Skip to menu Skip to content Skip to footer

2004

Journal Article

Identification of differentially expressed transcripts from maturing stem of sugarcane by in silico analysis of stem expressed sequence tags and gene expression profiling

Casu, Rosanne E., Dimmock, Christine M., Chapman, Scott C., Grof, Christopher P.L., McIntyre, C. Lynne, Bonnett, Graham D. and Manners, John M. (2004). Identification of differentially expressed transcripts from maturing stem of sugarcane by in silico analysis of stem expressed sequence tags and gene expression profiling. Plant Molecular Biology, 54 (4), 503-517. doi: 10.1023/B:PLAN.0000038255.96128.41

Identification of differentially expressed transcripts from maturing stem of sugarcane by in silico analysis of stem expressed sequence tags and gene expression profiling

2003

Journal Article

An overview of APSIM, a model designed for farming systems simulation

Keating, BA, Carberry, PS, Hammer, GL, Probert, ME, Robertson, MJ, Holzworth, D, Huth, NI, Hargreaves, JNG, Meinke, H, Hochman, Z, McLean, G, Verburg, K, Snow, V, Dimes, JP, Silburn, M, Wang, E, Brown, S, Bristow, KL, Asseng, S, Chapman, S, McCown, RL, Freebairn, DM and Smith, CJ (2003). An overview of APSIM, a model designed for farming systems simulation. European Journal of Agronomy, 18 (3-4), 267-288. doi: 10.1016/S1161-0301(02)00108-9

An overview of APSIM, a model designed for farming systems simulation

2002

Journal Article

Expression profile analysis of the low-oxygen response in arabidopsis root cultures

Klok, Erik Jan, Wilson, Iain W., Wilson, Dale, Chapman, Scott C., Ewing, Rob M., Somerville, Shauna C., James Peacock, W., Dolferus, Rudy and Dennis, Elizabeth S. (2002). Expression profile analysis of the low-oxygen response in arabidopsis root cultures. Plant Cell, 14 (10), 2481-2494. doi: 10.1105/tpc.004747

Expression profile analysis of the low-oxygen response in arabidopsis root cultures

2002

Journal Article

Spatial and seasonal effects confounding interpretation of sunflower yields in Argentina

Chapman, Scott C. and De la Vega, Abelardo J. (2002). Spatial and seasonal effects confounding interpretation of sunflower yields in Argentina. Field Crops Research, 73 (2-3), 107-120. doi: 10.1016/S0378-4290(01)00185-X

Spatial and seasonal effects confounding interpretation of sunflower yields in Argentina

2002

Journal Article

Using biplots to interpret gene expression patterns in plants

Chapman, Scott, Schenk, Peer, Kazan, Kemal and Manners, John (2002). Using biplots to interpret gene expression patterns in plants. Bioinformatics, 18 (1), 202-204. doi: 10.1093/bioinformatics/18.1.202

Using biplots to interpret gene expression patterns in plants

2002

Journal Article

Lodging reduces sucrose accumulation of sugarcane in the wet and dry tropics

Singh, G., Chapman, Scott C., Jackson, P. A. and Lawn, R. J. (2002). Lodging reduces sucrose accumulation of sugarcane in the wet and dry tropics. Australian Journal of Agricultural Research, 53 (11), 1183-1195. doi: 10.1071/AR02044

Lodging reduces sucrose accumulation of sugarcane in the wet and dry tropics

2002

Journal Article

Using crop simulation to generate genotype by environment interaction effects for sorghum in water-limited environments

Chapman, S. C., Cooper, M. and Hammer, G. L. (2002). Using crop simulation to generate genotype by environment interaction effects for sorghum in water-limited environments. Australian Journal of Agricultural Research, 53 (4), 379-389. doi: 10.1071/AR01070

Using crop simulation to generate genotype by environment interaction effects for sorghum in water-limited environments

2001

Journal Article

Genotype by environment interaction and indirect selection for yield in sunflower: I. Two-mode pattern analysis of oil and biomass yield across environments in Argentina

De La Vega, Abelardo J, Chapman, Scott C and Hall, Antonio J (2001). Genotype by environment interaction and indirect selection for yield in sunflower: I. Two-mode pattern analysis of oil and biomass yield across environments in Argentina. Field Crops Research, 72 (1), 17-38. doi: 10.1016/S0378-4290(01)00162-9

Genotype by environment interaction and indirect selection for yield in sunflower: I. Two-mode pattern analysis of oil and biomass yield across environments in Argentina

2001

Journal Article

Genotype by environment interaction and indirect selection for yield in sunflower: II. Three-mode principal component analysis of oil and biomass yield across environments in Argentina

De La Vega, Abelardo J and Chapman, Scott C (2001). Genotype by environment interaction and indirect selection for yield in sunflower: II. Three-mode principal component analysis of oil and biomass yield across environments in Argentina. Field Crops Research, 72 (1), 39-50. doi: 10.1016/S0378-4290(01)00163-0

Genotype by environment interaction and indirect selection for yield in sunflower: II. Three-mode principal component analysis of oil and biomass yield across environments in Argentina

2000

Journal Article

Genotype by environment interactions affecting grain sorghum. I. Characteristics that confound interpretation of hybrid yield

Chapman, S. C., Cooper, M., Butler, D. G. and Henzell, R. G. (2000). Genotype by environment interactions affecting grain sorghum. I. Characteristics that confound interpretation of hybrid yield. Australian Journal of Agricultural Research, 51 (2), 197-207. doi: 10.1071/AR99020

Genotype by environment interactions affecting grain sorghum. I. Characteristics that confound interpretation of hybrid yield

2000

Journal Article

Genotype by environment interactions affecting grain sorghum. III. Temporal sequences and spatial patterns in the target population of environments

Chapman, SC, Hammer, GL, Butler, DG and Cooper, M (2000). Genotype by environment interactions affecting grain sorghum. III. Temporal sequences and spatial patterns in the target population of environments. Australian Journal of Agricultural Research, 51 (2), 223-233. doi: 10.1071/AR99022

Genotype by environment interactions affecting grain sorghum. III. Temporal sequences and spatial patterns in the target population of environments

2000

Journal Article

Genotype by environment interactions affecting grain sorghum. II. Frequencies of different seasonal patterns of drought stress are related to location effects on hybrid yields

Chapman, S. C., Cooper, M., Hammer, G. L. and Butler, D. G. (2000). Genotype by environment interactions affecting grain sorghum. II. Frequencies of different seasonal patterns of drought stress are related to location effects on hybrid yields. Australian Journal of Agricultural Research, 51 (2), 209-221. doi: 10.1071/AR99021

Genotype by environment interactions affecting grain sorghum. II. Frequencies of different seasonal patterns of drought stress are related to location effects on hybrid yields

1999

Journal Article

Selection improves drought tolerance in tropical maize populations: I. Gains in biomass, grain yield, harvest index

Edmeades, G. O., Bolaños, J., Chapman, S. C., Lafitte, H. R. and Bänziger, M. (1999). Selection improves drought tolerance in tropical maize populations: I. Gains in biomass, grain yield, harvest index. Crop Science, 39 (5), 1306-1315.

Selection improves drought tolerance in tropical maize populations: I. Gains in biomass, grain yield, harvest index

1999

Journal Article

Selection improves drought tolerance in tropical maize populations: II. Direct and correlated responses among secondary traits

Chapman, S. C. and Edmeades, G. O. (1999). Selection improves drought tolerance in tropical maize populations: II. Direct and correlated responses among secondary traits. Crop Science, 39 (5), 1315-1324.

Selection improves drought tolerance in tropical maize populations: II. Direct and correlated responses among secondary traits

1997

Journal Article

Research on drought resistance in grain sorghum in Australia

Henzell, R. G., Hammer, G. L., Borrell, A. K., McIntyre, C. L. and Chapman, S. C. (1997). Research on drought resistance in grain sorghum in Australia. International Sorghum and Millets Newsletter, 38, 1-9.

Research on drought resistance in grain sorghum in Australia

1997

Journal Article

Genotype by environment effects and selection for drought tolerance in tropical maize. II. Three-mode pattern analysis

Chapman, Scott C., Crossa, José, Basford, Kaye E. and Kroonenberg, Pieter M. (1997). Genotype by environment effects and selection for drought tolerance in tropical maize. II. Three-mode pattern analysis. Euphytica, 95 (1), 11-20. doi: 10.1023/A:1002922527795

Genotype by environment effects and selection for drought tolerance in tropical maize. II. Three-mode pattern analysis

1997

Journal Article

Genotype by environment effects and selection for drought tolerance in tropical maize. I. Two mode pattern analysis of yield

Chapman, Scott C., Crossa, José and Edmeades, Gregory O. (1997). Genotype by environment effects and selection for drought tolerance in tropical maize. I. Two mode pattern analysis of yield. Euphytica, 95 (1), 1-9.

Genotype by environment effects and selection for drought tolerance in tropical maize. I. Two mode pattern analysis of yield

1997

Journal Article

Using a chlorophyll meter to estimate specific leaf nitrogen of tropical maize during vegetative growth

Chapman, Scott C. and Barreto, Hector J. (1997). Using a chlorophyll meter to estimate specific leaf nitrogen of tropical maize during vegetative growth. Agronomy Journal, 89 (4), 557-562. doi: 10.2134/agronj1997.00021962008900040004x

Using a chlorophyll meter to estimate specific leaf nitrogen of tropical maize during vegetative growth

1995

Journal Article

Reversing yield declines of a subtropical vertisol

Bell, M. A., Lafitte, H. R., Edmeades, G. O. and Chapman, S. C. (1995). Reversing yield declines of a subtropical vertisol. Communications in Soil Science and Plant Analysis, 26 (7-8), 1105-1119. doi: 10.1080/00103629509369358

Reversing yield declines of a subtropical vertisol

1993

Journal Article

Predicting leaf area development of sunflower

Chapman, S.C., Hammer, G.L. and Palta, J.A. (1993). Predicting leaf area development of sunflower. Field Crops Research, 34 (1), 101-112. doi: 10.1016/0378-4290(93)90114-3

Predicting leaf area development of sunflower