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2023

Journal Article

Optimizing nitrogen application improves its efficiency by higher allocation in bolls of cotton under drip fertigation

Tian, Yu, Tian, Liwen, Wang, Fangyong, Shi, Xiaojuan, Shi, Feng, Hao, Xianzhe, Li, Nannan, Chenu, Karine, Luo, Honghai and Yang, Guozheng (2023). Optimizing nitrogen application improves its efficiency by higher allocation in bolls of cotton under drip fertigation. Field Crops Research, 298 108968. doi: 10.1016/j.fcr.2023.108968

Optimizing nitrogen application improves its efficiency by higher allocation in bolls of cotton under drip fertigation

2023

Journal Article

Late nitrogen fertilization improves cotton yield through optimizing dry matter accumulation and partitioning

Tian, Yu, Wang, Fangyong, Shi, Xiaojuan, Shi, Feng, Li, Nannan, Li, Junhong, Chenu, Karine, Luo, Honghai and Yang, Guozheng (2023). Late nitrogen fertilization improves cotton yield through optimizing dry matter accumulation and partitioning. Annals of Agricultural Sciences, 68 (1), 75-86. doi: 10.1016/j.aoas.2023.06.001

Late nitrogen fertilization improves cotton yield through optimizing dry matter accumulation and partitioning

2023

Journal Article

Balancing pre- and post-anthesis growth to maximise water-limited yield in cereals

Borrell, Andrew K., Christopher, John T., Kelly, Alison, Collins, Brian and Chenu, Karine (2023). Balancing pre- and post-anthesis growth to maximise water-limited yield in cereals. Field Crops Research, 296 108919, 1-19. doi: 10.1016/j.fcr.2023.108919

Balancing pre- and post-anthesis growth to maximise water-limited yield in cereals

2023

Other Outputs

Generic model to estimate wheat LAI

Chen, Qiaomin, Chapman, Scott, Zheng, Bangyou, Chenu, Karine and Chen, Qiaomin (2023). Generic model to estimate wheat LAI. The University of Queensland. (Dataset) doi: 10.48610/ac9642c

Generic model to estimate wheat LAI

2023

Journal Article

A generic model to estimate wheat LAI over growing season regardless of the soil-type background

Chen, Qiaomin, Zheng, Bangyou, Chenu, Karine and Chapman, Scott C. (2023). A generic model to estimate wheat LAI over growing season regardless of the soil-type background. Plant Phenomics, 5 0055, 0055. doi: 10.34133/plantphenomics.0055

A generic model to estimate wheat LAI over growing season regardless of the soil-type background

2023

Journal Article

Understanding wheat growth and the seasonal climatic characteristics of major drought patterns occurring in cold dryland environments from Iran

Rahimi-Moghaddam, Sajjad, Deihimfard, Reza, Nazari, Mohammad Reza, Mohammadi-Ahmadmahmoudi, Esmaeil and Chenu, Karine (2023). Understanding wheat growth and the seasonal climatic characteristics of major drought patterns occurring in cold dryland environments from Iran. European Journal of Agronomy, 145 126772, 1-8. doi: 10.1016/j.eja.2023.126772

Understanding wheat growth and the seasonal climatic characteristics of major drought patterns occurring in cold dryland environments from Iran

2023

Journal Article

A robust field-based method to screen heat tolerance in wheat

Ullah, Najeeb, Christopher, Jack, Frederiks, Troy, Ma, Shangyu, Tan, Daniel KY and Chenu, Karine (2023). A robust field-based method to screen heat tolerance in wheat. European Journal of Agronomy, 144 126757, 126757. doi: 10.1016/j.eja.2023.126757

A robust field-based method to screen heat tolerance in wheat

2023

Journal Article

Identification of environment similarities using a crop model to assist the cultivation and breeding of a new crop in a new region

Chauhan, Yashvir S., Sands, Doug, Krosch, Steve, Agius, Peter, Frederiks, Troy, Chenu, Karine and Williams, Rex (2023). Identification of environment similarities using a crop model to assist the cultivation and breeding of a new crop in a new region. Crop and Pasture Science, 75 (1) CP23177, 1-16. doi: 10.1071/cp23177

Identification of environment similarities using a crop model to assist the cultivation and breeding of a new crop in a new region

2023

Journal Article

A cross‐scale analysis to understand and quantify effects of photosynthetic enhancement on crop growth and yield across environments

Wu, Alex, Brider, Jason, Busch, Florian A., Chen, Min, Chenu, Karine, Clarke, Victoria C., Collins, Brian, Ermakova, Maria, Evans, John R., Farquhar, Graham D., Forster, Britta, Furbank, Robert T., Gorszmann, Michael, Hernandez, Miguel A., Long, Benedict M., Mclean, Greg, Potgieter, Andries, Dean Price, G., Sharwood, Robert E., Stower, Michael, van Oosterom, Erik, von Caemmerer, Susanne, Whitney, Spencer M. and Hammer, Graeme L. (2023). A cross‐scale analysis to understand and quantify effects of photosynthetic enhancement on crop growth and yield across environments. Plant, Cell & Environment, 46 (1), 23-44. doi: 10.1111/pce.14453

A cross‐scale analysis to understand and quantify effects of photosynthetic enhancement on crop growth and yield across environments

2022

Journal Article

Cover Image

Wu, Alex, Brider, Jason, Busch, Florian A., Chen, Min, Chenu, Karine, Clarke, Victoria C., Collins, Brian, Ermakova, Maria, Evans, John R., Farquhar, Graham D., Forster, Britta, Furbank, Robert T., Groszmann, Michael, Hernandez‐Prieto, Miguel A., Long, Benedict M., Mclean, Greg, Potgieter, Andries, Price, G. Dean, Sharwood, Robert E., Stower, Michael, van Oosterom, Erik, von Caemmerer, Susanne, Whitney, Spencer M. and Hammer, Graeme L. (2022). Cover Image. Plant, Cell & Environment, 46 (1). doi: 10.1111/pce.14512

Cover Image

2022

Journal Article

Unsupervised plot-scale LAI phenotyping via UAV-based imaging, modelling, and machine learning

Chen, Qiaomin, Zheng, Bangyou, Chenu, Karine, Hu, Pengcheng and Chapman, Scott C. (2022). Unsupervised plot-scale LAI phenotyping via UAV-based imaging, modelling, and machine learning. Plant Phenomics, 2022 9768253, 1-19. doi: 10.34133/2022/9768253

Unsupervised plot-scale LAI phenotyping via UAV-based imaging, modelling, and machine learning

2022

Journal Article

Editorial: Enviromics in Plant Breeding

Resende, Rafael Tassinari, Chenu, Karine, Rasmussen, Soren K., Heinemann, Alexandre Bryan and Fritsche-Neto, Roberto (2022). Editorial: Enviromics in Plant Breeding. Frontiers in Plant Science, 13 935380, 935380. doi: 10.3389/fpls.2022.935380

Editorial: Enviromics in Plant Breeding

2022

Journal Article

The concepts of seed germination rate and germinability: a re-evaluation for cool-season grasses

Ghaleb, Wagdi, Ahmed, Lina Q., Wagner, Marie-Hélène, Eprinchard-Ciesla, Annie, Olivares-Rodríguez, Wendy E., Perrot, Cédric, Chenu, Karine, Norton, Mark and Escobar-Gutiérrez, Abraham J. (2022). The concepts of seed germination rate and germinability: a re-evaluation for cool-season grasses. Agronomy, 12 (6) 1291, 1-16. doi: 10.3390/agronomy12061291

The concepts of seed germination rate and germinability: a re-evaluation for cool-season grasses

2022

Conference Publication

Can stay-green help to increase heat tolerance in wheat?

Yahya, Muhammad, Ullah, Najeeb, Christopher, Jack and Chenu, Karine (2022). Can stay-green help to increase heat tolerance in wheat?. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Can stay-green help to increase heat tolerance in wheat?

2022

Conference Publication

Paddock-scale yield estimation using fused PlanetScope and Sentinel-2 imagery and crop modelling

Sadeh, Yuval, Zhu, Xuan, Dunkerley, David, Walker, Jeffrey P., Chen, Yang and Chenu, Karine (2022). Paddock-scale yield estimation using fused PlanetScope and Sentinel-2 imagery and crop modelling. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Paddock-scale yield estimation using fused PlanetScope and Sentinel-2 imagery and crop modelling

2022

Conference Publication

Late, deep root development varies between wheat cultivars subjected to terminal water stress

Shazadi, K., Chenu, K. and Christopher, J.T. (2022). Late, deep root development varies between wheat cultivars subjected to terminal water stress. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Late, deep root development varies between wheat cultivars subjected to terminal water stress

2022

Conference Publication

Genomic prediction to accelerate breeding potential for increased transpiration efficiency in wheat

Fletcher, Andrew, Christopher, Jack, Kelly, Alison and Chenu, Karine (2022). Genomic prediction to accelerate breeding potential for increased transpiration efficiency in wheat. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Genomic prediction to accelerate breeding potential for increased transpiration efficiency in wheat

2022

Conference Publication

Maximising water-limited yield in cereals by balancing pre- and post-anthesis growth

Borrell, Andrew, Christopher, Jack, Kelly, Alison, Collins, Brian and Chenu, Karine (2022). Maximising water-limited yield in cereals by balancing pre- and post-anthesis growth. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Maximising water-limited yield in cereals by balancing pre- and post-anthesis growth

2022

Conference Publication

Change in abiotic stress and atmospheric CO2 concentration significantly affected Australian wheat productivity over 1981-2018

Collins, Brian and Chenu, Karine (2022). Change in abiotic stress and atmospheric CO2 concentration significantly affected Australian wheat productivity over 1981-2018. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

Change in abiotic stress and atmospheric CO2 concentration significantly affected Australian wheat productivity over 1981-2018

2022

Conference Publication

A field-based technique for screening heat tolerance of wheat lines differing in maturity at matched developmental phases

Ullah, Najeeb, Christopher, Jack, Frederiks, Troy and Chenu, Karine (2022). A field-based technique for screening heat tolerance of wheat lines differing in maturity at matched developmental phases. Australian Agronomy Conference, Toowoomba, QLD, Australia, 18-22 September 2022.

A field-based technique for screening heat tolerance of wheat lines differing in maturity at matched developmental phases