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Journal of Plant Physiology|August 14, 2018
The water use dynamics of canola cultivars grown under elevated CO<sub>2</sub> are linked to their leaf area developmentShihab Uddin, Shahnaj Parvin, Markus Löw, et al.The Science of the Total Environment|March 7, 2025
Long-term free-air-CO<sub>2</sub>-enrichment increases carbon distribution in the stable fraction in the deep layer of non-clay soilsYunyun Zheng, Jian Jin, Roger Armstrong, et al.Plos One|June 15, 2018
Elevated [CO2] mitigates the effect of surface drought by stimulating root growth to access sub-soil waterShihab Uddin, Markus Löw, Shahnaj Parvin, et al.Plant, Cell & Environment|June 3, 2018
Water availability moderates N<sub>2</sub> fixation benefit from elevated [CO<sub>2</sub> ]: A 2-year free-air CO<sub>2</sub> enrichment study on lentil (Lens culinaris MEDIK.) in a water limited agroecosystemShahnaj Parvin, Shihab Uddin, Maryse Bourgault, et al.Journal of Plant Physiology|June 3, 2017
The proportion of nitrate in leaf nitrogen, but not changes in root growth, are associated with decreased grain protein in wheat under elevated [CO<sub>2</sub>]Helale Bahrami, Luit J De Kok, Roger Armstrong, et al.Environmental Science & Technology|May 8, 2024
Shining a Light on How Soil Organic Carbon Behaves at Fine Scales under Long-Term Elevated CO<sub>2</sub>: An 8 Year Free-Air Carbon Dioxide Enrichment StudyZhe H Weng, Peter M Kopittke, Steffen Schweizer, et al.Frontiers in Plant Science|November 10, 2022
Identification of agro-physiological traits of lentil that reduce risks of droughtAbeya Temesgen Tefera, Garry J O'Leary, Thabo Thayalakumaran, et al.Frontiers in Plant Science|September 12, 2022
Breeding has selected for architectural and photosynthetic traits in lentilsViridiana Silva-Perez, Arun S K Shunmugam, Shiwangni Rao, et al.Pageof 2