English Name:LIU Dan
中文名: 刘旦
Phone:0532-88702906
Email:liudan@caas.cn
Academic Title:Associate Professor
Supervisor:Master Supervisor
Department:Tobacco Genetics and Breeding Research Center
Group:Tobacco Germplasm Resources and Biological Breeding
Research Area:Plant-pathogen interactions; Tobacco variety resistance improvement; Cultivar development
Publications (as first author, corresponding author or co-corresponding author):
1. Madadi Meysam, Amiri Hamid, Pan Junting, Song Guojie, Liu Dan*, Gupta Vijai Kumar*, Aghbashlo Mortaza*, Tabatabaei Meisam*, 2025. Food loss and waste valorization offers a sustainable source of biopolymers in bioinks for 3D printing, Nature Food, 6(4):323-330, https://doi.org/ 10.1038/s43016-025-01146-7
2. Shen Zhan, Jiang Zipeng, Bai Yalin, Li Yangyang, Qiao Chan, Jiang Caihong, Cheng Lirui, Wang Yuanying, Zhang Yinchao*, Yang Aiguo*, Liu Dan*, 2025. WGCNA revealed a comprehensive gene co-expression network associated with brown spot in Nicotiana tabacum L., Industrial Crops and Products, 232: https://doi.org/10.1016/j.indcrop.2025.121299
3. Bai Yalin, Ji Yan, Jiang Zipeng, Li Zunqiang, Liu Zhengwen, Zhang Qiang, Zhang Yu, Jiang Caihong, Yang Aiguo, Cheng Lirui, Liu Dan*, 2025. A pectin methylesterase inhibitor NtPMEI21 negatively regulates resistance to brown spot disease in Nicotiana tabacum L., Plant Science, 359: https://doi.org/10.1016/j.plantsci.2025.112635
4. Li Caiyue, Zhang Qiang, Wang Xuebo, Liu Zhengwen, Zhang Xinyao, Jiang Caihong, Cheng Lirui, Yang Aiguo, Li Yangyang*, Ji Yan*, Liu Dan*, 2025. Transcriptomic and metabolomic analyses reveal molecular mechanisms of tobacco mosaic virus (TMV) resistance in Nicotiana tabacum L., BMC Plant Biology, 25: https://doi.org/ 10.1186/s12870-025-07053-0
5. Liu Dan *, Song Guojie *, Liu Liang, Madadi Meysam, Li Caiyue, Hu Wenhao, Zhang Yao, Liu Zicheng, Sun Chihe, Sun Fubao, 2025. Enhanced enzymatic hydrolysis of tobacco stalk via simultaneous deconstruction and modification through triton X-100-mediated organosolv pretreatment, Chemsuschem, 18: https://doi.org/ 10.1002/cssc.202500197
6. Wang Xuebo, Bai Yalin, Shen Zhan, Zhang Xinyao, Cai Changchun, Qiao Chan, Jiang Caihong, Cheng Lirui, Liu Dan*, Yang Aiguo*, 2024. Genome-wide analysis of tobacco NtTOM1/TOM3 gene family and identification of NtTOM1a/ NtTOM3a response to tobacco mosaic virus, BMC Plant Biology, 24: https://doi.org/10.1186/s12870-024-05632-1
7. Wang Xuebo, Shen Zhan, Li Caiyue, Bai Yalin, Li Yangyang, Zhang Wenhui, Li Zunqiang*, Jiang Caihong, Cheng Lirui, Yang Aiguo*, Liu Dan*, 2024. Fine mapping and identification of two NtTOM2A homeologs responsible for tobacco mosaic virus replication in tobacco (Nicotiana tabacum L.), BMC Plant Biology, 24: https://doi.org/10.1186/s12870-024-04744-y
8. Shen Zhan, Yang Xiaoning, Sun Yiwen, Jiang Caihong, Cheng Lirui, Liu Dan*, Wen Liuying*, Yang Aiguo*, 2024. Integrated transmission electron microscopy and proteomic analyses reveal the cytoarchitectural response to cucumber mosaic virus infection in tobacco, International Journal of Biological Macromolecules, 262: https://doi.org/10.1016/j.ijbiomac.2024.130100
9. Madadi Meysam, Liu Dan*, Qin Yuanhang, Zhang Yinchao, Karimi Keikhosro, Tabatabaei Meisam, Gupta Vijai Kumar, Aghbashlo Mortaza, Zahoor, Ali Sameh Samir, 2023. Integrated pretreatment of poplar biomass employing p-toluenesulfonic acid catalyzed liquid hot water and short-time ball milling for complete conversion to xylooligosaccharides, glucose, and native-like lignin, Bioresource Technology, 384: https://doi.org/10.1016/j.biortech.2023.129370
10. Wang Xuebo, Li Dandan, Tan Xiaolei, Cai Changchun, Zhang Xinyao, Shen Zhan, Yang Aiguo, Fu Xiankui*, Liu Dan*, 2023. CRISPR/Cas9-mediated targeted mutagenesis of two homoeoalleles in tobacco confers resistance to powdery mildew, Euphytica, 219: https://doi.org/10.1007/s10681-023-03196-z
11. Liu Dan *, Li Yang-Yang *, Zhou Zhi-Cheng, Xiang Xiaohua, Liu Xin, Wang Jie, Hu Zheng-Rong, Xiang Shi-Peng, Li Wei, Xiao Qin-Zhi, Wang Yuanying, Hu Ri-Sheng, Zhao Qiang, 2021. Tobacco transcription factor bHLH123 improves salt tolerance by activating NADPH oxidase NtRbohE expression, Plant Physiology, 186(3):1706-1720, https://doi.org/ 10.1093/plphys/kiab176
12. Liu Dan*, Cheng Yazeng, Gong Min, Zhao Qiang, Jiang Caihong, Cheng Lirui, Ren Min, Wang Yuanying, Yang Aiguo*, 2019. Comparative transcriptome analysis reveals differential gene expression in resistant and susceptible tobacco cultivars in response to infection by cucumber mosaic virus, Crop Journal, 7(3):307-321, https://doi.org/ 10.1016/j.cj.2018.11.008