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Dr Kai Voss-Fels
Dr

Kai Voss-Fels

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Overview

Background

Dr Kai Voss-Fels is a Senior Research Fellow within the Queensland Alliance for Agriculture and Food Innovation at The University of Queensland focussing on quantitative genetics and plant breeding. Before joining UQ in 2017, Kai has worked as Research Associate at the Karlsruhe Institute for Technology and as PhD student and then Postdoc at the Justus Liebig University Giessen in Germany, where he completed his PhD in 2016 with highest distinction (summa cum laude, JLU best dissertation award).

Kai is interested in developing and implementing new genomics-assisted breeding approaches to improve yield, quality and resistances in major crops, such as wheat, barley, sugarcane, rapeseed and chickpea. A particular focus of his research involves the integration of quantitative genetics, genomics and computational approaches to develop new crop improvement strategies. He is particularly interested in new genomic prediction approaches, e.g. involving artificial intelligence and computer simulation, that could help to accelerate the rate of genetic gain. This also includes the study of GxE interaction and non-additive genetic effects, which represent a key challenge for crop genetic improvement programs.

Kai has won several prestigious awards, e.g. the Kurt von Rümker Price 2017 and the 2019 Barley Incentive Award by the Australian Barley Technical Symposium committee. He has published his research outcomes in high impact peer-reviewed journals, such as Nature Plants and Trends in Plant Science, and he works closely with leading national and international partners across the public and private sectors.

Availability

Dr Kai Voss-Fels is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Justus Liebig Universität Giessen

Research interests

  • Quantitative Genetics

  • Genomics

  • Plant breeding

  • Agricultural Science

Works

Search Professor Kai Voss-Fels’s works on UQ eSpace

72 works between 2015 and 2025

41 - 60 of 72 works

2021

Journal Article

Tackling G × E × M interactions to close on-farm yield-gaps: creating novel pathways for crop improvement by predicting contributions of genetics and management to crop productivity

Cooper, Mark, Voss-Fels, Kai P., Messina, Carlos D., Tang, Tom and Hammer, Graeme L. (2021). Tackling G × E × M interactions to close on-farm yield-gaps: creating novel pathways for crop improvement by predicting contributions of genetics and management to crop productivity. Theoretical and Applied Genetics, 134 (6), 1625-1644. doi: 10.1007/s00122-021-03812-3

Tackling G × E × M interactions to close on-farm yield-gaps: creating novel pathways for crop improvement by predicting contributions of genetics and management to crop productivity

2021

Journal Article

Accuracy of genomic prediction of complex traits in sugarcane

Hayes, Ben J., Wei, Xianming, Joyce, Priya, Atkin, Felicity, Deomano, Emily, Yue, Jenny, Nguyen, Loan, Ross, Elizabeth M., Cavallaro, Tony, Aitken, Karen S. and Voss-Fels, Kai P. (2021). Accuracy of genomic prediction of complex traits in sugarcane. Theoretical and Applied Genetics, 134 (5), 1455-1462. doi: 10.1007/s00122-021-03782-6

Accuracy of genomic prediction of complex traits in sugarcane

2021

Journal Article

Strategies and considerations for implementing genomic selection to improve traits with additive and non-additive genetic architectures in sugarcane breeding

Voss-Fels, Kai P., Wei, Xianming, Ross, Elizabeth M., Frisch, Matthias, Aitken, Karen S., Cooper, Mark and Hayes, Ben J. (2021). Strategies and considerations for implementing genomic selection to improve traits with additive and non-additive genetic architectures in sugarcane breeding. Theoretical and Applied Genetics, 134 (5), 1493-1511. doi: 10.1007/s00122-021-03785-3

Strategies and considerations for implementing genomic selection to improve traits with additive and non-additive genetic architectures in sugarcane breeding

2021

Journal Article

Modelling selection response in plant breeding programs using crop models as mechanistic gene-to-phenotype (CGM-G2P) multi-trait link functions

Cooper, M., Powell, O., Voss-Fels, K. P., Messina, C. D., Gho, C., Podlich, D. W., Technow, F., Chapman, S. C., Beveridge, C. A., Ortiz-Barrientos, D. and Hammer, G. L. (2021). Modelling selection response in plant breeding programs using crop models as mechanistic gene-to-phenotype (CGM-G2P) multi-trait link functions. in silico Plants, 3 (1) diaa016, 1-21. doi: 10.1093/insilicoplants/diaa016

Modelling selection response in plant breeding programs using crop models as mechanistic gene-to-phenotype (CGM-G2P) multi-trait link functions

2020

Conference Publication

The impact of physiological non-additivity on variance components for complex traits

Voss-Fels, Kai, Powell, Owen, Jordan, David, Hammer, Graeme, Barbier, Francois, Werner, Christian, Hayes, Ben, Beveridge, Christine and Cooper, Mark (2020). The impact of physiological non-additivity on variance components for complex traits. The 6th International Conference on Quantitative Genetics, Brisbane, QLD Australia, 3-13 November 2020.

The impact of physiological non-additivity on variance components for complex traits

2020

Journal Article

Adaptive traits to improve Durum wheat yield in drought and crown rot environments

Alahmad, Samir, Kang, Yichen, Dinglasan, Eric, Mazzucotelli, Elisabetta, Voss-Fels, Kai P., Able, Jason A., Christopher, Jack, Bassi, Filippo M. and Hickey, Lee T. (2020). Adaptive traits to improve Durum wheat yield in drought and crown rot environments. International Journal of Molecular Sciences, 21 (15) 5260, 1-17. doi: 10.3390/ijms21155260

Adaptive traits to improve Durum wheat yield in drought and crown rot environments

2020

Journal Article

GWAS and co-expression network combination uncovers multigenes with close linkage effects on the oleic acid content accumulation in Brassica napus

Yao, Min, Guan, Mei, Zhang, Zhenqian, Zhang, Qiuping, Cui, Yixin, Chen, Hao, Liu, Wei, Jan, Habib U., Voss-Fels, Kai P., Werner, Christian R., He, Xin, Liu, Zhongsong, Guan, Chunyun, Snowdon, Rod J., Hua, Wei and Qian, Lunwen (2020). GWAS and co-expression network combination uncovers multigenes with close linkage effects on the oleic acid content accumulation in Brassica napus. BMC Genomics, 21 (1) 320, 320. doi: 10.1186/s12864-020-6711-0

GWAS and co-expression network combination uncovers multigenes with close linkage effects on the oleic acid content accumulation in Brassica napus

2020

Journal Article

Accelerating genetic gain in sugarcane breeding using genomic selection

Yadav, Seema, Jackson, Phillip, Wei, Xianming, Ross, Elizabeth M., Aitken, Karen, Deomano, Emily, Atkin, Felicity, Hayes, Ben J. and Voss-Fels, Kai P. (2020). Accelerating genetic gain in sugarcane breeding using genomic selection. Agronomy, 10 (4) 585, 1-21. doi: 10.3390/agronomy10040585

Accelerating genetic gain in sugarcane breeding using genomic selection

2020

Journal Article

Overcoming polyploidy pitfalls: a user guide for effective SNP conversion into KASP markers in wheat

Makhoul, M., Rambla, C., Voss-Fels, K. P., Hickey, L. T., Snowdon, R. J. and Obermeier, C. (2020). Overcoming polyploidy pitfalls: a user guide for effective SNP conversion into KASP markers in wheat. Theoretical and Applied Genetics, 133 (8), 2413-2430. doi: 10.1007/s00122-020-03608-x

Overcoming polyploidy pitfalls: a user guide for effective SNP conversion into KASP markers in wheat

2019

Journal Article

Revolutionizing agriculture with synthetic biology

Wurtzel, Eleanore T., Vickers, Claudia E., Hanson, Andrew D., Millar, A. Harvey, Cooper, Mark, Voss-Fels, Kai P., Nikel, Pablo I. and Erb, Tobias J. (2019). Revolutionizing agriculture with synthetic biology. Nature Plants, 5 (12), 1207-1210. doi: 10.1038/s41477-019-0539-0

Revolutionizing agriculture with synthetic biology

2019

Journal Article

High-resolution mapping of rachis nodes per rachis, a critical determinant of grain yield components in wheat

Voss-Fels, Kai P., Keeble-Gagnère, Gabriel, Hickey, Lee T., Tibbits, Josquin, Nagornyy, Sergej, Hayden, Matthew J., Pasam, Raj K., Kant, Surya, Friedt, Wolfgang, Snowdon, Rod J., Appels, Rudi and Wittkop, Benjamin (2019). High-resolution mapping of rachis nodes per rachis, a critical determinant of grain yield components in wheat. Theoretical and Applied Genetics, 132 (9), 2707-2719. doi: 10.1007/s00122-019-03383-4

High-resolution mapping of rachis nodes per rachis, a critical determinant of grain yield components in wheat

2019

Journal Article

Breeding improves wheat productivity under contrasting agrochemical input levels

Voss-Fels, Kai P., Stahl, Andreas, Wittkop, Benjamin, Lichthardt, Carolin, Nagler, Sabrina, Rose, Till, Chen, Tsu-Wei, Zetzsche, Holger, Seddig, Sylvia, Majid Baig, Mirza, Ballvora, Agim, Frisch, Matthias, Ross, Elizabeth, Hayes, Ben J., Hayden, Matthew J., Ordon, Frank, Leon, Jens, Kage, Henning, Friedt, Wolfgang, Stützel, Hartmut and Snowdon, Rod J. (2019). Breeding improves wheat productivity under contrasting agrochemical input levels. Nature Plants, 5 (7), 706-714. doi: 10.1038/s41477-019-0445-5

Breeding improves wheat productivity under contrasting agrochemical input levels

2019

Journal Article

A major root architecture QTL responding to water limitation in Durum Wheat

Alahmad, Samir, El Hassouni, Khaoula, Bassi, Filippo M., Dinglasan, Eric, Youssef, Chvan, Quarry, Georgia, Aksoy, Alpaslan, Mazzucotelli, Elisabetta, Juhasz, Angela, Able, Jason A., Christopher, Jack, Voss-Fels, Kai P. and Hickey, Lee T. (2019). A major root architecture QTL responding to water limitation in Durum Wheat. Frontiers in Plant Science, 10 436, 436. doi: 10.3389/fpls.2019.00436

A major root architecture QTL responding to water limitation in Durum Wheat

2019

Journal Article

Q&A: modern crop breeding for future food security

Voss-Fels, Kai P., Stahl, Andreas and Hickey, Lee T. (2019). Q&A: modern crop breeding for future food security. BMC Biology, 17 (1) 18, 18. doi: 10.1186/s12915-019-0638-4

Q&A: modern crop breeding for future food security

2019

Journal Article

Reduced response diversity does not negatively impact wheat climate resilience

Snowdon, Rod J., Stahl, Andreas, Wittkop, Benjamin, Friedt, Wolfgang, Voss-Fels, Kai, Ordon, Frank, Frisch, Matthias, Dreisigacker, Susanne, Hearne, Sarah J., Bett, Kirstin E., Cuthbert, Richard D., Bentley, Alison R., Melchinger, Albrecht E., Tuberosa, Roberto, Langridge, Peter, Uauy, Cristobal, Sorrells, Mark E., Poland, Jesse and Pozniak, Curtis J. (2019). Reduced response diversity does not negatively impact wheat climate resilience. Proceedings of the National Academy of Sciences of the United States of America, 166 (22), 10623-10624. doi: 10.1073/pnas.1901882116

Reduced response diversity does not negatively impact wheat climate resilience

2019

Conference Publication

Environmental characterization facilitate G × E interaction to highlight the role of stay-green traits for genetic gain

Amin, Asad, Christopher, Jack, Ababaei, Behnam, Cooper, Mark, Hayes, Ben, Voss-Fels, Kai, Hickey, Lee and Chenu, Karine (2019). Environmental characterization facilitate G × E interaction to highlight the role of stay-green traits for genetic gain. Translational Photosynthesis Conference: Innovations in Agriculture for Food Security (ASPS 2019), Brisbane, QLD, Australia, 30 June - 3 July 2019.

Environmental characterization facilitate G × E interaction to highlight the role of stay-green traits for genetic gain

2019

Book Chapter

“SpeedGS” to accelerate genetic gain in spring wheat

Voss-Fels, Kai P., Herzog, Eva, Dreisigacker, Susanne, Sukumaran, Sivakumar, Watson, Amy, Frisch, Matthias, Hayes, Ben and Hickey, Lee T. (2019). “SpeedGS” to accelerate genetic gain in spring wheat. Applications of genetic and genomic research in cereals. (pp. 303-327) edited by Thomas Miedaner and Viktor Korzun. Amsterdam, Netherlands: Elsevier. doi: 10.1016/b978-0-08-102163-7.00014-4

“SpeedGS” to accelerate genetic gain in spring wheat

2018

Journal Article

Accelerating crop genetic gains with genomic selection

Voss-Fels, Kai Peter, Cooper, Mark and Hayes, Ben John (2018). Accelerating crop genetic gains with genomic selection. Theoretical and Applied Genetics, 132 (3), 669-686. doi: 10.1007/s00122-018-3270-8

Accelerating crop genetic gains with genomic selection

2018

Journal Article

Discovering new alleles for yellow spot resistance in the Vavilov wheat collection

Dinglasan, Eric G., Singh, Dharmendra, Shankar, Manisha, Afanasenko, Olga, Platz, Greg, Godwin, Ian D., Voss-Fels, Kai P. and Hickey, Lee T. (2018). Discovering new alleles for yellow spot resistance in the Vavilov wheat collection. Theoretical and Applied Genetics, 132 (1), 149-162. doi: 10.1007/s00122-018-3204-5

Discovering new alleles for yellow spot resistance in the Vavilov wheat collection

2018

Journal Article

Genetic insights into underground responses to Fusarium graminearum infection in wheat

Voss-Fels, Kai P., Qian, Lunwen, Gabur, Iulian, Obermeier, Christian, Hickey, Lee T., Werner, Christian R., Kontowski, Stefan, Frisch, Matthias, Friedt, Wolfgang, Snowdon, Rod J. and Gottwald, Sven (2018). Genetic insights into underground responses to Fusarium graminearum infection in wheat. Scientific Reports, 8 (1) 13153, 13153. doi: 10.1038/s41598-018-31544-w

Genetic insights into underground responses to Fusarium graminearum infection in wheat

Funding

Current funding

  • 2022 - 2026
    Digging deeper to improve yield stability
    ARC Linkage Projects
    Open grant

Past funding

  • 2021
    Revealing and navigating a path to climate-ready crops
    ARC Discovery Early Career Researcher Award
    Open grant
  • 2018 - 2022
    Rooty: a root ideotype toolbox to support improved wheat yields
    Grains Research & Development Corporation
    Open grant
  • 2018 - 2023
    FastStack - evolutionary computing to stack desirable alleles in wheat
    ARC Linkage Projects
    Open grant

Supervision

Availability

Dr Kai Voss-Fels is:
Available for supervision

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Supervision history

Current supervision

Completed supervision

Media

Enquiries

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