Improving productivity of Australian wheat by adapting sowing date and genotype phenology to future climate

被引:51
作者
Collins, Brian [1 ]
Chenu, Karine [1 ]
机构
[1] Univ Queensland, Queensland Alliance Agr & Food Innovat QAAFI, Toowoomba, Qld 4350, Australia
关键词
Climate change; Crop adaptation; Crop model; Global warming; Genotype x environment x management interaction; Maturity type; WATER-USE EFFICIENCY; GRAIN-YIELD; HEAT-STRESS; AGRICULTURAL PRODUCTION; CHANGE IMPACTS; ADAPTATION; FROST; CULTIVARS; SYSTEM; TRENDS;
D O I
10.1016/j.crm.2021.100300
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With global food demand predicted to grow by 50-80% by 2050, timely strategies are required to best adapt to the projected changes in agriculture. In this study, we illustrated how adaptation strategies not requiring additional inputs (sowing date and genotype choice) could be used to minimise the impact of projected stresses and raise wheat productivity in Australia. Yield and abiotic stresses impacting productivity of wheat crops were quantified in silico for the 1990s (1976-2005) and the 2050s (2036-2065) across the Australian wheatbelt using a modified version of the Agricultural Production Systems sIMulator (APSIM) and 33 Global Circulation Models (GCMs) under the Representative Concentration Pathways (RCP) 8.5. Two adaptation strategies were assessed: adaptation of sowing dates and/or adaptation of cultivars of contrasting phenology (i.e. fast-spring, mid-spring, slow-spring and fast-winter cultivars). For a given cultivar, optimum sowing windows associated with highest long-term yield were projected to shift to earlier dates by 2050 at most locations, with an average shift of 9.6 days for a mid-spring cultivar. Sowing early maturing cultivars enabled further increase in projected yield in major parts of the wheatbelt. In the tested conditions, sowing and cultivar adaptation allowed simulated crops to minimise the impact of abiotic stresses while limiting the shortening of the grain filling period due to global warming. Thanks to CO2 fertilisation and proper adaptation, the frequency of severe frost, heat and drought stress was reduced in all regions, except in the West where severe drought was projected to occur more frequently in the 2050s. This allowed a national yield increase of 4.6% with reduced risk of crop failure at most locations. While the study focused on stress avoidance through adaptations (sowing dates and choice of cultivar phenology), breeding for enhanced drought and heat tolerance appeared promising avenues to further improve wheat productivity.
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页数:18
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共 81 条
  • [51] Pournelle G. H., 1953, Journal of Mammalogy, V34, P133, DOI 10.1890/0012-9658(2002)083[1421:SDEOLC]2.0.CO
  • [52] 2
  • [53] Genotypic increases in coleoptile length improves stand establishment, vigour and grain yield of deep-sown wheat
    Rebetzke, G. J.
    Richards, R. A.
    Fettell, N. A.
    Long, M.
    Condon, A. G.
    Forrester, R. I.
    Botwright, T. L.
    [J]. FIELD CROPS RESEARCH, 2007, 100 (01) : 10 - 23
  • [54] Do wheat breeders have suitable genetic variation to overcome short coleoptiles and poor establishment in the warmer soils of future climates?
    Rebetzke, Greg J.
    Zheng, Bangyou
    Chapman, Scott C.
    [J]. FUNCTIONAL PLANT BIOLOGY, 2016, 43 (10) : 961 - 972
  • [55] A multisite managed environment facility for targeted trait and germplasm phenotyping
    Rebetzke, Greg J.
    Chenu, Karine
    Biddulph, Ben
    Moeller, Carina
    Deery, Dave M.
    Rattey, Allan R.
    Bennett, Dion
    Barrett-Lennard, Ed G.
    Mayer, Jorge E.
    [J]. FUNCTIONAL PLANT BIOLOGY, 2013, 40 (01) : 1 - 13
  • [56] Modelling global change impacts on wheat cropping in south-east Queensland, Australia
    Reyenga, PJ
    Howden, SM
    Meinke, H
    McKeon, GM
    [J]. ENVIRONMENTAL MODELLING & SOFTWARE, 1999, 14 (04) : 297 - 306
  • [57] Heat stress in cereals: Mechanisms and modelling
    Rezaei, Ehsan Eyshi
    Webber, Heidi
    Gaiser, Thomas
    Naab, Jesse
    Ewert, Frank
    [J]. EUROPEAN JOURNAL OF AGRONOMY, 2015, 64 : 98 - 113
  • [58] Yield improvement and adaptation of wheat to water-limited environments in Australia-a case study
    Richards, R. A.
    Hunt, J. R.
    Kirkegaard, J. A.
    Passioura, J. B.
    [J]. CROP & PASTURE SCIENCE, 2014, 65 (07) : 676 - 689
  • [59] Prospects for yield improvement in the Australian wheat industry: a perspective
    Robertson, Michael
    Kirkegaard, John
    Rebetzke, Greg
    Llewellyn, Rick
    Wark, Tim
    [J]. FOOD AND ENERGY SECURITY, 2016, 5 (02): : 107 - 122
  • [60] Critical water potentials for germination of wheat cultivars in the dryland Northwest USA
    Singh, Prabhakar
    Ibrahim, Hesham M.
    Flury, Markus
    Schillinger, William F.
    Knappenberger, Thorsten
    [J]. SEED SCIENCE RESEARCH, 2013, 23 (03) : 189 - 198