FACE)
Houshmandfar Alireza, Fitzgerald Glenn J., Macabuhay Allene A., Armstrong Roger, Tausz-Posch Sabine, Löw Markus, Tausz Michael
European Journal of Agronomy. 2016 76 p.66
Response of wheat growth, grain yield and water use to elevated CO2 under a Free‐Air CO2 Enrichment (FACE) experiment and modelling in a semi‐arid environment
O'Leary Garry J., Christy Brendan, Nuttall James, Huth Neil, Cammarano Davide, Stöckle Claudio, Basso Bruno, Shcherbak Iurii, Fitzgerald Glenn, Luo Qunying, Farre‐Codina Immaculada, Palta Jairo, Asseng Senthold
Global Change Biology. 2015 21(7). p.2670
Yield, growth and grain nitrogen response to elevated CO2 in six lentil (Lens culinaris) cultivars grown under Free Air CO2 Enrichment (FACE) in a semi-arid environment
Bourgault M., Brand J., Tausz-Posch S., Armstrong R.D., O’Leary G.L., Fitzgerald G.J., Tausz M.
European Journal of Agronomy. 2017 87 p.50
Elevated carbon dioxide changes grain protein concentration and composition and compromises baking quality. A FACE study
Panozzo J.F., Walker C.K., Partington D.L., Neumann N.C., Tausz M., Seneweera S., Fitzgerald G.J.
Journal of Cereal Science. 2014 60(3). p.461
Elevated CO2 alters grain quality of two bread wheat cultivars grown under different environmental conditions
Fernando Nimesha, Panozzo Joe, Tausz Michael, Norton Robert M., Neumann Nathan, Fitzgerald Glenn J., Seneweera Saman
Agriculture, Ecosystems & Environment. 2014 185 p.24
The response of commercially managed, field grown, grapevines (Vitis viniferaL.) to a simulated future climate consisting of elevated CO2in combination with elevated air temperature
Edwards E.J., Unwin D.J., Sommer K.J., Downey M.O., Mollah M.
Acta Horticulturae. 2016 (1115). p.103
Will intra‐specific differences in transpiration efficiency in wheat be maintained in a high CO2 world? A FACE study
Tausz‐Posch Sabine, Norton Robert M., Seneweera Saman, Fitzgerald Glenn J., Tausz Michael
Physiologia Plantarum. 2013 148(2). p.232
Can a wheat cultivar with high transpiration efficiency maintain its yield advantage over a near-isogenic cultivar under elevated CO2?
Tausz-Posch Sabine, Seneweera Saman, Norton Robert M., Fitzgerald Glenn J., Tausz Michael
Field Crops Research. 2012 133 p.160
Crop Adaptation to Climate Change (2011)
Seneweera S., Norton R. M.
Long-term effects of elevated CO2 on carbon and nitrogen functional capacity of microbial communities in three contrasting soils
Butterly Clayton R., Phillips Lori A., Wiltshire Jennifer L., Franks Ashley E., Armstrong Roger D., Chen Deli, Mele Pauline M., Tang Caixian
Soil Biology and Biochemistry. 2016 97 p.157
Systems Modeling (2020)
Kheir Ahmed Mohammed Saad, Ding Zheli, Ali Marwa Gamal Mohamed, Feike Til, Abdelaal Aly Ismail Nagib, Elnashar Abdelrazek
Elevated CO2 affects plant nitrogen and water‐soluble carbohydrates but not in vitro metabolisable energy
Panozzo Joe Francis, Walker Cassandra Kiely, Maharjan Pankaj, Partington Debra L., Korte Chris J.
Journal of Agronomy and Crop Science. 2019 205(6). p.647
Wheat grain quality under increasing atmospheric CO2 concentrations in a semi-arid cropping system
Fernando Nimesha, Panozzo Joe, Tausz Michael, Norton Robert M., Fitzgerald Glenn J., Myers Samuel, Walker Cassandra, Stangoulis James, Seneweera Saman
Journal of Cereal Science. 2012 56(3). p.684
Crop Adaptation to Climate Change (2011)
O'Leary Garry, Christy Brendan, Weeks Anna, Nuttall James, Riffkin Penny, Beverly Craig, Fitzgerald Glenn
Effect of a Heat Wave on Lentil Grown under Free‐Air CO2 Enrichment (FACE) in a Semi‐Arid Environment
Bourgault M., Löw M., Tausz‐Posch S., Nuttall J. G., Delahunty A. J., Brand J., Panozzo J. F., McDonald L., O'Leary G. J., Armstrong R. D., Fitzgerald G. J., Tausz M.
Crop Science. 2018 58(2). p.803
Regional disparities in the CO 2 fertilization effect and implications for crop yields
McGrath Justin M, Lobell David B
Environmental Research Letters. 2013 8(1). p.014054
Modelling stomatal conductance of wheat: An assessment of response relationships under elevated CO2
Houshmandfar Alireza, Fitzgerald Glenn J., Armstrong Roger, Macabuhay Allene A., Tausz Michael
Agricultural and Forest Meteorology. 2015 214-215 p.117
Carbon and nitrogen partitioning of wheat and field pea grown with two nitrogen levels under elevated CO2
Butterly Clayton R., Armstrong Roger, Chen Deli, Tang Caixian
Plant and Soil. 2015 391(1-2). p.367
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
Production and fitness of Fusarium pseudograminearum inoculum at elevated carbon dioxide in FACE
MELLOY PAUL, HOLLAWAY GRANT, LUCK JO, NORTON ROB, AITKEN ELIZABETH, CHAKRABORTY SUKUMAR
Global Change Biology. 2010 16(12). p.3363
Virus incidence in wheat increases under elevated CO2: A 4-year study of yellow dwarf viruses from a free air carbon dioxide facility
Trębicki Piotr, Nancarrow Narelle, Bosque-Pérez Nilsa A., Rodoni Brendan, Aftab Mohammad, Freeman Angela, Yen Alan, Fitzgerald Glenn J.
Virus Research. 2017 241 p.137
Water use and growth responses of dryland wheat grown under elevated [CO2] are associated with root length in deeper, but not upper soil layer
Uddin Shihab, Löw Markus, Parvin Shahnaj, Fitzgerald Glenn, Bahrami Helale, Tausz-Posch Sabine, Armstrong Roger, O’Leary Garry, Tausz Michael
Field Crops Research. 2018 224 p.170
Increased microbial activity under elevated [CO2] does not enhance residue decomposition in a semi-arid cropping system in Australia
Lam Shu Kee, Norton Rob, Armstrong Roger, Chen Deli
Soil Biology and Biochemistry. 2014 72 p.97
Rust-proofing wheat for a changing climate
Chakraborty Sukumar, Luck Jo, Hollaway Grant, Fitzgerald Glenn, White Neil
Euphytica. 2011 179(1). p.19
Increasing CO2 threatens human nutrition
Myers Samuel S., Zanobetti Antonella, Kloog Itai, Huybers Peter, Leakey Andrew D. B., Bloom Arnold J., Carlisle Eli, Dietterich Lee H., Fitzgerald Glenn, Hasegawa Toshihiro, Holbrook N. Michele, Nelson Randall L., Ottman Michael J., Raboy Victor, Sakai Hidemitsu, Sartor Karla A., Schwartz Joel, Seneweera Saman, Tausz Michael, Usui Yasuhiro
Nature. 2014 510(7503). p.139
Crop residue incorporation negates the positive effect of elevated atmospheric carbon dioxide concentration on wheat productivity and fertilizer nitrogen recovery
Lam Shu Kee, Chen Deli, Norton Rob, Armstrong Roger
Plant and Soil. 2013 366(1-2). p.551

Committee on Publication Ethics


Abstract Export Citation Get Permission