Item - Research Publications, Montana State University (MSU)
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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, Maryse [ Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, 4 Water St, Creswick, VIC 3363, Australia ] [ Montana State University: Research Centers ]
Brand, J. [ Agriculture Victoria,Grains Innovation Park, 110 Natimuk Rd, Horsham, VIC, 3401, Australia ]
Tausz-Posch, S. [ Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, 4 Water St, Creswick, VIC 3363, Australia ] [ School of Biosciences, University of Birmingham, Birmingham B15 2TT, UK ]
Armstrong, R.D. [ Agriculture Victoria,Grains Innovation Park, 110 Natimuk Rd, Horsham, VIC, 3401, Australia ]
O’Leary, G.L. [ Agriculture Victoria,Grains Innovation Park, 110 Natimuk Rd, Horsham, VIC, 3401, Australia ]
Fitzgerald, G.J. [ Agriculture Victoria,Grains Innovation Park, 110 Natimuk Rd, Horsham, VIC, 3401, Australia ]
Tausz, M. [ Faculty of Science, The University of Melbourne, 4 Water St, Creswick, VIC, 3363, Australia ] [ Birmingham Institute of Forest Research, University of Birmingham, Birmingham B15 2TT, UK ]
Atmospheric CO2 concentrations ([CO2]) are predicted to increase from current levels of about 400ppm to reach 550ppm by 2050. The direct benefits of elevated [CO2] (e[CO2]) to plant growth appear to be greater under low rainfall conditions, but there are few field (Free Air CO2 Enrichment or FACE) experimental set-ups that directly address semi-arid conditions. The objectives of this study were to investigate the following research questions: 1) What are the effects of e[CO2] on the growth and grain yield of lentil (Lens culinaris) grown under semi-arid conditions under FACE? 2) Does e[CO2] decrease grain nitrogen in lentil? and 3) Is there genotypic variability in the response to e[CO2] in lentil cultivars? Elevated [CO2] increased yields by approximately 0.5tha−1 (relative increase ranging from 18 to 138%) by increasing both biomass accumulation (by 32%) and the harvest index (by up to 60%). However, the relative response of grain yield to e[CO2] was not consistently greater under dry conditions and might depend on water availability post-flowering. Grain nitrogen concentration was significantly reduced by e[CO2] under the conditions of this experiment. No differences were found between the cultivars selected in the response to elevated [CO2] for grain yield or any other parameters observed despite well expressed genotypic variability in many traits of interest. Biomass accumulation from flowering to maturity was considerably increased by elevated [CO2] (a 50% increase) which suggests that the indeterminate growth habit of lentils provides vegetative sinks in addition to reproductive sinks during the grain-filling period.