姓 名: | 段紅英 | ||
職 稱: | 教授,博士生導(dǎo)師 | ||
辦公電話: | 0373-3326340 | ||
電子郵箱: | dxdhy@163.com | ||
個人簡介: |
博士,教授,博士生導(dǎo)師,河南省高校青年骨干教師,河南省高??萍紕?chuàng)新人才,河南省教學(xué)標(biāo)兵。1996-2003年在河南師范大學(xué)生命科學(xué)學(xué)院依次攻讀學(xué)士、碩士學(xué)位,2003-2006年在中國農(nóng)業(yè)大學(xué)生物學(xué)院攻讀博士學(xué)位。博士畢業(yè)后在河南師范大學(xué)生命科學(xué)學(xué)院工作至今,2014年晉升教授。主持國家自然科學(xué)基金項目3項、省部級項目5項,參與“十一五”、“十二五”國家科技計劃子課題等省部級以上項目8項,在Front Plant Sci,Chemosphere,Int J Mol Sci等期刊發(fā)表SCI論文35篇,多次獲得河南省自然科學(xué)優(yōu)秀學(xué)術(shù)論文一、二等獎。出版《中華大典·植物分典》、《華中地區(qū)常見高等植物》、《普通遺傳學(xué)》、《現(xiàn)代生命科學(xué)基礎(chǔ)》等著作。 |
研究領(lǐng)域: |
植物資源保護與利用、植物逆境生物學(xué) |
主要學(xué)術(shù)及社會兼職: |
河南省遺傳學(xué)會理事 |
主持或參加科研項目情況: |
1. DNA甲基化在地黃環(huán)烯醚萜苷積累中的調(diào)控研究,國家自然科學(xué)基金-面上項目,2019-2022,主持; 2. 懷地黃塊根的基因組DNA甲基化修飾與梓醇積累關(guān)系研究,國家自然科學(xué)基金-青年基金,2016-2018,主持; 3. 基于地黃屬及其近緣屬的植物通用DNA條形碼研究,NSFC-河南人才培養(yǎng)聯(lián)合基金,2014-2016,主持; 4. 基于DNA甲基化研究地黃有效成分梓醇的積累,河南省高??萍紕?chuàng)新人才支持計劃項目,2017-2018,主持; 5. 離子束生物技術(shù)在番茄育種上的應(yīng)用,河南省基礎(chǔ)與前沿技術(shù)研究項目,2012-2013,主持; 6. 根癌農(nóng)桿菌介導(dǎo)EREBP基因轉(zhuǎn)化懷牛膝的研究,河南省基礎(chǔ)與前沿技術(shù)研究項目,2011-2012,主持; 7. 華北冬小麥夏玉米區(qū)豐產(chǎn)水肥一體化優(yōu)化管理技術(shù)研究,“十二五”國家科技支撐計劃子課題,2013-2017,參加。 8. 懷地黃分子與細(xì)胞高效育種技術(shù)研究, “十一五”國家高技術(shù)研究發(fā)展計劃(863計劃)子課題,2006-2010,參加。 |
學(xué)術(shù)成果: |
1. Chen PL, Wei XY, Qi QT, Jia WJ, Zhao MW, Wang HN, Zhou YQ, Duan HY. Study of terpenoid synthesis and prenyltransferase in roots of Rehmannia glutinosa based on iTRAQ quantitative proteomics. Front Plant Sci, 2021,12: 693758. doi: 10.3389/fpls.2021.693758 2. Wang HH, Zhu YQ, Yuan P, Song SL, Dong TY, Chen PL, Duan ZK, Jiang LN, Lu LD, Duan HY. Response of wheat DREB transcription factor to osmotic stress based on DNA methylation. Int J Mol Sci, 2021, 22: 7670. doi: 10.3390/ijms22147670 3. Li JY, Jia WJ, Wang HH, Zhu YQ, Duan ZK, Jiang LN, Zhou YQ, Duan HY. Morpho-physiological adaptation and DNA methylation of wheat seedling under osmotic stress. Crop Pasture Sci, 2020, 71(4): 349-355 4. Duan HY, Wang WS, Zeng YP, Guo MM, Zhou YQ. The screening and identification of DNA barcode sequences for Rehmannia. Sci Rep, 2019, 9: 17295 doi: 10.1038/s41598-019-53752-8 5. Duan HY, Li JJ, Wang HN, Chen FF, Ding WK, Zhu YQ, Zheng X, Zeng YP, Zhou YQ. Effects of DNA methylation on growth and development of Rehmannia glutinosa. Int J Agric Biol, 2018, 20(10): 2161-2168 6. Zhou YQ, Yang K,Zhang DD, Duan HY, Liu YK, Guo MM. Metabolite accumulation and metabolicnetwork in developing roots of Rehmannia glutinosa reveals its root developmental mechanism and quality. Sci Rep, 2018, 8: 14127.doi:10.1038/s41598-018-32447-6 7. Wang HN, Li BY, Chen FF, Zhou YQ, Li JJ, Zheng X, Duan HY. Analysis on phenotype, catalpol accumulation and methylation of Rehmannia glutinosa. Pak J Bot, 2019, 51(2): 461-467 8. Zhou YQ, Wang XN, Wang WS, Duan HY. De novo transcriptome sequencing-based discovery and expression analyses of verbascoside biosynthesis-associated genes in Rehmannia glutinosa tuberousroots. Mol Breeding, 2016, 36: 139 doi: 10.1007/s11032-016-0548-x 9. Duan HY, Zhu YQ, Li JY, Ding WK, Wang HN, Jiang LN, Zhou YQ. Effects of drought stress on growth and development of wheat seedlings. Int J Agric Biol, 2017,19(5): 1119-1124 10. Duan HY, Liu WX, Li J Y, Ding WK, Zhu YQ, Wang HN, Jiang LN, Zhou YQ. Growth and DNA methylation level of Triticum aestivum seedlings treated with 5-azacytidine. Pak J Bot, 2016, 48(4): 1585-1591 11. Zhou YQ, Zhang YH, Wei J, Zhang Y, Li JY, Wang WS, Duan HY, Chen JJ. Cloningand analysis of expression patterns and transcriptional regulation of RghBNG inresponse to plant growth regulators and abiotic stresses in Rehmannia glutinosa. Springer Plus, 2015, 4: 60. doi: 10.1186/s40064-015-0830-0 12. Duan HY, Yu YA, Li JY, Wang WS, Chen FF, Zhou YQ. Study of mutation in tomato genomic DNA using low energy ion implantation or soybean DNA by RAPD. Indian J Bio, 2015, 14: 364-368 |