
Book Chapter
                  Wong, Albert Chern Sun, Lam, Yasmine, Hintzsche, Jessica, Restall, Jemma and Godwin, Ian D.  (2022). Genome editing towards sorghum improvement. Genome Editing Technologies for Crop Improvement. (pp. 295-321) edited by Kaijun Zhao, Rukmini Mishra and Raj Kumar Joshi. Singapore: Springer. doi: 10.1007/978-981-19-0600-8_14
                
              Journal Articles
                  Taylor, Katia, Dixon, Richard, Taleski, Michael, Hintzsche, Jessica, Aldiss, Zachary, Massel, Karen, Robinson, Hannah, Gagliardini, Valeria, Grossniklaus, Ueli, Godwin, Ian, Hickey, Lee and Djordjevic, Michael Anthony (2025). CEPR1 function across plant lineages: peptide hormone recognition by cereal crop orthologs and developmental roles in barley. Journal of Experimental Botany eraf316. doi: 10.1093/jxb/eraf316
                
              
                  Finnegan, E. Jean, Crisp, Peter A., Zhang, Peng, Eglitis-Sexton, Judith, Greenwood, Julian, Hintzsche, Jessica, Li, Jianbo, Taylor, Jen, Wallace, Xiaomei and Swain, Stephen (2025). Testing the potential of zebularine to induce heritable changes in crop growth and development. Theoretical and Applied Genetics, 138 (1) 26, 26. doi: 10.1007/s00122-024-04799-3
                
              
                  Massel, Karen, Hintzsche, Jessica, Restall, Jemma, Kerr, Edward D., Schulz, Benjamin L. and Godwin, Ian D. (2022). CRISPR-knockout of β-kafirin in sorghum does not recapitulate the grain quality of natural mutants. Planta, 257 (1) 8, 1-14. doi: 10.1007/s00425-022-04038-3
                
              
                  Wong, Albert Chern Sun, Massel, Karen, Lam, Yasmine, Hintzsche, Jessica and Chauhan, Bhagirath Singh (2022). Biotechnological road map for innovative weed management. Frontiers in Plant Science, 13 887723, 887723. doi: 10.3389/fpls.2022.887723
                
              
                  Massel, Karen, Lam, Yasmine, Hintzsche, Jessica, Lester, Nicholas, Botella, Jose R. and Godwin, Ian D. (2021). Endogenous U6 promoters improve CRISPR/Cas9 editing efficiencies in Sorghum bicolor and show potential for applications in other cereals. Plant Cell Reports, 41 (2), 489-492. doi: 10.1007/s00299-021-02816-z