Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Plant nutrient acquisition and utilisation in a high carbon dioxide world

T. R. Cavagnaro A C , R. M. Gleadow A and R. E. Miller A B
+ Author Affiliations
- Author Affiliations

A School of Biological Sciences, Monash University, Clayton, Vic. 3800, Australia.

B The Australian Centre for Biodiversity, Monash University, Clayton, Vic. 3800, Australia.

C Corresponding author. Email: timothy.cavagnaro@monash.edu

Functional Plant Biology 38(2) 87-96 https://doi.org/10.1071/FP10124
Submitted: 4 June 2010  Accepted: 18 November 2010   Published: 1 February 2011



43 articles found in Crossref database.

Increased photosynthetic acclimation in alfalfa associated with arbuscular mycorrhizal fungi (AMF) and cultivated in greenhouse under elevated CO2
Goicoechea Nieves, Baslam Marouane, Erice Gorka, Irigoyen Juan José
Journal of Plant Physiology. 2014 171(18). p.1774
Variations in the Chemical Composition of Cassava (Manihot esculenta Crantz) Leaves and Roots As Affected by Genotypic and Environmental Variation
Burns Anna Elizabeth, Gleadow Roslyn Margaret, Zacarias Anabela M., Cuambe Constantino Estevão, Miller Rebecca Elizabeth, Cavagnaro Timothy Richard
Journal of Agricultural and Food Chemistry. 2012 60(19). p.4946
Age versus stage: does ontogeny modify the effect of phosphorus and arbuscular mycorrhizas on above‐ and below‐ground defence in forage sorghum?
MILLER REBECCA E., GLEADOW ROSLYN M., CAVAGNARO TIMOTHY R.
Plant, Cell & Environment. 2014 37(4). p.929
Predicting community and ecosystem outcomes of mycorrhizal responses to global change
Johnson Nancy C., Angelard Caroline, Sanders Ian R., Kiers E. Toby, Klironomos John
Ecology Letters. 2013 16(s1). p.140
Elevated CO2 may impair the beneficial effect of arbuscular mycorrhizal fungi on the mineral and phytochemical quality of lettuce
Baslam Marouane, Garmendia Idoia, Goicoechea Nieves
Annals of Applied Biology. 2012 161(2). p.180
Elevated CO2 interacts with nutrient inputs to restructure plant communities in phosphorus‐limited grasslands
Taylor Christopher R., England Luke C., Keane J. Ben, Davies Jessica A. C., Leake Jonathan R., Hartley Iain P., Smart Simon M., Janes‐Bassett Victoria, Phoenix Gareth K.
Global Change Biology. 2024 30(1).
Arbuscular mycorrhizal fungi impact on yield attributes, protein quantity and quality in bread wheat ( Triticum aestivum L.) grown under drought stress
Abdi Neila, Van Biljon Angeline, Steyn Chrisna, Labuschagne Maryke
Arid Land Research and Management. 2024  p.1
Cash Crops (2022)
Karun Anitha, Ramesh S. V., Rajesh M. K., Niral V., Sudha R., Muralikrishna K. S.
Crops for a future climate
Gleadow Roslyn, Johnson Alexander, Tausz Michael
Functional Plant Biology. 2013 40(2). p.iii
Plant Specialized Metabolism (2016)
Cassava about‐FACE: Greater than expected yield stimulation of cassava (Manihot esculenta) by future CO2 levels
Rosenthal David M., Slattery Rebecca A., Miller Rebecca E., Grennan Aleel K., Cavagnaro Timothy R., Fauquet Claude M., Gleadow Roslyn M., Ort Donald R.
Global Change Biology. 2012 18(8). p.2661
Growth and metabolism of onion seedlings as affected by the application of humic substances, mycorrhizal inoculation and elevated CO2
Bettoni Marcelle M., Mogor Átila F., Pauletti Volnei, Goicoechea Nieves
Scientia Horticulturae. 2014 180 p.227
Impact of arbuscular mycorrhizal fungi (AMF) and atmospheric CO2 concentration on the biomass production and partitioning in the forage legume alfalfa
Baslam Marouane, Erice Gorka, Goicoechea Nieves
Symbiosis. 2012 58(1-3). p.171
Role of Arbuscular Mycorrhiza in Alleviating Salinity Stress in Wheat (Triticum aestivum L.) Grown Under Ambient and Elevated CO2
Zhu X., Song F., Liu S., Liu F.
Journal of Agronomy and Crop Science. 2016 202(6). p.486
Climate change and multitrophic interactions in soil: the primacy of plants and functional domains
Chakraborty Sukumar, Pangga Ireneo B., Roper Margaret M.
Global Change Biology. 2012 18(7). p.2111
Cyanogenic Glycosides: Synthesis, Physiology, and Phenotypic Plasticity
Gleadow Roslyn M., Møller Birger Lindberg
Annual Review of Plant Biology. 2014 65(1). p.155
Arbuscular mycorrhiza enhances nutrient accumulation in wheat exposed to elevated CO2 and soil salinity
Zhu Xiancan, Song Fengbin, Liu Shengqun, Liu Fulai, Li Xiangnan
Journal of Plant Nutrition and Soil Science. 2018 181(6). p.836
Arbuscular mycorrhiza improve growth, nitrogen uptake, and nitrogen use efficiency in wheat grown under elevated CO2
Zhu Xiancan, Song Fengbin, Liu Shengqun, Liu Fulai
Mycorrhiza. 2016 26(2). p.133
Over-expressing the C3 photosynthesis cycle enzyme Sedoheptulose-1-7 Bisphosphatase improves photosynthetic carbon gain and yield under fully open air CO2fumigation (FACE)
Rosenthal David M, Locke Anna M, Khozaei Mahdi, Raines Christine A, Long Stephen P, Ort Donald R
BMC Plant Biology. 2011 11(1).
Responsiveness of Durum Wheat to Mycorrhizal Inoculation Under Different Environmental Scenarios
Garmendia Idoia, Gogorcena Yolanda, Aranjuelo Iker, Goicoechea Nieves
Journal of Plant Growth Regulation. 2017 36(4). p.855
Coping with insularity: the need for crop genetic improvement to strengthen adaptation to climatic change and food security in the Pacific
Lebot Vincent
Environment, Development and Sustainability. 2013 15(6). p.1405
Enhanced Accumulation of Vitamins, Nutraceuticals and Minerals in Lettuces Associated with Arbuscular Mycorrhizal Fungi (AMF): A Question of Interest for Both Vegetables and Humans
Baslam Marouane, Garmendia Idoia, Goicoechea Nieves
Agriculture. 2013 3(1). p.188
Photorespiration and nitrate assimilation: a major intersection between plant carbon and nitrogen
Bloom Arnold J.
Photosynthesis Research. 2015 123(2). p.117
Conservation and Utilization of Horticultural Genetic Resources (2019)
Karun Anitha, Niral V.
Quantification and uncertainty of root growth stimulation by elevated CO2 in a mature temperate deciduous forest
Ziegler Clare, Kulawska Aleksandra, Kourmouli Angeliki, Hamilton Liz, Shi Zongbo, MacKenzie A. Rob, Dyson Rosemary J., Johnston Iain G.
Science of The Total Environment. 2023 854 p.158661
Plant growth responses to elevated atmospheric CO2are increased by phosphorus sufficiency but not by arbuscular mycorrhizas
Jakobsen Iver, Smith Sally E., Smith F. Andrew, Watts-Williams Stephanie J., Clausen Signe S., Grønlund Mette
Journal of Experimental Botany. 2016 67(21). p.6173
Genomic Designing for Abiotic Stress Resistant Technical Crops (2022)
Ramesh S. V., Arunachalam V., Ramos Semíramis Rabelo Ramalho, Muralikrishna K. S., Paulraj S., Rajesh M. K.
Arbuscular mycorrhiza: a viable strategy for soil nutrient loss reduction
Parihar Manoj, Meena Vijay Singh, Mishra Pankaj Kumar, Rakshit Amitava, Choudhary Mahipal, Yadav Ram Prakash, Rana Kiran, Bisht Jaideep Kumar
Archives of Microbiology. 2019 201(6). p.723
Plant Nutrition and Food Security in the Era of Climate Change (2022)
Kundu Pravesh, Goel Komal, Zinta Gaurav
Beneficial Plant-microbial Interactions (2013)
Baslam M, Pascula I, Sánchez-Díaz M, Goicoechea N
Phosphorus availability and arbuscular mycorrhizal fungi limit soil C cycling and influence plant responses to elevated CO2 conditions
Castañeda-Gómez L., Powell J. R., Pendall E., Carrillo Y.
Biogeochemistry. 2022 160(1). p.69
Environmental Factors Regulate Plant Secondary Metabolites
Qaderi Mirwais M., Martel Ashley B., Strugnell Courtney A.
Plants. 2023 12(3). p.447
Climate Change and Nutrition: Implications for the Eastern Mediterranean Region
Al-Jawaldeh Ayoub, Nabhani Maya, Taktouk Mandy, Nasreddine Lara
International Journal of Environmental Research and Public Health. 2022 19(24). p.17086
Drought-induced changes in nitrogen partitioning between cyanide and nitrate in leaves and stems of sorghum grown at elevated CO2 are age dependent
Gleadow R.M., Ottman M.J., Kimball B.A., Wall G.W., Pinter P.J., LaMorte R.L., Leavitt S.W.
Field Crops Research. 2016 185 p.97
Soil phosphorus availability is a driver of the responses of maize (Zea mays) to elevated CO2 concentration and arbuscular mycorrhizal colonisation
Watts-Williams Stephanie J, Andrew Smith F, Jakobsen Iver
Symbiosis. 2019 77(1). p.73
Above‐ and below‐ground responses of Calamagrostis purpurea to UV‐B radiation and elevated CO2 under phosphorus limitation
Bussell Jenny S., Gwynn‐Jones Dylan, Griffith Gareth W., Scullion John
Physiologia Plantarum. 2012 145(4). p.619
Genomics and Breeding for Climate-Resilient Crops (2013)
McDonald Glenn, Bovill William, Huang Chunyuan, Lightfoot David
Funneliformis mosseae Improves Growth and Nutrient Accumulation in Wheat by Facilitating Soil Nutrient Uptake under Elevated CO2 at Daytime, Not Nighttime
Shi Songmei, Luo Xie, Wen Miao, Dong Xingshui, Sharifi Sharifullah, Xie Deti, He Xinhua
Journal of Fungi. 2021 7(6). p.458
Theory and application for the promotion of wheat production in China: past, present and future
Xu Zhenzhu, Yu Zhenwen, Zhao Junye
Journal of the Science of Food and Agriculture. 2013 93(10). p.2339
Pearl millet growth and biochemical alterations determined by mycorrhizal inoculation, water availability and atmospheric CO2 concentration
Fabbrin Eliseu G., Gogorcena Yolanda, Mogor Átila F., Garmendia Idoia, Goicoechea Nieves
Crop and Pasture Science. 2015 66(8). p.831
Air Pollution and Environmental Health (2020)
Gupta Gyan Prakash
The Critical Role of Arbuscular Mycorrhizal Fungi to Improve Drought Tolerance and Nitrogen Use Efficiency in Crops
Tang Haiying, Hassan Muhammad Umair, Feng Liang, Nawaz Muhammad, Shah Adnan Noor, Qari Sameer H., Liu Ying, Miao Jianqun
Frontiers in Plant Science. 2022 13
Estimated Effects of Future Atmospheric CO2 Concentrations on Protein Intake and the Risk of Protein Deficiency by Country and Region
Medek Danielle E., Schwartz Joel, Myers Samuel S.
Environmental Health Perspectives. 2017 125(8).

Committee on Publication Ethics


Abstract Export Citation Get Permission