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RESEARCH ARTICLE

Yield performance of late-maturing winter canola (Brassica napus L.) types in the High Rainfall Zone of southern Australia

Penny Riffkin A D , Trent Potter B and Gavin Kearney C
+ Author Affiliations
- Author Affiliations

A DPI Victoria, PB105, Hamilton, Vic. 3300, Australia.

B SARDI, Naracoorte, SA 5271, Australia.

C 36 Paynes Road, Hamilton, Vic. 3300, Australia.

D Corresponding author. Email: penny.riffkin@dpi.vic.gov.au

Crop and Pasture Science 63(1) 17-32 https://doi.org/10.1071/CP10410
Submitted: 30 December 2010  Accepted: 14 February 2012   Published: 13 March 2012

Abstract

Area and production of canola (Brassica napus L.) in the High Rainfall Zone (HRZ) of southern Australia has increased significantly over the past decade. Varieties available to growers have not been bred specifically for the HRZ and are generally adapted to the drier regions of the cropping belt. Field experiments were conducted at Hamilton in south-west Victoria in 2005, 2006 and 2008 to identify canola traits and management suited to the HRZ of southern Australia. Nine varieties with different reported maturities (winter and spring types) were sown at either two times of sowing and/or under different nitrogen (N) fertiliser regimes. Dates of key phenological development were recorded, dry matter was determined at bud, flowering and maturity and grain yield and yield components were determined at harvest. Plant traits and climate data were assessed in relation to grain yield. Yields of the winter types were either significantly (P < 0.05) greater or not significantly less than the spring types in all 3 years and similar to those reported under experimental conditions in Europe. This was despite the winter types flowering up to 35 days later than the spring types and spring rainfall being approximately half that of the long-term average. In general, the winter types had greater early vigour, greater dry matter production at the bud, flowering and maturity stages and were taller than the spring types. Regression analysis showed positive relationships between grain yield and pod density and plant size (dry matter and plant height). Plant size was influenced by variety, time of sowing and N fertiliser application rates. Crops in the HRZ were able to sustain more seeds per pod at larger canopy sizes and pod densities than those achieved in the northern hemisphere. Despite the number of pods per g of dry matter at flowering being nearly double that reported in the UK, there was little apparent reduction in the number of seeds per pod. It is possible that higher solar radiation and warmer minimum temperatures in the HRZ of Australia provide conditions more favourable for growth before, and during grainfill. This indicates that different dry matter production and yield component targets may be appropriate for canola in this environment especially in more typical seasons. It is likely that growers will need to sow new, later maturing varieties earlier and with higher rates of N fertiliser than is current practice in Australia. This study indicates that winter types may have the potential to provide improvements to the yield of canola in the HRZ either through the direct importation of varieties from overseas or through the identification and incorporation of desired traits into existing material. It is recommended that a wider range of germplasm be assessed over a greater geographical area to identify traits and management practices to optimise phenology and canopy structure. This information can be used to help inform breeders on crop improvement priorities as well providing tailored management practices to maximise grain yields for this environment.

Additional keywords: dry matter, phenology, plant height, pod density, yield components.


References

ABS (2006) Australian Bureau of Statistics. Available at: www.abs.gov.au

ABS (2008) Australian Bureau of Statistics. Available at: www.abs.gov.au

Berry PM, Spink JH (2006) Centenary Review. A physiological analysis of oilseed rape yields: past and future. The Journal of Agricultural Science 144, 381–392.
Centenary Review. A physiological analysis of oilseed rape yields: past and future.Crossref | GoogleScholarGoogle Scholar |

Burton W, Marcroft S (2005) Victorian State report 2005. In ‘Proceedings of the 14th Australian Research Assembly on Brassicas’. Port Lincoln, S. Aust. (Ed. TD Potter) pp. 3–4. (SARDI: Naracoorte, SA)

Buzza G (2007) Canola breeding in the seventies – a personal look back. In ‘Proceedings of the 15th Australian Research Assembly on Brassicas (ARAB15)’. Geraldton, W. Aust. (Eds M Amjad, WA Cowling) pp. 63–68. (Dept of Agriculture and Food Western Australia: Perth)

Colton B, Potter T (1999) History. Chapter 1. In ‘Canola in Australia: the first thirty years’. (Eds PA Salisbury, T Potter, G McDonald, AG Green) pp. 1–4. (Organising Committee of the 10th International Rapeseed Congress: Canberra)

Cowling WA (2007) Genetic diversity in Australian canola and implications for crop breeding for changing environments. Field Crops Research 104, 103–111.
Genetic diversity in Australian canola and implications for crop breeding for changing environments.Crossref | GoogleScholarGoogle Scholar |

Diepenbrock W (2000) Yield analysis of winter oilseed rape (Brassica napus L.): a review. Field Crops Research 67, 35–49.
Yield analysis of winter oilseed rape (Brassica napus L.): a review.Crossref | GoogleScholarGoogle Scholar |

DPI (2010) ‘Victorian winter crop summary.’ (Eds G Stratford, A Wallace) (Department of Primary Industries, Victoria: Horsham) Available at: www.new.dpi.vic.gov.au/agriculture/crops-pastures-and-weeds/grain-crops/victorian-winter-crop-summary-2010/wheat

Genstat Committee (2008) ‘Genstat for Windows.’ 11th edn. (VSN International: Hertfordshire, UK)

Habekotté B (1997) Options for increasing seed yield of winter oilseed rape (Brassica napus L.): a simulation study. Field Crops Research 54, 109–126.
Options for increasing seed yield of winter oilseed rape (Brassica napus L.): a simulation study.Crossref | GoogleScholarGoogle Scholar |

Heenan DP, Armstrong EL (1993) Sowing time effects on yield and quality of canola and linseed. In ‘Proceedings of the 9th Australian Research Assembly on Brassicas’. Wagga Wagga, NSW. (Eds N Wratten, RJ Mailer) pp. 83–86.

Hocking PJ, Stapper M (2001) Effects of sowing time and nitrogen fertiliser on canola and wheat, and nitrogen fertiliser on Indian mustard. I. Dry matter production, grain yield, and yield components. Australian Journal of Agricultural Research 52, 623–634.
Effects of sowing time and nitrogen fertiliser on canola and wheat, and nitrogen fertiliser on Indian mustard. I. Dry matter production, grain yield, and yield components.Crossref | GoogleScholarGoogle Scholar |

Hunt JR, Kirkegaard JA (2011) Re-evaluating the contribution of summer fallow rain to wheat yield in southern Australia. Crop & Pasture Science 62, 915–929.
Re-evaluating the contribution of summer fallow rain to wheat yield in southern Australia.Crossref | GoogleScholarGoogle Scholar |

Isbell RF (2002) ‘The Australian Soil Classification.’ Revised 1st edn. (CSIRO Publishing: Melbourne)

Kirkegaard JA, Robertson MJ, Hamblin P, Sprague SJ (2006) Effect of blackleg and sclerotinia stem rot on canola yield in the high rainfall zone of southern New South Wales, Australia. Australian Journal of Agricultural Research 57, 201–212.
Effect of blackleg and sclerotinia stem rot on canola yield in the high rainfall zone of southern New South Wales, Australia.Crossref | GoogleScholarGoogle Scholar |

Kirkegaard JA, Sprague SJ, Dove H, Kelman WM, Marcroft SJ, Lieschke A, Howe GN, Graham JM (2008) Dual-purpose canola – a new opportunity in mixed farming systems. Australian Journal of Agricultural Research 59, 291–302.
Dual-purpose canola – a new opportunity in mixed farming systems.Crossref | GoogleScholarGoogle Scholar |

Kirkegaard J, Sprague S, Dove H, Potter T, Marcroft S, Kelman W, Lilley J, Hamblin P (2010) Adaptation of winter canola (Brassica napus) for grain and dual-purpose use in Australia’s high rainfall zone. In ‘Proceedings of the 15th Australian Society of Agronomy Conference’. 15–18 November, Lincoln, NZ. (Eds H Dove, R Culvenor), Available at: www.regional.org.au/au/asa/2010/crop-production/dual-purpose/7169_kirkegaard.htm

Light KA, Gororo NN, Salisbury PA (2005) The inheritance of vernalisation requirement in winter × spring canola (Brassica napus L.) crosses. In ‘Proceedings of the 14th Australian Research Assembly on Brassicas’. Port Lincoln, S. Aust. (Ed TD Potter) pp. 11–13. (SARDI: Naracoorte, S. Aust.)

Lunn GD, Spink JH, Stokes DT, Wade A, Clarke RW, Scott RK (2001) Canopy management in winter oilseed rape. HGCA Project Report No. OS49. Home-Grown Cereals Authority, London.

Mailer RJ, Pratley JE (1990) Field studies of moisture availability effects on glucosinolate and oil concentration in seed rape (Brassica napus L.) and turnip rape (Brassica rapa L. var silvestris (Lam.) Briggs). Canadian Journal of Plant Science 70, 399–407.
Field studies of moisture availability effects on glucosinolate and oil concentration in seed rape (Brassica napus L.) and turnip rape (Brassica rapa L. var silvestris (Lam.) Briggs).Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3cXlvVyjs74%3D&md5=7e7f3cf26057d6c244f2d2931da7d780CAS |

McCormick JI, Kirkegaard JA, Virgona J (2009) Dual purpose canola – possibility or pipedream? In ‘Proceedings of the 16th Australian Research Assembly on Brassicas’. Ballarat, Vic. (Eds W Burton, R Norton, A Worthy) pp. 19–22.

McCormick JI, Virgona J, Kirkegaard JA (2011) Exploring opportunities for dual purpose canola in south-eastern Australia using crop simulation models. In ‘Proceedings of the 17th Australian Research Assembly on Brassicas’. Wagga Wagga, NSW. (Eds D Luckett, D MacCaffery, H Raman, R Raman) pp. 184–188. (NSW Department of Primary Industries: Orange, NSW)

Mendham NJ, Scott RK (1975) The limiting effect of plant size at inflorescence initiation on subsequent growth and yield of oilseed rape (Brassica napus). Journal of Agricultural Science, Cambridge 84, 487–502.
The limiting effect of plant size at inflorescence initiation on subsequent growth and yield of oilseed rape (Brassica napus).Crossref | GoogleScholarGoogle Scholar |

Mendham NJ, Shipway PA, Scott RK (1981) The effects of delayed sowing and weather on growth, development and yield of winter oilseed rape (Brassica napus). Journal of Agricultural Science, Cambridge 96, 389–416.
The effects of delayed sowing and weather on growth, development and yield of winter oilseed rape (Brassica napus).Crossref | GoogleScholarGoogle Scholar |

Potter TD, Salisbury PA (1993) Triazine resistant canola in Southern Australia. In ‘Proceedings of the 7th Australian Agronomy Conference’. Adelaide. (Eds GK McDonald, WD Bellotti) pp. 80–82. (The University of Adelaide: Adelaide) www.regional.org.au/au/asa/1993/concurrent/grain-legumes-oilseeds/p-04.htm

Potter T, Burton W, Edwards J, Wratten N, Mailer R, Seberry D (2009) Comparison of historical canola varieties in Australia. In ‘Proceedings of the 16th Australian Research Assembly on Brassicas’. Ballarat, Vic. (Eds W Burton, R Norton, A Worthy) pp. 110–115.

Pouzet A (1995) Agronomy. In ‘Brassica oilseeds: production and utilisation’. (Eds DS Kimber, DI McGregor) pp. 71–72. (CAB International: Wallingford, UK)

Richards RA (1992) The effect of dwarfing genes in spring wheat in dry environments. I. Agronomic characteristics. Australian Journal of Agricultural Research 43, 517–527.
The effect of dwarfing genes in spring wheat in dry environments. I. Agronomic characteristics.Crossref | GoogleScholarGoogle Scholar |

Robertson MJ, Kirkegaard JA (2005) Water-use efficiency of dryland canola in an equi-seasonal rainfall environment. Australian Journal of Agricultural Research 56, 1373–1386.
Water-use efficiency of dryland canola in an equi-seasonal rainfall environment.Crossref | GoogleScholarGoogle Scholar |

Robertson MJ, Holland JF, Bambach R, Cawthrays S (1999) Response of canola and Indian mustard to sowing date in risky Australian environments. In ‘Proceedings of the 10th International Rapeseed Congress’. Canberra, ACT. (Eds N Wratten, PA Salisbury) (CD-ROM)

Robertson MJ, Watkinson AR, Kirkegaard JA, Holland JF, Potter TD, Burton W, Walton GH, Moot DJ, Wratten N, Farre I, Asseng S (2002) Environmental and genotypic control of time to flowering in canola and Indian mustard. Australian Journal of Agricultural Research 53, 793–809.
Environmental and genotypic control of time to flowering in canola and Indian mustard.Crossref | GoogleScholarGoogle Scholar |

Robertson MJ, Holland FJ, Bambach R (2004) Response of canola and Indian mustard to sowing date in the grain belt of north-eastern Australia. Australian Journal of Experimental Agriculture 44, 43–52.
Response of canola and Indian mustard to sowing date in the grain belt of north-eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Salisbury P, Wratten N (1999) Brassica napus breeding. Chapter 6. In ‘Canola in Australia: the first thirty years’. (Eds PA Salisbury, T Potter, G McDonald, AG Green) pp. 29–36. (Organising Committee of the 10th International Rapeseed Congress: Canberra)

Sieling K, Kage H (2008) The potential of semi-dwarf oilseed rape genotypes to reduce the risk of N leaching. Journal of Agricultural Research 146, 77–84.

Spink JH, Berry PM (2005) Yield of UK oilseed rape: physiological and technological constraints and expectations of progress to 2010. In ‘Proceedings of the 61st Easter School’. Nottingham, UK. pp. 311–334. (University of Nottingham Press: Nottingham, UK)

Sylvester-Bradley R, Makepeace RJ (1984) A code for stages of development in oilseed rape (Brassica napus L.). Aspects of Applied Biology 6, 399–419.

Thurling N (1991) Application of the ideotype concept in breeding for higher yield in oilseed brassicas. Field Crops Research 26, 201–219.
Application of the ideotype concept in breeding for higher yield in oilseed brassicas.Crossref | GoogleScholarGoogle Scholar |

Walton GH, Barbetti MJ (2005) Canola industry report, Western Australia 2005. In ‘Proceedings of the 14th Australian Research Assembly on Brassicas’. Port Lincoln, S. Aust. (Ed. TD Potter) pp. 1–2. (SARDI: Naracoorte, S. Aust.)

Walton G, Mendham N, Robertson M, Potter T (1999) Phenology, physiology and agronomy. Chapter 3. In ‘Canola in Australia: the first thirty years’. (Eds PA Salisbury, T Potter, G McDonald, AG Green) pp. 9–14. (Organising Committee of the 10th International Rapeseed Congress: Canberra)