代表性研究論文 (*為通訊作者):
[1]Hao Chen, Yongfeng Wang, Jiong Liu, Tian Zhao, Cuiling Yang, Qunying Ding, Yanfeng Zhang, Jianxin Mu, DaoJie Wang*. Identification of WRKY transcription factors responding to abiotic stresses in Brassica napus L. Planta, 2022, 255, DOI: https://doi.org/10.1007/s00425-021-03733-x
[2] Xiao, Zhongchun; Tang, Fang; Zhang, Liyuan; Li, Shengting; Wang, Shufeng; Huo, Qiang; Yang, Bo; Zhang, Chao; Wang, Daojie; Li, Qing; Wei, Lijuan; Guo, Tao; Qu, Cunmin; Lu, Kun; Zhang, Yanfeng; Guo, Liang*; Li, Jiana*; Li, Nannan*.The Brassica napus fatty acid exporter FAX1-1 contributes to biological yield, seed oil content, and oil quality.Biotechnology for Biofuels, 2021, 14(1): 190.
[3] Li, Yu; Chen, Hao; Li, Shengting; Yang, Cuiling; Ding, Qunying; Song, Chun-Peng*; Wang, DaoJie*.GhWRKY46 from upland cotton positively regulates the drought and salt stress responses in plant.Environmental and Experimental Botany, 2021, 186: 104438., https://doi.org/10.1016/j.envexpbot.2021.104438
[4] Shengting Li, Hao Chen, Zhi Hou, Yu Li, Cuiling Yang, DaoJie Wang*, ChunPeng Song*. Screening of abiotic stress‐ esponsive cotton genes using a cotton full‐length cDNA overexpressing Arabidopsis library. Journal of Integrative Plant Biology, 2020, doi: 10.1111/jipb.12861
[5] Liu, Leidi; Ding, Qunying; Liu, Jing; Yang, Cuiling; Chen, Hao; Zhang, Shufen; Zhu, Jiacheng; Wang, DaoJie*. Brassica napus COL transcription factor BnCOL2 negatively affects the tolerance of transgenic Arabidopsis to drought stress. Environmental and Experimental Botany, 2020, 178: 104171. DOI:10.1016/j.envexpbot.2020.104171
[6] Yang, Junnan; Chen, Hao; Yang, Cuiling; Ding, Qunying; Zhao, Tian; Wang, DaoJie*. A WRKY transcription factorWRKY184fromBrassica napusL. is involved in flowering and secondary wall development in transgenicArabidopsis thaliana. Plant Growth Regulation, 2020, 92(2): 427-440, DOI:10.1007/s10725-020-00652-x
[7] Wang, Hongliang; Guo, Siyi; Qiao, Xin; Guo, Jianfei; Li, Zuliang; Zhou, Yusen; Bai, Shenglong; Gao, Zhiyong; Wang, Daojie; Wang, Pengcheng; Galbraith, David W; Song, Chun Peng*.BZU2/ZmMUTE controls symmetrical division of guard mother cell and specifies neighbor cell fate in maize.PLoS Genetics, 2019, 15(8): e1008377.
[8] Wang, Pei*; Wang, Daojie; Lu, Jinhu.Controllability Analysis of a Gene Network for Arabidopsis thaliana Reveals Characteristics of Functional Gene Families.IEEE/ACM Transactions on Computational Biology and Bioinformatics, 2019, 16(3): 912-924.
[9] Pei Wang, Cuiling Yang, HaoChen, Longhai Luo, Qiuli Leng, Shicong Li, Zujing Han, Xinchun Li, Chunpeng Song, Xiao Zhang, Daojie Wang*. Exploring transcription factors reveals crucial members and regulatory networks involved in different abiotic stresses in Brassica napus L. BMC Plant Biology, 2018, 18(1): 202, https://doi.org/10.1186/s12870-018-1417-z
[10] Wang Zaiqing; Yang Cuiling; Chen Hao; Wang Pei; Wang Pengtao; Song Chunpeng; Zhang Xiao; Wang Daojie*. Multi-gene co-expression can improve comprehensive resistance to multiple abiotic stresses in Brassica napus L. Plant Science, 2018, 174: 410-419. https://doi.org/10.1016/j.plantsci.2018.06.014
[11] Pei Wang, Cuiling Yang, Hao Chen, Chunpeng Song, Xiao Zhang, Daojie Wang*. Transcriptomic basis for drought resistance in Brassica napus L. Scientific Reports, 2017, 7:40532, DOI: 10.1038/srep40532
[12] Li Weijie; Shang Haihong; Ge Qun; Zou Changsong; Cai Juan; Wang Daojie; Fan Senmiao; Zhang Zhen; Deng Xiaoying; Tan Yunna; Song Weiwu; Li Pengtao; Koffi Palanga Kibalou; Jamshed Muhammad; Lu Quanwei; Gong Wankui; Li Junwen; Shi Yuzhen; Chen Tingting; Gong Juwu; Liu Aiying; Yuan Youlu*.Genome-wide identification, phylogeny, and expression analysis of pectin methylesterases reveal their major role in cotton fiber development.BMC Genomics, 2016, 17(1): 1000.
[13] Wang, Daojie*; Yang, Cuiling; Lu, Ming; Huang, Fei; Guo, Aiguang; Song, Chunpeng*. Cloning and Characterization of Importin Alpha in Brassica napus L. Crop Science, 2013, 53(6):, 2538-2549, doi: 10.2135/cropsci2013.03.0174
[14] Daojie Wang*, Cuiling Yang, Long Dong, Jiacheng Zhu, Jianping Wang, Shufeng Zhang*. Comparative Transcriptome Analyses of Drought-Resistant and -Susceptible Brassica napus L. and Development of EST-SSR Markers by RNA-Seq. Journal of Plant Biology, 2015, 58: 259-269. DOI 10.1007/s12374-015-0113-x
[15] Dao-Jie Wang, Ai-Guang Guo, Dian-Rong Li , Jian-Hua Tian, Fei Huang. Cytological and molecular characterization of a novel monogenic dominant GMS(MDGMS)in rapeseed (Brassica napus L.). Plant Cell Reports., 2007.26(6): 571-579
[16] Jin-Feng Hua, Shuai Zhang, Jin-Jie Cui, Dao-Jie Wang, et al. Functional characterizations of one odorant binding protein and three chemosensory proteins from Apolygus lucorum (Meyer-Dur) (Hemiptera: Miridae) legs. Journal of Insect Physiology, 2013, 59(7): 690-696
[17] Jin-Feng Hua, Shuai Zhang, Jin-Jie Cui, Dao-Jie Wang, et al. Identification and binding characterization of three odorant binding proteins and one chemosensory protein from Apolygus lucorum (Meyer-Dur). Journal of Chemical Ecology, 2012, 38(9): 1163-1170
[18] Zhiyong Gao, Hao Liu, Hongliang Wang, Ning Li, Daojie Wang, et al. Generation of the genetic mutant population for the screening and characterization of the mutants in response to drought in maize. Chin. Sci. Bull, 2014, 59(8): 766-775
發(fā)表中文期刊論文:
[1]王勇鋒,楊翠玲,冷秋麗,陳浩,陳玉平,王道杰*. 甘藍型油菜BnNAC轉錄因子鑒定與非生物脅迫響應分析,《中國油料作物學報》,2020,42(4),545-553
[2]王道杰*,楊翠玲,董龍,李艷萍. 油菜抗逆相關基因FOX擬南芥文庫構建. 植物生理學報, 2015,51 (8):1257-1264
[3]王道杰*, 楊翠玲, 鄭軍, 王宏亮. 棉花胚性愈傷的快速誘導和繁殖(英文)[J]. 西北農業(yè)學報, 2015, 24 (07): 51-57.
[4]鄒華文, 王道杰, 邊秀秀, 商海紅, 楊新泉*. 近15年國家自然科學基金稻、麥類作物遺傳育種領域項目申請情況分析[J]. 作物學報, 2015, 41 (05): 820-828.
王道杰*; 楊翠玲; 李艷萍; 王再青.因子分析和數量分類在油菜種質資源遺傳多樣性研究中的應用.植物學研究, 2014, 3: 207-217.
[5]王道杰*,楊翠玲,劉展,董龍. 無花瓣油菜雄蕊心皮化突變體細胞學觀察及基因表達分析. 植物生理學報, 2014, 50(3): 290-296
[6]高志勇, 劉浩, 王宏亮, 李寧, 宋玉偉, 王道杰, 苗雨晨, 宋純鵬. 玉米遺傳突變體群體創(chuàng)制和干旱反應突變體篩選與鑒定[J]. 科學通報, 2014, 59 (03): 279-286.
[7]王道杰; 楊翠玲。國際學院非生物專業(yè)本科生開設《現(xiàn)代生命科學導論》課程的必要性和方法探討,中國校外教育, 2014, (30): 99+101.
[8]滑金鋒, 張帥, 崔金杰, 王道杰, 王春義, 雒珺瑜, 呂麗敏. 綠盲蝽化學感受蛋白基因AlucCSP1的克隆、表達譜分析及結合特征[J]. 中國農業(yè)科學, 2012, 45 (20): 4187-4196.
[8]邊秀秀, 李志蘭, 任紅艷, 王道杰, 楊新泉. 我國大麥產業(yè)發(fā)展現(xiàn)狀和遺傳育種研究重點趨勢分析[J]. 生物技術進展, 2012, 2 (05): 309-314.
[9]王道杰*, 桂月靖, 楊翠玲, 張書芬, 朱家成, 王建平. 油菜抗旱性及鑒定方法與指標 Ⅲ.油菜苗期抗旱性及鑒定指標篩選[J]. 西北農業(yè)學報, 2012, 21 (05): 108-113.
[10]王道杰, 桂月靖, 楊翠玲, 張書芬, 朱家成, 王建平. 油菜抗旱性及鑒定方法與指標 Ⅱ.油菜芽期抗旱性鑒定指標的研究[J]. 西北農業(yè)學報, 2012, 21 (03): 84-91.
[11]王道杰*, 楊翠玲, 桂月靖, 張書芬, 朱家成, 王建平. 油菜抗旱性及鑒定方法與指標Ⅰ.油菜早期抗旱性鑒定模擬技術體系構建[J]. 西北農業(yè)學報, 2011, 20 (12): 77-82.
[12]王道杰, 楊翠玲, 喬明寬. 生物柴油的發(fā)展概況與應用前景[J]. 化學研究, 2009, 20 (03): 108-112.
[13]王道杰*, 楊翠玲, 陸鳴. 真空滲透法轉化油菜及轉化種子的篩選[J]. 植物學報, 2009, 44 (02): 216-222.
[14]王道杰, 楊翠玲, 黃飛, 郭藹光*. 單顯性細胞核雄性不育油菜花蕾表達蛋白比較研究[J]. 西北植物學報, 2008, (06): 1101-1105.
[15]王道杰*, 郭藹光, 楊翠玲, 李殿榮, 田建華. 植物花器官發(fā)育的分子機理研究進展[J]. 西北農林科技大學學報(自然科學版), 2007, 35(02): 203-209.
[16]王道杰*, 郭藹光, 李殿榮, 田建華. 油菜單顯性核雄性不育基因的分子標記[J]. 植物生理與分子生物學學報, 2006, 32(05): 513-518.
[17]黃飛, 王道杰, 黎斌, 郭藹光, 李殿榮, 田建華. 油菜雄性核不育系及其等位可育系小孢子發(fā)育過程的比較研究[J]. 西北植物學報, 2006, (06): 1159-1164.
[18]李永紅, 王灝, 李建廠, 王道杰, 李殿榮. 核盤菌對油菜、向日葵和大豆的侵染及其致病性分化研究[J]. 植物病理學報, 2005, (06): 486-492.
[19]宋仁剛,王道杰,王宏,張崇榮. 陜南優(yōu)質油菜豐產栽培技術研究[J]. 西北農業(yè)學報, 2005, (01): 158-161.
[20]王道杰,田建華,王灝,胡選萍,李殿榮,郭藹光. 油菜單顯性核不育及其不育基因的RAPD標記[J]. 西北植物學報, 2003, (09): 1556-1560.
[21]王灝,王道杰,李成梅,李殿榮. 利用RAPD技術進行雜交油菜雜油59品種鑒定和純度分析[J]. 中國農業(yè)科學, 2002, (12): 1550-1555.
[22]胡選萍,王道杰,嚴靜梅. 甘藍型油菜子葉高頻率再生體系的篩選研究[J]. 陜西農業(yè)科學, 2002, (09): 3-6.
[23]王灝,王道杰,譚小力,胡選萍,李殿榮. 用于RAPD分析的油菜總DNA的快速提取[J]. 西北農業(yè)學報, 2001, (03): 32-34.
[24]王道杰,王灝,楊翠玲,李殿榮. 油菜雄性不育分子機理研究進展[J]. 中國農學通報, 2001, (02): 43-46.
[25]劉杰,劉公社,李殿榮,齊冬梅,王灝,王道杰. RAPD方法鑒定油菜“雜油59”種子純度的研究[J]. 應用與環(huán)境生物學報, 2000, (06): 526-530.
[26]王灝,王道杰,葉可輝,李殿榮. 清水噴施對甘藍型油菜細胞質雄性不育系結實的影響研究[J]. 干旱地區(qū)農業(yè)研究, 2000, (03): 55-59.
[27]王灝,王道杰,李殿榮. 甘藍型油菜CMS微粉活力研究及其對雜交制種純度的影響[J]. 西北植物學報, 2000, (01): 92-97.
[28]王道杰,王灝,李殿榮. 生物技術在油菜遺傳改良中的應用[J]. 西北農業(yè)大學學報, 1999, (02): 93-98.
[29]王灝,王道杰. 分子標記技術在農業(yè)上的應用[J]. 作物研究, 1998, (04): 42-46.
[30]王灝,王道杰,李殿榮. 油菜雌雄性器官活力的比較研究[J]. 西北農業(yè)學報, 1998, (03): 38-41.
[31]吳光成,趙宗科,王道杰,孟榮華. 玉米自交系主要數量性狀的配合力研究[J]. 西北農林科技大學學報(自然科學版), 1995, (S2): 7-14.
[32]吳光成,羅淑平,孟榮華,王道杰. 九個玉米自交系籽粒產量的研究[J]. 陜西農業(yè)科學, 1995, (03): 10-11.