學術論文 1. Ali M. E., Maria B, Ibrahim A. A., Wang Z. Z., Ahmed K., Ahmed S., Hasan A., Mohammad N.K., Hamada M.H, Ibrahim M., Kuai J., Zhou G.S., Wang B.*. Antioxidative and Metabolic Contribution to Salinity Stress Responses in Two Rapeseed Cultivars during the Early Seedling Stage. Antioxidants. 2021, 10, 1227. https:// doi.org/10.3390/antiox10081227(5年IF=6.6,通訊作者) 2. Ali M, Maria B., Wang C.Y., Ahmed M. H., Karim M.T., Elsayed N., Kuai J., Zhou G.S., Bo Wang B.*. Selenium and zinc oxide nanoparticles modulate the molecular and morpho-physiological processes during seed germination of Brassica napus under salt stress. Ecotoxicology and environmental safety. 2021, 225: pp.112695(環境科學top期刊,IF=6.29,通訊作者) 3. Ali M.E. Maria B., Ibrahim A.A., Ahmed K., Ahmed S., Wang Z.K., Akram S., Elsayed N., Mohammed A., Kuai J., Wang B.*, Zhou G.S.*, Modulation of salinity impact on early seedling stage via nano-priming application of zinc oxide on rapeseed (Brassica napus L.), Plant Physiology and Biochemistry,2021, 166:376-392(共同通訊作者) 4. Ibrahim A. AbdElMola, Nesma Shalby, et al., Stomatal and Photosynthetic Traits Are Associated with Investigating Sodium Chloride Tolerance of Brassica napus L. Cultivars, Plants (Basel). 2020, 9(1): 62. (通訊作者) 5. Mohamed IAA, Shalby NMA, El-Badri A, et al., Stomata and Xylem Vessels Traits Improved by Melatonin Application Contribute to Enhancing Salt Tolerance and Fatty Acid Composition of Brassica napus L. Plants. Agronomy. 2020, 10: 1186. (共同通訊作者) 6. Xu SY, Wang JM, Tian H, Wang B*. Automatic measuring approach and device for mature rapeseed’s plant type parameters, Journal of Electrical and Computer Engineering. 2019, https://doi.org/10.1155/2019/6834290 (EI,通訊作者) 7. Ma Y.X., Wang Q.H.*, Wang B.*, Kuai J., Zhou G.S. and Fu T.D. Effect of Fresh Forage Canola on Production Performance and Egg Quality of Laying Hens, Intl J Agric Biol. 2021, 25: 995‒1001(共同通訊作者) 8. 張建,謝田晉,尉曉楠,周廣生,汪波*. 無人機多角度成像方式的飼料油菜生物量估算研究. 作物學報,2021, 47(9): 1816-1823(通訊作者) 9. 宋麗君,聶曉玉,何磊磊,蒯婕,楊華,郭安國,黃俊生,傅廷棟,汪波*,周廣生.飼用大豆品種耐蔭性鑒定指标篩選及綜合評價,作物學報,2021(通訊作者) 10. 郭清雲,汪波*,蒯婕,張椿雨,李根澤,康惠仙,傅廷棟,周廣生. 油菜感抗品種混播對根腫病防控效果的影響, 作物學報, 2020, 46(5): 725-733(通訊作者) 11. 徐勝勇,盧昆,潘禮禮,劉泰格,周雨欣,汪波*. 基于RGB-D相機的油菜分枝三維重構與角果識别定位[J].農業機械學報,2019,50(02): 21-27. (EI) (通訊作者) 12. 王旺年,王宗铠,汪波*,郭安國,楊華,劉芳,蒯婕,傅廷棟,周廣生,飼料油菜與牧草混合冬播效應研究,中國油料作物學報,2019,41(3): 317-323(通訊作者) 13. 汪波,宋麗君,王宗铠,王積軍,熊明清,甘麗,劉芳,張哲,蒯婕,傅廷棟,周廣生*,我國飼料油菜種植及應用技術研究進展,中國油料作物學報,2018,40(5): 695-701. 13. Pingan Guo, Bo Wang*, Yancheng Zheng, Jie Chen, Wenlue Li, Lijun Liu and Dingxiang Peng. Transcriptome analyses provide insights into the effect of temperature change on fiber quality of ramie. Industrial Crops and Products, 2020, 152: 112544.(一區期刊,通訊作者) 14. Wang Y., Bao Y., Zheng, Y., Guo, A., Peng, D., & Wang, B*. (2020). Promoter PPSP1-5-BnPSP-1 from Ramie (Boehmeria nivea L. Gaud.) Can Drive Phloem-Specific GUS Expression in Arabidopsis thaliana. Frontiers in Genetics, 11, 1637. (通訊作者) 15. Guo P, Zheng Y, Peng D, Liu L, Dai L, Chen C and Wang B*. Identification and expression characterization of the Phloem Protein 2 (PP2) genes in ramie (Boehmeria nivea L. Gaudich). Scientific Reports, 2018, 8(1):10734. (通訊) 16. Guo P, Zheng Y, He Y, Liu L, Wang B*, Peng D*. Isolation and functional characterizati-on of SUCROSE SYNTHASE 1 and SUCROSE TRANSPORTER 2 promoters from ramie (Boehmeria nivea L. Gaudich). Gene, 2019, 685:114-124. (共同通訊) 17. An X, Chen J, Zhang JY, Liao YW, Dai LJ, Wang, B*, Liu LJ, Peng DX*. Transcriptome profiling and identification of transcription factors in ramie (Boehmeria nivea L. Gaud) in response to PEG treatment, using Illumina paired-end sequencing technology. International Journal of Molecular Science. 2015, 16(2): 3493-3511 DOI: 10.3390/ijms16023493(共同通訊作者) 18. An X, Wang B*, Liu LJ, Jiang H, Chen J, Ye ST, Chen LY, Guo PA, Huang X, Peng DX. Agrobacterium-mediated genetic transformation and regeneration of transgenic plants using leaf midribs as explants in ramie [Boehmeria nivea (L.) Gaud]. Molecular Biology Reports, 2014, 41(5): 3257-3269(通訊作者) 19. Chen J, Pei Z, Dai L, Wang B*, Liu L, Peng DX*. Transcriptome profiling using pyrosequencing shows genes associated with bast fiber development in ramie (Boehmeria nivea L.). BMC Genomics, (2014) 15: 919.(共同通訊作者) 20. An X, Liao YW, Zhang JY, Dai LJ, Zhang N, Wang B*, Liu LJ, Peng DX*. Overexpression of rice NAC gene SNAC1 in ramie improves drought and salt tolerance, Plant Growth Regulation, 2014, (10): 211-223(共同通訊作者) 21. Huang X, Chen J, Bao Y, Liu L, Jiang H, An X, Dai LJ, Wang B* and Peng DX*. Transcript profiling reveals auxin and cytokinin signaling pathways and transcription regulation during in vitro organogenesis of ramie (Boehmeria nivea L. Gaud). PLoS ONE, 2014, 9(11):(共同通訊作者) 22. Wang XX, Chen J, Wang B*, Liu LJ, Jiang H, Tang DL, Peng DX. Characterization by suppression subtractive hybridization of transcripts that are differentially expressed in leaves of anthracnose-resistant ramie cultivar. Plant Mol Biol Rep. 2012, 30:547–555(通訊作者) 23. Wang B, Peng DX, Sun ZX, Zhang N, Gao SM. In vitro plant regeneration from seedling-derived explants of ramie (Boehmeria nivea L. (Gaud)). In Vitro Cellular & Developmental Biology-PLANT, 2008, 47:105-111 (第一作者) 24. Wang B, Peng DX, Liu LJ, Sun ZX, Zhang N, Gao SM. An efficient adventitious shoot regeneration system for ramie (Boehmeria nivea Gaud) using thidiazuron. Botanical Studies, 2007, 48: 173-180(第一作者)) 25. 汪波,彭定祥(通訊作者),孫珍夏,張娜,邢秀龍.根癌農杆菌介導苎麻轉綠色熒光蛋白(GFP)基因植株再生.作物學報,2007,33(10):1606-1610 教材與著作 1. 《作物栽培學》參編,2019,高等教育出版社 2. 《雜交油菜的遺傳與育種》,參編,2019,湖北科學技術出版社 3. 《身邊的農作物》(科普讀物),獨撰,2019,武漢出版社 |