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

High crop productivity with high water use in winter and summer on the Liverpool Plains, eastern Australia

R. R. Young A C , P.-J. Derham A , F. X. Dunin B , A. L. Bernardi A and S. Harden A
+ Author Affiliations
- Author Affiliations

A NSW Department of Primary Industries, Tamworth Agricultural Institute, 4 Marsden Park Road, Calala, NSW 2340, Australia.

B CSIRO Plant Industry, PO Box 5, Wembley 6913, Australia.

C Corresponding author. Email: rick.young@dpi.nsw.gov.au

Australian Journal of Agricultural Research 59(4) 303-320 https://doi.org/10.1071/AR07138
Submitted: 3 April 2007  Accepted: 14 January 2008   Published: 8 April 2008

Abstract

We report exceptional productivity and associated water-use efficiency across seasons for commercial crops of rainfed spring wheat and grain sorghum growing on stored soil water in Vertosols on the Liverpool Plains, central-eastern Australia. Agreement between the independently measured terms of evapotranspiration (ET) and the soil water balance (in-crop rainfall + δsoil water) was achieved within acceptable uncertainty across almost all measurement intervals, to provide a reliable dataset for the analysis of growth and water-use relationships without the confounding influence of water outflow either overland or within the soil. Post-anthesis intrinsic transpiration efficiency (kc ) values of 4.7 and 7.2 Pa for wheat and sorghum, respectively, and grain yields of 8 and 7 t/ha from ET of 450 and 442 mm (1.8 and 1.6 g/m2.mm), clearly demonstrate the levels of productivity and water-use efficiency possible for well-managed crops within an intensive and productive response cropping sequence. The Vertosols in which the crops were grown enabled rapid and apparently unconstrained delivery of significant quantities of subsoil water (34% and 51% of total available) after anthesis, which enabled a doubling of pre-anthesis standing biomass and harvest indices of almost 50%. Durum wheat planted into only 0.30 m of moist soil and enduring lower than average seasonal rainfall, yielded less biomass and grain (2.3 t/ha) with lower water-use efficiency (0.95 g/m2.mm) but larger transpiration efficiency, probably due to reduced stomatal conductance. We argue that crop planting in response to stored soil water and management for high water-use efficiency to achieve high levels of average productivity of crop sequences over time can have a significant effect on both increased productivity and enhanced hydrological stability across alluvial landscapes.


Acknowledgments

We thank Neil, Kaye, Geoff, and Kelly Barwick for their generous hospitality, helpful discussions, provision of records, and access to the Yarrabah paddocks, and Robert Duddy for access to the Hudson paddock. We are particularly grateful to Grace Connor and Harry Rose for their tireless efforts in keeping the Bowen ratio units alive, to Anthony Ringrose-Voase for use of his material coordinates correction of soil water, and to Ross McLeod and Michael Honess for technical assistance. We thank Malem McLeod, Sean Murphy, and an anonymous referee for very helpful comments on the draft manuscript. We gratefully acknowledge funding from the GRDC and Salt Action, and support from the North West Catchment Management Committee and the Liverpool Plains Land Management Committee.


References


Abbs K, Littleboy M (1998) Recharge estimation for the Liverpool Plains. Australian Journal of Soil Research 36, 335–357.
Crossref | GoogleScholarGoogle Scholar | open url image1

Acworth RI, Jankowski J (1997) The relationship between bulk electrical conductivity and dryland salinity in the Narrabri Formation at Breeza, Liverpool Plains, New South Wales, Australia. Hydrogeology Journal 5, 109–123.
Crossref | GoogleScholarGoogle Scholar | open url image1

Adams JE, Arkin GF, Ritchie JT (1976) Influence of row spacing and straw mulch on first stage drying. Soil Science Society of America Journal 40, 436–442. open url image1

Allen RG , Pereira LS , Raes D , Smith M (1998) ‘Crop evapotranspiration: guidelines for computing crop water requirements.’ FAO irrigation and drainage paper 56. (FAO: Rome)

Angus JF, van Herwaarden AF (2001) Increasing wateruse and water use efficiency in dryland wheat. Agronomy Journal 93, 290–298. open url image1

Angus JF, Nix HA, Russell JS, Kruizinga JE (1980) Water use, growth and yield of wheat in a subtropical environment. Australian Journal of Agricultural Research 31, 873–886.
Crossref | GoogleScholarGoogle Scholar | open url image1

Armstrong RD, McCosker K, Millar G, Kuskopf B, Johnson S, Walsh K, Probert ME, Standley J (1999) Legume and opportunity cropping systems in central Queensland. 2. Effect of legumes on following crops. Australian Journal of Agricultural Research 50, 925–936.
Crossref | GoogleScholarGoogle Scholar | open url image1

Asseng S, Dunin FX, Fillery IRP, Tennant D, Keating BA (2001) Potential deep drainage under wheat crops in a Mediterranean climate. II. Management opportunities to control drainage. Australian Journal of Agricultural Research 52, 57–66.
Crossref | GoogleScholarGoogle Scholar | open url image1

Banks RG (1995) ‘Soil landscapes of the Curlewis 1:100,000 sheet.’ (Department of Land and Water Conservation: Sydney, NSW)

Bremner PM, Preston GK (1990) A field comparison of sunflower (Helianthus annuus) and sorghum (Sorghum bicolor) in a long drying cycle. II. Plant water relations, growth and yield. Australian Journal of Agricultural Research 41, 463–478.
Crossref | GoogleScholarGoogle Scholar | open url image1

Bremner PM, Preston GK, St Groth CF (1986) A field comparison of sunflower (Helianthus annuus) and sorghum (Sorghum bicolor) in a long drying cycle. I. Water extraction. Australian Journal of Agricultural Research 37, 483–493.
Crossref | GoogleScholarGoogle Scholar | open url image1

Broughton A (1994) Mooki River Catchment hydrogeological investigation and dryland salinity studies—Liverpool Plains, New South Wales. Department of Water Resources TS94.026, Barwon Region.

Condon AG, Richards RA, Rebetzke GJ, Farquhar GD (2002) Improving intrinsic water-use efficiency and crop yield. Crop Science 42, 122–131.
PubMed |
open url image1

Connolly RD, Freebairn DM, Bridge BJ (1997) Change in infiltration characteristics associated with cultivation history of soils in south-eastern Queensland. Australian Journal of Soil Research 35, 1341–1358.
Crossref | GoogleScholarGoogle Scholar | open url image1

Dalal RC, Strong WM, Weston EJ, Cooper JE, Wildermuth GB, Lehane KJ, King AJ, Holmes CJ (1998) Sustaining productivity of a Vertisol at Warra, Queensland, with fertilisers, no-tillage, or legumes. 5. Wheat yields, nitrogen benefits and water-use efficiency of chickpea–wheat rotation. Australian Journal of Experimental Agriculture 38, 489–501.
Crossref | GoogleScholarGoogle Scholar | open url image1

Dang YP, Routley R, McDonald M, Dalal RC, Singh DK, Orange D, Mann M (2006) Subsoil constraints in Vertosols: crop water use, nutrient concentration, and grain yields of bread wheat, durum wheat, barley, chickpea, and canola. Australian Journal of Agricultural Research 57, 983–998.
Crossref | GoogleScholarGoogle Scholar | open url image1

Daniells IG, Holland JF, Young RR, Alston CL, Bernardi AL (2001) Relationship between yield of grain sorghum (Sorghum bicolor) and soil salinity under field conditions. Australian Journal of Experimental Agriculture 41, 211–217.
Crossref | GoogleScholarGoogle Scholar | open url image1

Davies WJ, Zhang JH (1991) Root signals and the regulation of growth and development of plants in drying soils. Annual Review of Plant Physiology and Plant Molecular Biology 42, 55–76.
Crossref | GoogleScholarGoogle Scholar | open url image1

Denmead OT, Shaw RH (1960) The effects of soil moisture stress at different stages of growth on the development and yield of corn. Agronomy Journal 52, 272–274. open url image1

Denmead OT , Dunin FX , Leuning R , Raupach MR (1996) Measuring and modeling soil evaporation in wheat crops. 21st European-Geophysical-Society General Assembly, The Hague, The Netherlands. Physics and Chemistry of the Earth 21, 97–100.

Doyle AD, Fischer RA (1979) Dry matter accumulation and water use relationships in wheat crops. Australian Journal of Agricultural Research 30, 815–829.
Crossref | GoogleScholarGoogle Scholar | open url image1

Dunin FX, Smith CJ, Zegelin SJ, Leuning R, Denmead OT, Poss R (2001) Water balance changes in a crop sequence with lucerne. (Special issue: Towards a farming future: water control by perennials in cropland). Australian Journal of Agricultural Research 52, 247–261.
Crossref | GoogleScholarGoogle Scholar | open url image1

Felton WL, Marcellos H, Alston C, Martin RJ, Backhouse D, Burgess LW, Herridge DF (1998) Chickpea in wheat-based cropping systems of northern New South Wales II. Influence on biomass, grain yield, and crown rot in the following wheat crop. Australian Journal of Agricultural Research 49, 401–407.
Crossref | GoogleScholarGoogle Scholar | open url image1

Fischer KS, Wilson GL (1975) Studies of grain production in Sorghum bicolor (L. Moench). 5. Effect of planting density on growth and yield. Australian Journal of Agricultural Research 26, 31–41.
Crossref | GoogleScholarGoogle Scholar | open url image1

Fischer RA (1979) Growth and water limitation to dryland wheat yield in Australia: a physiological framework. Journal of the Australian Institute of Agricultural Science 45, 83–94. open url image1

Fischer RA, Kohn GD (1966) The relationship between evapotranspiration and growth in the wheat crop. Australian Journal of Agricultural Research 17, 255–267.
Crossref | GoogleScholarGoogle Scholar | open url image1

Fischer RA, Turner NC (1978) Plant productivity in the arid and semiarid zones. Annual Review of Plant Physiology 29, 277–317.
Crossref | GoogleScholarGoogle Scholar | open url image1

French RJ, Schultz JE (1984) Water use efficiency of wheat in a Mediterranean-type environment. I. The relation between yield, water use and climate. Australian Journal of Agricultural Research 35, 743–764.
Crossref | GoogleScholarGoogle Scholar | open url image1

Herridge DF, Holland JF (1992) Production of summer crops in northern New South Wales. I. Effects of tillage and double cropping on growth, grain and N yields of six crops. Australian Journal of Agricultural Research 43, 105–122.
Crossref | GoogleScholarGoogle Scholar | open url image1

Hirth JR, Haines PJ, Ridley AM, Wilson KF (2001) Lucerne in crop rotations on the Riverine Plains. 2. Biomass and grain yields, water use efficiency, soil nitrogen, and profitability. (Special issue: Towards a farming future: water control by perennials in cropland). Australian Journal of Agricultural Research 52, 279–293.
Crossref | GoogleScholarGoogle Scholar | open url image1

Holland JF, Felton WL (1989) Effect of tillage practice on grain sorghum production in northern New South Wales. Australian Journal of Experimental Agriculture 29, 843–848.
Crossref | GoogleScholarGoogle Scholar | open url image1

Holland JF, Herridge DF (1992) Production of summer crops in northern New South Wales. II. Effects of tillage and crop rotation on yields of sorghum. Australian Journal of Agricultural Research 43, 123–134.
Crossref | GoogleScholarGoogle Scholar | open url image1

Incerti M, Sale PWG, O’Leary GJ (1993) Cropping practices in the Victorian Mallee. 2. Effect of long fallows on the water economy and the yield of wheat. Australian Journal of Experimental Agriculture 33, 885–894.
Crossref | GoogleScholarGoogle Scholar | open url image1

Inman-Bamber NG, McGlinchey MG (2003) Crop coefficients and water-use estimates for sugarcane based on long-term Bowen ratio energy balance measurements. Field Crops Research 83, 125–138.
Crossref | GoogleScholarGoogle Scholar | open url image1

Isbell RF (1996) ‘The Australian Soil Classification.’ (CSIRO Publishing: Melbourne, Vic.)

Keating BA, Robertson MJ, Muchow RC, Huth NI (1999) Modelling sugarcane production systems I. Development and performance of the sugarcane module. Field Crops Research 61, 253–271.
Crossref | GoogleScholarGoogle Scholar | open url image1

Kemanian AR, Stöckle CO, Huggins DR (2005) Transpiration-use efficiency of barley. Agricultural and Forest Meteorology 130, 1–11.
Crossref | GoogleScholarGoogle Scholar | open url image1

Kenward MG (1987) A method of comparing profiles of repeated measurements. Applied Statistics 36, 266–308. open url image1

Kirkegaard JA, Simpfendorfer S, Holland J, Bambach R, Moore KJ, Rebetzke GJ (2004) Effects of previous crops on crown rot and yield of durum and bread wheat in northern NSW. Australian Journal of Agricultural Research 55, 321–334.
Crossref | GoogleScholarGoogle Scholar | open url image1

Kneipp J , Serafin L (2006) Grain sorghum: NSW planting guide 2006–07. NSW Department of Primary Industries. Primefact 266. Available at: www.dpi.nsw.gov.au

Lehane JJ, Staple WJ (1962) Effects of soil moisture tensions on growth of wheat. Canadian Journal of Soil Science 42, 180–188. open url image1

Lehane JJ, Staple WJ (1965) Influence of soil texture, depth of soil moisture storage, and rainfall distribution on wheat yields in south-western Saskatchewan. Canadian Journal of Soil Science 45, 207–219. open url image1

Leuning R, Condon AG, Dunin FX, Zegelin S, Denmead OT (1994) Rainfall interception and evaporation from soil below a wheat canopy. Agricultural and Forest Meteorology 67, 221–238.
Crossref | GoogleScholarGoogle Scholar | open url image1

Li Y, Tullberg JN, Freebairn DM (2001) Traffic and residue cover effects on infiltration. Australian Journal of Soil Research 39, 239–247.
Crossref | GoogleScholarGoogle Scholar | open url image1

Mason WK, Meyer WS, Smith RCG, Barrs HD (1983) Water balance of three irrigated crops on fine-textured soils of the Riverine Plain. Australian Journal of Agricultural Research 34, 183–191.
Crossref | GoogleScholarGoogle Scholar | open url image1

McIlroy IC (1971) An instrument for continuous recording of natural evaporation. Agricultural Meteorology 9, 93–100.
Crossref | GoogleScholarGoogle Scholar | open url image1

McInnes-Clarke SK (2002) ‘Soil landscapes of the Murrurundi 1:100,000 sheet.’ (Department of Land and Water Conservation: Sydney, NSW)

Nix HA, Fitzpatrick EA (1969) An index of crop water stress related to wheat and grain sorghum yields. Agricultural Meteorology 6, 321–337.
Crossref | GoogleScholarGoogle Scholar | open url image1

Ohmura A (1982) Objective criteria for rejecting data for Bowen ratio flux calculations. Journal of Applied Meteorology 21, 595–598.
Crossref | GoogleScholarGoogle Scholar | open url image1

O’Leary GJ, Connor DJ, White DH (1985) Effect of sowing time on growth, yield and water-use of rain-fed wheat in the Wimmera, Vic. Australian Journal of Agricultural Research 36, 187–196.
Crossref | GoogleScholarGoogle Scholar | open url image1

Passioura JB (1976) Physiology of grain yield in wheat growing on stored water. Australian Journal of Plant Physiology 3, 559–565. open url image1

Paydar Z, Huth N, Ringrose-Voase A, Young R, Bernardi T, Keating B, Cresswell H (2005) Deep drainage and land use systems. Model verification and systems comparison. Australian Journal of Agricultural Research 56, 995–1007.
Crossref | GoogleScholarGoogle Scholar | open url image1

Priestley CHB, Taylor RJ (1972) On the assessment of surface heat flux and evaporation using large-scale parameters. Monthly Weather Review 100, 81–92.
Crossref | GoogleScholarGoogle Scholar | open url image1

Ridley AM, Christy B, Dunin FX, Haines PJ, Wilson KF, Ellington A (2001) Lucerne in crop rotations on the Riverine Plains. 1. The soil water balance. (Special issue: Towards a farming future: water control by perennials in cropland). Australian Journal of Agricultural Research 52, 263–277.
Crossref | GoogleScholarGoogle Scholar | open url image1

Ringrose-Voase AJ , Young RR , Paydar Z , Huth NI , Bernardi AL , et al . (2003) Deep drainage under different land uses in the Liverpool Plains Catchment. Agricultural Resource Management Report Series 3, New South Wales Agriculture, Orange, NSW, Australia.

Ritchie JT (1983) Efficient water use in crop production: discussion on the generality of relations between biomass production and evapotranspiration. In ‘Limitations to efficient water use in crop production’. (Eds HM Taylor, WR Jordan, TR Sinclair) pp. 29–44. (ASA, CSSA, SSSA: Madison WI)

Ritchie JT, Burnett E (1971) Dryland evaporative flux in a subhumid climate: II. Plant influences. Agronomy Journal 63, 56–62. open url image1

Sadras VO, Angus JF (2006) Benchmarking water-use efficiency of rainfed wheat in dry environments. Australian Journal of Agricultural Research 57, 847–856.
Crossref | GoogleScholarGoogle Scholar | open url image1

Shunqing A, Gengshan L, Anhong G (2003) Consumption of available soil water stored at planting by winter wheat. Agricultural Water Management 63, 99–107.
Crossref | GoogleScholarGoogle Scholar | open url image1

Stewart BA, Musick JT, Dusek DA (1983) Yield and water use efficiency of grain sorghum in a limited irrigation-dryland farming system. Agronomy Journal 75, 629–634. open url image1

Sun H, Cornish PS (2006) A catchment-based approach to recharge estimation in the Liverpool Plains, NSW, Australia. Australian Journal of Agricultural Research 57, 309–320.
Crossref | GoogleScholarGoogle Scholar | open url image1

Tanner CB , Sinclair TR (1983) Efficient water use in crop production: research or re-search? In ‘Limitations to efficient water use in crop production’. (Eds HM Taylor, WR Jordan, TR Sinclair) pp. 1–27. (ASA, CSSA, SSSA: Madison, WI)

Tattari S, Ikonen JP, Sucksdorff Y (1995) A comparison of evapotranspiration above a barley field based on quality tested Bowen ratio data and Deardorff modelling. Journal of Hydrology 170, 1–14.
Crossref | GoogleScholarGoogle Scholar | open url image1

Thompson JP (1987) Decline of vesicular-arbuscular mycorrhizae in long fallow disorder of field crops and its expression in phosphorus deficiency of sunflower. Australian Journal of Agricultural Research 38, 847–867.
Crossref | GoogleScholarGoogle Scholar | open url image1

Timms W (1998) Hydraulic linkages between shallow saline groundwaters and pressurised alluvial aquifers on the Liverpool Plains, New South Wales. NSW Department of Land and Water Conservation, Centre for Natural Resources Research Report T2816, Sydney, NSW.

Tolk JA, Howell TA (2003) Water use efficiencies of grain sorghum grown in three USA southern Great Plains soils. Agricultural Water Management 59, 97–111.
Crossref | GoogleScholarGoogle Scholar | open url image1

Turner NC, Asseng S (2005) Productivity, sustainability, and rainfall-use efficiency in Australian rainfed Mediterranean agricultural systems. Australian Journal of Agricultural Research 56, 1123–1136.
Crossref | GoogleScholarGoogle Scholar | open url image1

Turpin JE, Thompson JP, Waring SA, MacKenzie J (1998) Nitrate and chloride leaching in Vertosols for different tillage and stubble practices in fallow-grain cropping. Australian Journal of Soil Research 36, 31–44.
Crossref | GoogleScholarGoogle Scholar | open url image1

URS (2001) ‘Liverpool Plains Catchment Investment Strategy. A report for the Liverpool Plains Land Management Committee.’ (URS Australia Pty Ltd: Hackney, S. Aust.)

Zadoks JC, Chang TT, Konzak CF (1974) A decimal code for the growth stages of cereals. Weed Research 14, 415–421.
Crossref | GoogleScholarGoogle Scholar | open url image1