Yield improvement and adaptation of wheat to water-limited environments in Australia-a case study

被引:95
作者
Richards, R. A. [1 ]
Hunt, J. R. [1 ]
Kirkegaard, J. A. [1 ]
Passioura, J. B. [1 ]
机构
[1] CSIRO Agr Flagship, Canberra, ACT 2601, Australia
关键词
biomass; breeding; harvest index; management; sowing date; water-use efficiency; climate change; QUANTITATIVE TRAIT LOCI; USE EFFICIENCY; GRAIN-YIELD; CROP YIELD; COMPETITIVE ABILITY; SOUTHERN AUSTRALIA; EASTERN AUSTRALIA; DRY ENVIRONMENTS; FERTILE FLORETS; DWARFING GENES;
D O I
10.1071/CP13426
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The improvement in grain yield of wheat throughout Australia through both breeding and management has been impressive. Averaged across all farms, there has been an approximate doubling of yield per unit area since similar to 1940. This has occurred across a broad range of environments with different rainfall patterns. Interestingly, the gain in the driest years (9 kg ha(-1) year(-1) or 0.81% year(-1)) has been proportionally greater than in the most favourable years (13.2 kg ha(-1) year(-1) or 0.61% per year) when expressed as yield relative to 2012. These data from all farms suggest that further yield progress is likely, and evidence is presented that improved management practices alone could double this rate of progress. The yield increases achieved have been without any known compromise in grain quality or disease resistance. As expected, improvements have come from both changed management and from better genetics, as well as from the synergy between them. Yield improvements due to changed management have been dramatic and are easiest to quantify, whereas those from breeding have been important but more subtle. The management practices responsible have largely been driven by advances in mechanisation that enable direct seeding, more timely and flexible sowing and nutrient management, and improved weed and pest control, many of which have been facilitated by improved crop sequences with grain legumes and oilseeds that improve water-and nutrient-use efficiency. Most of the yield improvements from breeding in Australia have come from conventional breeding approaches where selection is almost solely for grain yield (together with grain quality and disease resistance). Improvements have primarily been through increased harvest index (HI), although aboveground biomass has also been important. We discuss future opportunities to further increase Australian rainfed wheat yields. An important one is earlier planting, which increases resource capture. This will require knowledge of the genes regulating phenological development so that flowering still occurs at the optimum time; appropriate modifications to sowing arrangements and nutrient management will also be required. To improve yield potential, we propose a focus on physiological traits that increase biomass and HI and suggest that there may be more scope to improve biomass than HI. In addition, there are likely to be important opportunities to combine novel management practices with new breeding traits to capture the synergy possible from variety x management interactions. Finally, we comment on research aimed at adapting agriculture to climate change.
引用
收藏
页码:676 / 689
页数:14
相关论文
共 91 条
[1]   Constraints to achieving high potential yield of wheat in a temperate, high-rainfall environment in south-eastern Australia [J].
Acuna, Tina Botwright ;
Dean, Geoff ;
Riffkin, Penny .
CROP & PASTURE SCIENCE, 2011, 62 (02) :125-136
[2]   Closing the gap between actual and potential yield of rainfed wheat. The impacts of environment, management and cultivar [J].
Anderson, W. K. .
FIELD CROPS RESEARCH, 2010, 116 (1-2) :14-22
[3]   The role of management in yield improvement of the wheat crop - a review with special emphasis on Western Australia [J].
Anderson, WK ;
Hamza, MA ;
Sharma, DL ;
D'Antuono, MF ;
Hoyle, FC ;
Hill, N ;
Shackley, BJ ;
Amjad, M ;
Zaicou-Kunesch, C .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 2005, 56 (11) :1137-1149
[4]   INCREASING WHEAT YIELDS IN A HIGH RAINFALL AREA OF WESTERN AUSTRALIA [J].
ANDERSON, WK ;
SMITH, WR .
AUSTRALIAN JOURNAL OF EXPERIMENTAL AGRICULTURE, 1990, 30 (05) :607-614
[5]  
Angus J, 2008, P 14 AUSTR AGR C AD
[6]   Increasing water use and water use efficiency in dryland wheat [J].
Angus, JF ;
van Herwaarden, AF .
AGRONOMY JOURNAL, 2001, 93 (02) :290-298
[7]   Nitrogen supply and demand in Australian agriculture [J].
Angus, JF .
AUSTRALIAN JOURNAL OF EXPERIMENTAL AGRICULTURE, 2001, 41 (03) :277-288
[8]  
[Anonymous], P 14 AUSTR AGR C AD
[9]  
[Anonymous], P 14 AUSTR AGR C AD
[10]   GENETIC IMPROVEMENTS IN WINTER-WHEAT YIELDS SINCE 1900 AND ASSOCIATED PHYSIOLOGICAL-CHANGES [J].
AUSTIN, RB ;
BINGHAM, J ;
BLACKWELL, RD ;
EVANS, LT ;
FORD, MA ;
MORGAN, CL ;
TAYLOR, M .
JOURNAL OF AGRICULTURAL SCIENCE, 1980, 94 (JUN) :675-689