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2024

Book Chapter

Rhizobia and Legume Nodulation Genes

Hastwell, A.H. and Ferguson, B.J. (2024). Rhizobia and Legume Nodulation Genes. Reference Module in Life Sciences. Elsevier. doi: 10.1016/b978-0-12-822563-9.00185-2

Rhizobia and Legume Nodulation Genes

2023

Journal Article

The cytoprotective co-chaperone, AtBAG4, supports increased nodulation and seed protein content in chickpea without yield penalty

Thanthrige, Nipuni, Weston-Olliver, Grace, Das Bhowmik, Sudipta, Friedl, Johannes, Rowlings, David, Kabbage, Mehdi, Ferguson, Brett J., Mundree, Sagadevan and Williams, Brett (2023). The cytoprotective co-chaperone, AtBAG4, supports increased nodulation and seed protein content in chickpea without yield penalty. Scientific Reports, 13 (1) 18553, 18553. doi: 10.1038/s41598-023-45771-3

The cytoprotective co-chaperone, AtBAG4, supports increased nodulation and seed protein content in chickpea without yield penalty

2023

Journal Article

Legumes regulate symbiosis with rhizobia via their innate immune system

Grundy, Estelle B., Gresshoff, Peter M., Su, Huanan and Ferguson, Brett J. (2023). Legumes regulate symbiosis with rhizobia via their innate immune system. International Journal of Molecular Sciences, 24 (3) 2800, 2800. doi: 10.3390/ijms24032800

Legumes regulate symbiosis with rhizobia via their innate immune system

2023

Journal Article

Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules, volume II

Fan, Kejing, Ferguson, Brett James, Muñoz, Nacira Belen, Li, Man-Wah and Lam, Hon-Ming (2023). Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules, volume II. Frontiers in Plant Science, 14 1141269, 1141269. doi: 10.3389/fpls.2023.1141269

Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules, volume II

2023

Journal Article

A nitrogen fixing symbiosis-specific pathway required for legume flowering

Yun, Jinxia, Wang, Can, Zhang, Fengrong, Chen, Li, Sun, Zhengxi, Cai, Yupeng, Luo, Yuanqing, Liao, Junwen, Wang, Yongliang, Cha, Yanyan, Zhang, Xuehai, Ren, Ya, Wu, Jun, Hasegawa, Paul M., Tian, Changfu, Su, Huanan, Ferguson, Brett J., Gresshoff, Peter M., Hou, Wensheng, Han, Tianfu and Li, Xia (2023). A nitrogen fixing symbiosis-specific pathway required for legume flowering. Science Advances, 9 (2) eade1150, 1-15. doi: 10.1126/sciadv.ade1150

A nitrogen fixing symbiosis-specific pathway required for legume flowering

2023

Journal Article

Nodule formation and nitrogen fixation in Acacia holosericea plants grown in soil admixed with iron ore tailings

Yu, Lina, You, Fang, Wu, Songlin, Lu, Zhaohua, Hastwell, April, Ferguson, Brett and Huang, Longbin (2023). Nodule formation and nitrogen fixation in Acacia holosericea plants grown in soil admixed with iron ore tailings. Journal of Soil Science and Plant Nutrition, 23 (1), 1085-1095. doi: 10.1007/s42729-022-01105-2

Nodule formation and nitrogen fixation in Acacia holosericea plants grown in soil admixed with iron ore tailings

2022

Journal Article

Spatiotemporal changes in gibberellin content are required for soybean nodulation

Chu, Xitong, Su, Huanan, Hayashi, Satomi, Gresshoff, Peter M. and Ferguson, Brett J. (2022). Spatiotemporal changes in gibberellin content are required for soybean nodulation. New Phytologist, 234 (2), 479-493. doi: 10.1111/nph.17902

Spatiotemporal changes in gibberellin content are required for soybean nodulation

2022

Book Chapter

Soybean CLE peptides and their CLAVATA-like signaling pathways

Jones, Candice H., Hastwell, April H., Gresshoff, Peter M. and Ferguson, Brett J. (2022). Soybean CLE peptides and their CLAVATA-like signaling pathways. Soybean physiology and genetics. (pp. 153-175) edited by Hon-Ming Lam and Man-Wah Li. London, United Kingdom: Academic Press. doi: 10.1016/bs.abr.2022.02.006

Soybean CLE peptides and their CLAVATA-like signaling pathways

2021

Journal Article

Potential biotechnological applications of autophagy for agriculture

Thanthrige, Nipuni, Bhowmik, Sudipta Das, Ferguson, Brett J., Kabbage, Mehdi, Mundree, Sagadevan G. and Williams, Brett (2021). Potential biotechnological applications of autophagy for agriculture. Frontiers in Plant Science, 12 760407, 760407. doi: 10.3389/fpls.2021.760407

Potential biotechnological applications of autophagy for agriculture

2021

Journal Article

Shoot‐derived miR2111 controls legume root and nodule development

Zhang, Mengbai, Su, Huanan, Gresshoff, Peter M. and Ferguson, Brett J. (2021). Shoot‐derived miR2111 controls legume root and nodule development. Plant, Cell and Environment, 44 (5), 1627-1641. doi: 10.1111/pce.13992

Shoot‐derived miR2111 controls legume root and nodule development

2021

Journal Article

Characterisation of Medicago truncatula CLE34 and CLE35 in nitrate and rhizobia regulation of nodulation

Mens, Celine, Hastwell, April H., Su, Huanan, Gresshoff, Peter M., Mathesius, Ulrike and Ferguson, Brett J. (2021). Characterisation of Medicago truncatula CLE34 and CLE35 in nitrate and rhizobia regulation of nodulation. New Phytologist, 229 (5) nph.17010, 2525-2534. doi: 10.1111/nph.17010

Characterisation of Medicago truncatula CLE34 and CLE35 in nitrate and rhizobia regulation of nodulation

2020

Other Outputs

Characterisation of Medicago truncatula CLE34 and CLE35 in nodulation control

Mens, Celine, Hastwell, April, Su, Huanan, Gresshoff, Peter, Mathesius, Ulrike and Ferguson, Brett (2020). Characterisation of Medicago truncatula CLE34 and CLE35 in nodulation control.

Characterisation of Medicago truncatula CLE34 and CLE35 in nodulation control

2020

Other Outputs

Shoot-derived miR2111 controls legume root and nodule development

Zhang, M.B., Su, H.N., Gresshoff, P.M. and Ferguson, B.J. (2020). Shoot-derived miR2111 controls legume root and nodule development.

Shoot-derived miR2111 controls legume root and nodule development

2020

Journal Article

Centrality of BAGs in Plant PCD, Stress Responses, and Host Defense

Thanthrige, Nipuni, Jain, Sachin, Bhowmik, Sudipta Das, Ferguson, Brett J., Kabbage, Mehdi, Mundree, Sagadevan and Williams, Brett (2020). Centrality of BAGs in Plant PCD, Stress Responses, and Host Defense. Trends in Plant Science, 25 (11), 1131-1140. doi: 10.1016/j.tplants.2020.04.012

Centrality of BAGs in Plant PCD, Stress Responses, and Host Defense

2020

Conference Publication

Local and systemic effect of cytokinins on soybean nodulation and regulation of their isopentenyl transferase (IPT) biosynthesis genes following rhizobia inoculation

Mens, C., Li, D., Haaima, L.E., Gresshoff, P.M. and Ferguson, B.J. (2020). Local and systemic effect of cytokinins on soybean nodulation and regulation of their isopentenyl transferase (IPT) biosynthesis genes following rhizobia inoculation. Third International Legume Society Conference, Poznan, Poland, 21-24 May 2019. Cordoba, Spain: The International Legume Society.

Local and systemic effect of cytokinins on soybean nodulation and regulation of their isopentenyl transferase (IPT) biosynthesis genes following rhizobia inoculation

2019

Journal Article

Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules

Ferguson, Brett James, Minamisawa, Kiwamu, Munoz, Nacira Belen and Lam, Hon-Ming (2019). Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules. Frontiers in Plant Science, 10 898, 898. doi: 10.3389/fpls.2019.00898

Editorial: Metabolic adjustments and gene expression reprogramming for symbiotic nitrogen fixation in legume nodules

2019

Journal Article

GmYUC2a mediates auxin biosynthesis during root development and nodulation in soybean

Wang, Youning, Yang, Wei, Zuo, Yanyan, Zhu, Lin, Hastwell, April H., Chen, Liang, Tian, Yinping, Su, Chao, Ferguson, Brett J. and Li, Xia (2019). GmYUC2a mediates auxin biosynthesis during root development and nodulation in soybean. Journal of Experimental Botany, 70 (12), 3165-3176. doi: 10.1093/jxb/erz144

GmYUC2a mediates auxin biosynthesis during root development and nodulation in soybean

2019

Journal Article

Complete genome sequence of Achromobacter spanius UQ283, a soilborne isolate exhibiting plant growth-promoting properties

Wass, Taylor J., Syed-Ab-Rahman, Sharifah Farhana, Carvalhais, Lilia C., Ferguson, Brett J. and Schenk, Peer M. (2019). Complete genome sequence of Achromobacter spanius UQ283, a soilborne isolate exhibiting plant growth-promoting properties. Microbiology Resource Announcements, 8 (16) e00236-19. doi: 10.1128/mra.00236-19

Complete genome sequence of Achromobacter spanius UQ283, a soilborne isolate exhibiting plant growth-promoting properties

2019

Journal Article

Suppression of Phytophthora capsici infection and promotion of tomato growth by soil bacteria

Syed-Ab-Rahman, Sharifah Farhana, Xiao, Yawen, Carvalhais, Lilia C., Ferguson, Brett J. and Schenk, Peer M. (2019). Suppression of Phytophthora capsici infection and promotion of tomato growth by soil bacteria. Rhizosphere, 9, 72-75. doi: 10.1016/j.rhisph.2018.11.007

Suppression of Phytophthora capsici infection and promotion of tomato growth by soil bacteria

2019

Journal Article

Modelling predicts that soybean is poised to dominate crop production across Africa

Foyer, Christine H., Siddique, Kadambot H.M., Tai, Amos P.K., Anders, Sven, Fodor, Nándor, Wong, Fuk-Ling, Ludidi, Ndiko, Chapman, Mark A., Ferguson, Brett J., Considine, Michael J., Zabel, Florian, Prasad, P.V. Vara, Varshney, Rajeev K., Nguyen, Henry T. and Lam, Hon-Ming (2019). Modelling predicts that soybean is poised to dominate crop production across Africa. Plant Cell and Environment, 42 (1), 373-385. doi: 10.1111/pce.13466

Modelling predicts that soybean is poised to dominate crop production across Africa