杜庆章
近期热点
资料介绍
个人简历
2020. 07-至今:北京林业大学林木遗传育种,教授(破格)/博士生导师\r2018. 03-2020. 07:北京林业大学林木遗传育种,副教授/博士生导师\r2018.07-2018.08:加拿大UBC林学院,学术交流\r2017. 01-2018. 02:北京林业大学林木遗传育种,副教授/硕士生导师\r2013.07-2016.12:北京林业大学林木遗传育种,讲师/硕士生导师\r2008. 09-2014. 07:北京林业大学林木遗传育种,研究生/博士\r2004. 09-2008. 07:山东农业大学林学,本科/学士\r\r成果与奖励\r1)2020年:霍英东青年教师基金\r2)2020年:北京市科技进步二等奖(排名第2)\r3)2019年:教育部科技进步一等奖(排名第2)\r4)2018年:教育部自然科学二等奖(排名第2)\r5)2018年:北京市科技新星计划\r6)2016年:国家林业局梁希林业科学技术二等奖(排名第2)\r7)2016年:中国林学会第六届梁希青年论文一等奖\r8)2015年:北京市优秀人才资助计划\r9)2014年:中国林学会第五届梁希青年论文一等奖\r10)2014年:中国林学会“梁希优秀学子奖”\r11)2014年:北京林业大学优秀博士学位论文研究领域
"""""林木基因资源挖掘与良种选育、基因组学与分子设计育种\r围绕优质、高产与抗逆林木良种选育目标,主要开展杨树种质资源评价与分子育种研究工作。具体包括优质、高产与抗逆性状的基因挖掘与协同调控网络解析,分子设计育种技术研发与良种选育"近期论文
Wenjie Lu, Liang Xiao, Mingyang Quan, Qingshi Wang, Yousry El-Kassaby, Qingzhang Du*(杜庆章)and Zhang DQ*. Linkage-linkage disequilibrium dissection of the epigenetic quantitative trait loci (epiQTLs) underlying growth and wood properties in Populus. New Phytologist, 2020, 225: 1218-1233\r\rLiang Xiao, Xin Liu, Wenjie Lu, Panfei Chen, Mingyang Quan, Jingna Si, Qingzhang Du*(杜庆章)and Deqiang Zhang*. Genetic dissection of the gene coexpression network underlying photosynthesis in Populus. Plant Biotechnology Journal, 2020, 18: 1015–1026\r\rQingzhang Du(杜庆章), Xiaohui Yang, Jianbo Xie, Mingyang Quan, Liang Xiao, wenjie Lu, Jiaxing Tian, Chenrui Gong, Jinhui Chen, Bailian Li and Deqiang Zhang*. Time-speci?c and pleiotropic quantitative trait loci coordinately modulate stem growth in Populus. Plant Biotechnology Journal, 2019, 17: 608–624\r\rQingzhang Du(杜庆章), Wenjie Lu, Mingyang Quan, Liang Xiao, Fangyuan Song, Peng Li, Daling Zhou, Jianbo Xie, Longxin Wang and Deqiang Zhang* Genome-wide association studies to improve wood properties: challenges and prospects. Frontiers in Plant Science, 2018, 9: 1912. doi: 10.3389/fpls.2018.01912\r\rQingzhang Du(杜庆章), Chenrui Gong, Qingshi Wang, Daling Zhou, Haijiao Yang, Wei Pan, Bailian Li and Deqiang Zhang*. Genetic architecture of growth traits in Populus revealed by integrated QTL analysis and association studies. New Phytologist, 2016, 209: 1067–1082.\r\rQingzhang Du(杜庆章), Wei Pan, Baohua Xu, Bailian Li, and Deqiang Zhang*. Polymorphic simple sequence repeat (SSR) loci within cellulose synthase (PtoCesA) genes are associated with growth and wood properties in Populus tomentosa. New Phytologist, 2013, 197(3): 763-776.\r\rQingzhang Du(杜庆章), Jiaxing Tian, Xiaohui Yang, Wei Pan, Baohua Xu, Bailian Li, Par K. Ingvarsson, and Deqiang Zhang. Identification of additive, dominant and epistatic variation conferred by key genes in cellulose biosynthesis pathway in Populus tomentosa. DNA Research, 2015, 22(1), 53–67\r\rQingzhang Du(杜庆章), Chenrui Gong, Wei Pan, and Deqiang Zhang*. Development and application of microsatellites in candidate genes involved in wood formation in the Chinese white poplar (Populus tomentosa Carr.). DNA Research, 2013, 20(1): 31-44.\r\rQingzhang Du(杜庆章), Zunzheng Wei, Xing Zhao, Xiaohui Yang, Dong Ci, Deqiang Zhang Dissection of additive, dominant, epistatic roles of allelic variation within heat shock factor genes in Chinese indigenous poplar (Populus simonii). Tree Genetics & Genomes, 2016, 12:91 DOI 10.1007/s11295-016-1049\r\rQingzhang Du(杜庆章), Lu Wang, Xiaohui Yang, Chenrui Gong, and Deqiang Zhang* Populus endo-b-1,4-glucanases gene family: genomic organization, phylogenetic analysis, expression pro?les and association mapping. Planta, 2015, 241(6): 1417–1434\r\rQingzhang Du(杜庆章), Deqiang Zhang*, and Bailian Li. Development of 15 novel microsatellite markers from cellulose synthase genes in Populus tomentosa (Salicaceae). American Journal of Botany, 2012, 99(2): e46-e48.\r\rQingzhang Du(杜庆章), Baohua Xu, Wei Pan, Chenrui Gong, Qingshi Wang, Jiaxing Tian, Bailian Li, and Deqiang Zhang*. Allelic variation in a cellulose synthase gene (PtoCesA4) associated with growth and wood properties in Populus tomentosa. G3: Genes, Genomes, Genetics, 2013, 3(11): 2069-2084.\r\rQingzhang Du(杜庆章), Lu Wang, Daling Zhou, Haijiao Yang, Chenrui Gong, Wei Pan, Deqiang Zhang*. Allelic variation within S-adenosyl-L-homocysteine hydrolase gene family associated with wood properties in Chinese White Poplar (Populus tomentosa). BMC genetics, 2014, 15(S1):S4\r\rQingzhang Du(杜庆章), Bowen Wang, Zunzheng Wei,Deqiang Zhang*, and Bailian Li. Genetic diversity and population structure of Chinese white poplar (Populus tomentosa) revealed by SSR markers. Journal of Heredity, 2012, 103 (6): 853-862.\r\rQingzhang Du(杜庆章), Baohua Xu, Chenrui Gong, Xiaohui Yang, Wei Pan,Jiaxing Tian, Bailian Li, Deqiang Zhang*. Variation in growth, leaf, and wood property traits of Chinese white poplar (Populus tomentosa), a major industrial tree species in Northern China. Canadian Journal of Forest Research, 2014, 44: 326–339.\r\rQingzhang Du(杜庆章), Wei Pan, Jiaxing Tian, Bailian Li, and Deqiang Zhang*. The UDP-glucuronate decarboxylase gene family in Populus: structure, expression, and association genetics. PLoS ONE, 2013, 8(4): e60880.\r\rChenrui Gong#, Qingzhang Du#(杜庆章), Jianbo Xie, Mingyang Quan, Beibei Chen, and Deqiang Zhang*. Dissection of insertion-deletion (InDel) variants within differentially-expressed genes involved in wood formation in Populus. Frontiers in Plant Science, 2018, 8: 2199. doi: 10.3389/fpls.2017.02199\r\rMingyang Quan, Qingzhang Du(杜庆章), Liang Xiao, Wenjie Lu, Longxin Wang, Jianbo Xie, Yuepeng Song, Baohua Xu, and Deqiang Zhang*. Genetic architecture underlying the lignin biosynthesis pathway involves non-coding RNAs and transcription factors for growth and wood properties in Populus. Plant Biotechnology Journal. 2018. DOI:10.1111/pbi.12978.\r\rLongxin Wang, Qingzhang Du(杜庆章), Jianbo Xie, Daling Zhou, Beibei Chen, Haijiao Yang, and Deqiang Zhang*. Genetic variation in transcription factors and photosynthesis light-reaction genes regulates photosynthetic traits. Tree Physiology, 2018, 37 (1): 98-115\r\rDaling Zhou, Qingzhang Du(杜庆章), Jinhui Chen, Qingshi Wang, and Deqiang Zhang*. Identification and allelic dissection uncover roles of lncRNAs in secondary growth of Populus tomentosa. DNA Research, 2017, DOI:10.1093/dnares/dsx0181. 2. 相关热点