Skip to menu Skip to content Skip to footer

2022

Conference Publication

Time gain compensation, the genetics of grain filling duration in sorghum

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Tao, Yongfu, Koltunow, Anna, Jordan, David and Mace, Emma (2022). Time gain compensation, the genetics of grain filling duration in sorghum. TropAg Conference 2022, Brisbane, QLD, Australia, 31 October - 2 November 2022.

Time gain compensation, the genetics of grain filling duration in sorghum

2022

Conference Publication

Time gain compensation, the genetics of grain filling duration in sorghum.

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Tao, Yongfu, Koltunow, Anna, Jordan, David and Mace, Emma (2022). Time gain compensation, the genetics of grain filling duration in sorghum.. QAAFI student’s symposium, Brisbane, QLD, Australia, 30 September 2022.

Time gain compensation, the genetics of grain filling duration in sorghum.

2022

Conference Publication

Genetic control of grain filling duration in sorghum

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Koltunow, Anna, Mace, Emma and Jordan, David (2022). Genetic control of grain filling duration in sorghum. Australian Sorghum Conference, Toowoomba, QLD Australia, 18-19 August 2022.

Genetic control of grain filling duration in sorghum

2022

Journal Article

Genetic modification of PIN genes induces causal mechanisms of stay-green drought adaptation phenotype

Borrell, Andrew K., Wong, Albert C. S., George-Jaeggli, Barbara, van Oosterom, Erik J., Mace, Emma S., Godwin, Ian D., Liu, Guoquan, Mullet, John E., Klein, Patricia E., Hammer, Graeme L., McLean, Greg, Hunt, Colleen and Jordan, David R. (2022). Genetic modification of PIN genes induces causal mechanisms of stay-green drought adaptation phenotype. Journal of Experimental Botany, 73 (19), 6711-6726. doi: 10.1093/jxb/erac336

Genetic modification of PIN genes induces causal mechanisms of stay-green drought adaptation phenotype

2022

Journal Article

Genetic basis of sorghum leaf width and its potential as a surrogate for transpiration efficiency

Zhi, Xiaoyu, Hammer, Graeme, Borrell, Andrew, Tao, Yongfu, Wu, Alex, Hunt, Colleen, van Oosterom, Erik, Massey-Reed, Sean Reynolds, Cruickshank, Alan, Potgieter, Andries B., Jordan, David, Mace, Emma and George-Jaeggli, Barbara (2022). Genetic basis of sorghum leaf width and its potential as a surrogate for transpiration efficiency. Theoretical and Applied Genetics, 135 (9), 3057-3071. doi: 10.1007/s00122-022-04167-z

Genetic basis of sorghum leaf width and its potential as a surrogate for transpiration efficiency

2022

Journal Article

Maximizing value of genetic sequence data requires an enabling environment and urgency

Gaffney, Jim, Girma, Dejene, Kane, Ndjido Ardo, Llaca, Victor, Mace, Emma, Taylor, Nigel and Tibebu, Redeat (2022). Maximizing value of genetic sequence data requires an enabling environment and urgency. Global Food Security, 33 100619, 100619. doi: 10.1016/j.gfs.2022.100619

Maximizing value of genetic sequence data requires an enabling environment and urgency

2022

Conference Publication

The magnitude of heterosis in grain sorghum.

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Powell, Owen, Koltunow, Anna, Mace, Emma and Jordan, David (2022). The magnitude of heterosis in grain sorghum.. Australasian Plant Breeding Conference, Gold Coast, QLD, Australia, 9-11 May 2022.

The magnitude of heterosis in grain sorghum.

2022

Journal Article

Decoding the sorghum methylome: understanding epigenetic contributions to agronomic traits

Vafadarshamasbi, Ulduz, Mace, Emma, Jordan, David and Crisp, Peter A. (2022). Decoding the sorghum methylome: understanding epigenetic contributions to agronomic traits. Biochemical Society Transactions, 50 (1), 583-596. doi: 10.1042/bst20210908

Decoding the sorghum methylome: understanding epigenetic contributions to agronomic traits

2021

Conference Publication

Hybrid vigor deconstructed

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Koltunow, Anna, Mace, Emma and Jordan, David (2021). Hybrid vigor deconstructed. QAAFI student’s symposium, Brisbane, QLD Australia, 26 November 2021.

Hybrid vigor deconstructed

2021

Conference Publication

The magnitude of heterosis in sorghum

Otwani, Daniel, Hunt, Colleen, Cruickshank, Alan, Koltunow, Anna and Mace, Emma (2021). The magnitude of heterosis in sorghum. Australian Sorghum Conference, Toowoomba, QLD Australia, 11-12 November 2021.

The magnitude of heterosis in sorghum

2021

Journal Article

Genetic control of leaf angle in sorghum and its effect on light interception

Zhi, Xiaoyu, Tao, Yongfu, Jordan, David, Borrell, Andrew, Hunt, Colleen, Cruickshank, Alan, Potgieter, Andries, Wu, Alex, Hammer, Graeme, George-Jaeggli, Barbara and Mace, Emma (2021). Genetic control of leaf angle in sorghum and its effect on light interception. Journal of Experimental Botany, 73 (3) erab467, 801-816. doi: 10.1093/jxb/erab467

Genetic control of leaf angle in sorghum and its effect on light interception

2021

Journal Article

Manipulating assimilate availability provides insight into the genes controlling grain size in sorghum

Tao, Yongfu, Trusov, Yuri, Zhao, Xianrong, Wang, Xuemin, Cruickshank, Alan W., Hunt, Colleen, van Oosterom, Erik J., Hathorn, Adrian, Liu, Guoquan, Ian, Godwin D., Botella, Jose R., Mace, Emma S. and Jordan, David R. (2021). Manipulating assimilate availability provides insight into the genes controlling grain size in sorghum. The Plant Journal, 108 (1) tpj.15437, 1-13. doi: 10.1111/tpj.15437

Manipulating assimilate availability provides insight into the genes controlling grain size in sorghum

2021

Journal Article

Extensive variation within the pan-genome of cultivated and wild sorghum

Tao, Yongfu, Luo, Hong, Xu, Jiabao, Cruickshank, Alan, Zhao, Xianrong, Teng, Fei, Hathorn, Adrian, Wu, Xiaoyuan, Liu, Yuanming, Shatte, Tracey, Jordan, David, Jing, Haichun and Mace, Emma (2021). Extensive variation within the pan-genome of cultivated and wild sorghum. Nature Plants, 7 (6), 766-773. doi: 10.1038/s41477-021-00925-x

Extensive variation within the pan-genome of cultivated and wild sorghum

2021

Journal Article

Genomic resources in plant breeding for sustainable agriculture

Thudi, Mahendar, Palakurthi, Ramesh, Schnable, James C., Chitikineni, Annapurna, Dreisigacker, Susanne, Mace, Emma, Srivastava, Rakesh K., Satyavathi, C. Tara, Odeny, Damaris, Tiwari, Vijay K., Lam, Hon-Ming, Hong, Yan Bin, Singh, Vikas K., Li, Guowei, Xu, Yunbi, Chen, Xiaoping, Kaila, Sanjay, Nguyen, Henry, Sivasankar, Sobhana, Jackson, Scott A., Close, Timothy J., Shubo, Wan and Varshney, Rajeev K. (2021). Genomic resources in plant breeding for sustainable agriculture. Journal of Plant Physiology, 257 153351, 1-18. doi: 10.1016/j.jplph.2020.153351

Genomic resources in plant breeding for sustainable agriculture

2021

Journal Article

A global resource for exploring and exploiting genetic variation in sorghum crop wild relatives

Mace, Emma S., Cruickshank, Alan W., Tao, Yongfu, Hunt, Colleen H. and Jordan, David R. (2021). A global resource for exploring and exploiting genetic variation in sorghum crop wild relatives. Crop Science, 61 (1), 150-162. doi: 10.1002/csc2.20332

A global resource for exploring and exploiting genetic variation in sorghum crop wild relatives

2021

Journal Article

Enhancement of sorghum grain yield and nutrition: a role for arbuscular mycorrhizal fungi regardless of soil phosphorus availability

Watts-Williams, Stephanie J., Gill, Alison R., Jewell, Nathaniel, Brien, Christopher J., Berger, Bettina, Tran, Binh T. T., Mace, Emma, Cruickshank, Alan W., Jordan, David R., Garnett, Trevor and Cavagnaro, Timothy R. (2021). Enhancement of sorghum grain yield and nutrition: a role for arbuscular mycorrhizal fungi regardless of soil phosphorus availability. Plants, People, Planet, 4 (2), 143-156. doi: 10.1002/ppp3.10224

Enhancement of sorghum grain yield and nutrition: a role for arbuscular mycorrhizal fungi regardless of soil phosphorus availability

2021

Book Chapter

Sorghum

Borrell, Andrew, van Oosterom, Erik, George-Jaeggli, Barbara, Rodriguez, Daniel, Eyre, Joe, Jordan, David J., Mace, Emma, Singh, Vijaya, Vadez, Vincent, Bell, Mike, Godwin, Ian, Cruickshank, Alan, Tao, Yongfu and Hammer, Graeme (2021). Sorghum. Crop physiology: case histories for major crops. (pp. 196-221) edited by Victor O. Sadras and Daniel F. Calderini. London, United Kingdom: Academic Press. doi: 10.1016/B978-0-12-819194-1.00005-0

Sorghum

2020

Journal Article

Genetic diversity of Ethiopian sorghum reveals signatures of climatic adaptation

Menamo, T., Kassahun, B., Borrell, A. K., Jordan, D. R., Tao, Y., Hunt, C. and Mace, E. (2020). Genetic diversity of Ethiopian sorghum reveals signatures of climatic adaptation. Theoretical and Applied Genetics, 134 (2), 731-742. doi: 10.1007/s00122-020-03727-5

Genetic diversity of Ethiopian sorghum reveals signatures of climatic adaptation

2020

Journal Article

Open access to genetic sequence data maximizes value to scientists, farmers, and society

Gaffney, Jim, Tibebu, Redeat, Bart, Rebecca, Beyene, Getu, Girma, Dejene, Kane, Ndjido Ardo, Mace, Emma S., Mockler, Todd, Nickson, Thomas E., Taylor, Nigel and Zastrow-Hayes, Gina (2020). Open access to genetic sequence data maximizes value to scientists, farmers, and society. Global Food Security, 26 100411, 100411. doi: 10.1016/j.gfs.2020.100411

Open access to genetic sequence data maximizes value to scientists, farmers, and society

2020

Journal Article

Large-scale genome-wide association study reveals that drought-induced lodging in grain sorghum is associated with plant height and traits linked to carbon remobilisation

Wang, Xuemin, Mace, Emma, Tao, Yongfu, Cruickshank, Alan, Hunt, Colleen, Hammer, Graeme and Jordan, David (2020). Large-scale genome-wide association study reveals that drought-induced lodging in grain sorghum is associated with plant height and traits linked to carbon remobilisation. Theoretical and Applied Genetics, 133 (11), 3201-3215. doi: 10.1007/s00122-020-03665-2

Large-scale genome-wide association study reveals that drought-induced lodging in grain sorghum is associated with plant height and traits linked to carbon remobilisation