Dr Huanan Su
Research Fellow
Queensland Alliance for Agriculture and Food Innovation
Book Chapter
Zhang, M. B., Chu, X. T., Su, H. N., Hastwell, A. H., Gresshoff, P. M. and Ferguson, B. J. (2018). Advances in understanding soybean physiology and growth. Achieving sustainable cultivation of soybeans: volume 1 breeding and cultivation techniques. (pp. 3-22) edited by Henry T. Nguyen. Sawston, Cambridge, United Kingdom: Burleigh Dodds Science Publishing. doi: 10.19103/as.2017.0034.01
Journal Articles
Gresshoff, Peter M., Su, Chao, Su, Huanan, Hastwell, April, Cha, Yanyan, Zhang, Mengbai, Grundy, Estelle B., Chu, Xitong, Ferguson, Brett J. and Li, Xia (2025). Functional genomics dissection of the nodulation autoregulation pathway (AON) in soybean (Glycine max). Journal of Integrative Plant Biology, 67 (3), 762-772. doi: 10.1111/jipb.13898
Su, Huanan, Zhang, Mengbai, Grundy, Estelle B. and Ferguson, Brett J. (2025). New integrative vectors increase agrobacterium rhizogenes transformation and help characterise roles for soybean GmTML gene family members. Plant, Cell and Environment. doi: 10.1111/pce.15380
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
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
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
Peng, Ting, Kang, Jing-Liang, Xiong, Xin-Ting, Cheng, Fang-Ting, Zhou, Xiao-Juan, Dai, Wen-Shan, Wang, Min, Li, Zhong-Yang, Su, Hua-Nan and Zhong, Ba-Lian (2021). Integrated transcriptomics and metabolomics analyses provide insights into the response of Chongyi wild mandarin to Candidatus liberibacter Asiaticus Infection. Frontiers in Plant Science, 12 748209. doi: 10.3389/fpls.2021.748209
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
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
Yu, Hai‐Zhong, Huang, Yu‐Ling, Lu, Zhan‐Jun, Zhang, Qin, Su, Hua‐Nan, Du, Yi‐Ming, Yi, Long, Zhong, Ba‐Lian and Chen, Ci‐Xiang (2020). Inhibition of trehalase affects the trehalose and chitin metabolism pathways in Diaphorina citri (Hemiptera: Psyllidae). Insect Science, 28 (3), 718-734. doi: 10.1111/1744-7917.12819
Yu, Hai-Zhong, Li, Ning-Yan, Zeng, Xiang-Dong, Song, Jian-Chun, Yu, Xiu-Dao, Su, Hua-Nan, Chen, Ci-Xiang, Yi, Long and Lu, Zhan-Jun (2020). Transcriptome analyses of Diaphorina citri midgut responses to Candidatus liberibacter asiaticus infection. Insects, 11 (3) 171, 1-16. doi: 10.3390/insects11030171
Fu, S., Bai, Z., Su, H., Liu, J., Hartung, J. S., Zhou, C. and Wang, X. (2020). Occurrence of prophage and historical perspectives associated with the dissemination of huanglongbing in mainland China. Plant Pathology, 69 (1), 132-138. doi: 10.1111/ppa.13100
Huang, Aijun, Ding, Min, Wang, Ying, Su, Huanan and Yi, Long (2020). Establishment of RT-LAMP assay for detection of citrus leaf blotch virus 柑橘叶斑驳病毒的 RT-LAMP 检测. Acta Horticulturae Sinica, 47 (11), 2215-2222. doi: 10.16420/j.issn.0513-353x.2020-0033
Lu, Zhan-Jun, Huang, Yu-Ling, Yu, Hai-Zhong, Li, Ning-Yan, Xie, Yan-Xin, Zhang, Qin, Zeng, Xiang-Dong, Hu, Hao, Huang, Ai-Jun, Yi, Long and Su, Hua-Nan (2019). Silencing of the chitin synthase gene is lethal to the Asian citrus psyllid, Diaphorina citri. International Journal of Molecular Sciences, 20 (15) 3734, 1-14. doi: 10.3390/ijms20153734
Hu, Wei, Kuang, Fan, Chun, Jiong, Lu, Zhanjun, Li, Xingtao, Zhao, Qiyang, Zhong, Balian, Su, Huanan, Zhang, Zhixiang and Zhang, Ning (2019). Uptake of soil-applied thiamethoxam in orange and its effect against Asian citrus psyllid in different seasons. Pest Management Science, 75 (5), 1339-1345. doi: 10.1002/ps.5248
Lu, Zhan-jun, Zhou, Cheng-hua, Yu, Hai-zhong, Huang, Yu-ling, Liu, Ying-xue, Xie, Yan-xin, Wang, Jie, Hu, Wei, Huang, Ai-jun, Su, Hua-nan and Yang, Chao (2019). Potential roles of insect Tropomyosin1-X1 isoform in the process of Candidatus Liberibacter asiaticus infection of Diaphorina citri. Journal of Insect Physiology, 114, 125-135. doi: 10.1016/j.jinsphys.2019.02.012
Ferguson, Brett J., Mens, Céline, Hastwell, April H., Zhang, Mengbal B., Su, Huanan, Jones, Candice H., Chu, Xitong and Gresshoff, Peter M. (2019). Legume nodulation: the host controls the party. Plant, Cell and Environment, 42 (1), 41-51. doi: 10.1111/pce.13348
Li, Xing-Tao, Su, Hua-Nan, Tan, Ke-Gang, Tong, Xiao-Nan and Zhong, Ba-Lian (2017). Fruit Malformation of Satsuma Mandarin (Citrus unshiu Marc.) Infected by Citrus Yellow Vein Clearing Virus. Journal of Phytopathology, 165 (5), 283-288. doi: 10.1111/jph.12560
Yu, Yun-qi, Wu, Qiong, Su, Hua-nan, Wang, Xue-feng, Cao, Meng-ji and Zhou, Chang-yong (2017). Small RNA deep sequencing reveals full-length genome of Citrus yellow vein clearing virus in Chongqing, China. Journal of Integrative Agriculture, 16 (2), 503-508. doi: 10.1016/S2095-3119(16)61533-2
Cao, M. J., Wu, Q., Atta, S., Su, H. N., Yu, Y. Q., Chen, H. M. and Zhou, C. Y. (2016). First molecular evidence of Citrus yellow vein clearing virus from Citrus in Punjab, Pakistan. Plant Disease, 100 (2), 540-540. doi: 10.1094/PDIS-05-15-0609-PDN
Wang, Xuefeng, Su, Huanan, Huang, Li, Deng, Xiaoling, Chen, Jianchi, Zhou, Changyong and Li, Zhongan (2015). Identification of a Novel 1033-Nucleotide Deletion Polymorphism in the Prophage Region of 'Candidatus Liberibacter asiaticus': Potential Applications for Bacterial Epidemiology. Journal of Phytopathology, 163 (7-8), 681-685. doi: 10.1111/jph.12307
Fu, S. M., Fu, S. M., Hartung, John, Zhou, C. Y., Su, H. N., Tan, J. and Li, Z. A. (2015). Ultrastructural changes and putative phage particles observed in sweet orange leaves infected with ‘candidatus liberibacter asiaticus’. Plant Disease, 99 (3) A003, 320-324. doi: 10.1094/PDIS-01-14-0106-RE
Wu, Qiong, Cao, Mengji, Su, Huanan, Atta, Sagheer, Yang, Fangyun, Wang, Xuefeng and Zhou, Changyong (2014). Molecular characterization and phylogenetic analysis of Citrus viroid I-LSS variants from citrus in Pakistan and China reveals their possible geographic origin. European Journal of Plant Pathology, 139 (1), 13-17. doi: 10.1007/s10658-014-0380-2
Wang, Xuefeng, Tan, Jin, Bai, Ziqin, Su, Huanan, Deng, Xiaoling, Li, Zhongan, Zhou, Changyong and Chen, Jianchi (2013). Detection and characterization of miniature inverted-repeat transposable elements in "Candidatus Liberibacter asiaticus". Journal of Bacteriology, 195 (17), 3979-3986. doi: 10.1128/JB.00413-13
Cao, Mengji, Atta, Sagheer, Su, Huanan, Wang, Xuefeng, Wu, Qiong, Li, Zhongan and Zhou, Changyong (2013). Molecular characterization and phylogenetic analysis of Citrus viroid V isolates from Pakistan. European Journal of Plant Pathology, 135 (1), 11-21. doi: 10.1007/s10658-012-0034-1
Wang, Xuefeng, Zhou, Changyong, Deng, Xiaoling, Su, Huanan and Chen, Jianchi (2012). Molecular characterization of a mosaic locus in the genome of 'Candidatus Liberibacter asiaticus'. BMC Microbiology, 12 18. doi: 10.1186/1471-2180-12-1822280531
Preprints
Su, Huanan, Zhang, Mengbai, Grundy, Estelle B. and Ferguson, Brett J. (2024). New integrative vectors increase Agrobacterium rhizogenes transformation and help characterise roles for soybean GmTML gene family members. doi: 10.1101/2024.07.25.605222