Physiological determinants of high yielding ultra-narrow row cotton: Biomass accumulation and partitioning

被引:22
作者
Brodrick, R. [1 ,3 ]
Bange, M. P. [1 ]
Milroy, S. P. [2 ]
Hammer, G. L. [3 ]
机构
[1] CSIRO Plant Ind, Cotton Catchment Communities Cooperat Res Ctr, Narrabri, NSW 2390, Australia
[2] CSIRO Plant Ind, Ctr Environm & Life Sci, Wembley, WA 6913, Australia
[3] Univ Queensland, Sch Land & Food Sci, Brisbane, Qld 4072, Australia
关键词
Gossypium hirsutum; Biomass; Crop growth rate; Distribution ratio; Plant densities; Row spacing; TROPICAL ENVIRONMENT; NITROGEN-FERTILIZER; SIMULATION-MODEL; PLANT-POPULATION; DRY-MATTER; GROWTH; MATURITY; WATER; IRRIGATION; QUALITY;
D O I
10.1016/j.fcr.2012.05.007
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Ultra-narrow row (UNR) cotton, may have the potential for increased yields in high yielding, high-input production systems. Attaining higher yields in UNR cotton relative to conventionally spaced crops must depend on either increased biomass production or partitioning to fruit. We compared biomass production and partitioning in UNR treatments (25 cm spaced rows) to that of treatments with conventionally spaced rows (100 cm) in high yielding, high-input production systems (where lint yield was greater than 1800 kg ha(-1)). Early biomass accumulation was faster in the UNR crop (36 plants m(-2)) compared to the conventionally spaced treatments (12 plants m(-2)) but slowed later in the season. Despite a three fold increase in plant density in the UNR treatments total dry matter production per unit area was not different to the conventionally spaced treatments. On a per plant basis dry matter accumulation was slower and total biomass production was significantly lower in the UNR crops. This was accompanied by a decrease in boll size, suggesting that competition for resources was limiting crop growth. These differences were significant across three seasons. However, the increase in yield in the UNR crops was obtained through increased partitioning of dry matter to fruit compared to the conventionally spaced crops, resulting in higher boll numbers and increased lint yield in high-input UNR production systems. As there were no differences between row spacings in total water use or nitrogen uptake, investigations are continuing to determining the key determinants limiting crop growth and biomass production in high-input UNR production systems. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:122 / 129
页数:8
相关论文
共 48 条
[1]   RESPONSE OF COTTON TO ROW PATTERNS AND PLANT POPULATIONS [J].
BAKER, SH .
AGRONOMY JOURNAL, 1976, 68 (01) :85-88
[2]   Row spacing, tillage system, and herbicide technology affects cotton plant growth and yield [J].
Balkcom, Kipling S. ;
Price, Andrew J. ;
Van Santen, Edzard ;
Delaney, Dennis P. ;
Boykin, Deborah L. ;
Arriaga, Francisco J. ;
Bergtold, Jason S. ;
Kornecki, Ted S. ;
Raper, Randy L. .
FIELD CROPS RESEARCH, 2010, 117 (2-3) :219-225
[3]  
Best E. C., 1997, 1997 Proceedings Beltwide Cotton Conferences, New Orleans, LA, USA, January 6-10, 1997: Volume 2., P1387
[4]   Cotton in ultra-narrow row spacing: Plant density and nitrogen fertilizer rates [J].
Boquet, DJ .
AGRONOMY JOURNAL, 2005, 97 (01) :279-287
[5]   Yield and Maturity of Ultra-Narrow Row Cotton in High Input Production Systems [J].
Brodrick, Rose ;
Bange, Michael P. ;
Milroy, Stephen P. ;
Hammer, Graeme. L. .
AGRONOMY JOURNAL, 2010, 102 (03) :843-848
[6]  
Charles-Edwards D.A., 1986, MODELLING PLANT GROW
[7]   Nitrogen fertilization and yield of cotton in ultra-narrow and conventional row spacings [J].
Clawson, EL ;
Cothren, JT ;
Blouin, DC .
AGRONOMY JOURNAL, 2006, 98 (01) :72-79
[8]   Timing of maturity in ultra-narrow and conventional row cotton as affected by nitrogen fertilizer rate [J].
Clawson, Ernest L. ;
Cothren, J. Tom ;
Blouin, David C. ;
Satterwhite, Jason L. .
AGRONOMY JOURNAL, 2008, 100 (02) :421-431
[9]   INTERPRETING PHENOTYPIC VARIATION IN PLANTS [J].
COLEMAN, JS ;
MCCONNAUGHAY, KDM ;
ACKERLY, DD .
TRENDS IN ECOLOGY & EVOLUTION, 1994, 9 (05) :187-191
[10]  
Constable G. A., 1975, THESIS U SYDNEY SYDN, P175