• 师资队伍
  • 王延伟|教授

    王延伟|教授
    王延伟,博士,1979年6月生,河南省宝丰县人。现为北京林业大学林木遗传育种学科教授、博士生导师。从事林木分子遗传学和抗性育种的教学和科研工作。在国内外期刊包括PJ、PCE、JXB和Planta等发表论文60余篇,其中SCI收录40余篇,参与撰写行业标准1项。应邀为Horticulture Research、Plant Molecular Biology、Tree Genetics and Genomics、Plant Science和Annals of Forest Science等10余种植物遗传及分子生物学领域SCI期刊担任审稿人,担任国家自然科学基金项目评审专家和皂荚产业国家创新联盟副理事长。 E-mail:ywwang@bjfu.edu.cn


    研究方向

    林木抗性种质的鉴定及抗性分子育种

    树木基因功能鉴定和重要育种价值新基因的挖掘
    树木抗逆分子遗传机制和表观遗传调控
    林木功能基因组学:miRNAlncRNA、转录组学、代谢组学和蛋白组学

    学习、工作经历

    2021/01-至今,北京林业大学生物科学与技术学院,教授

    2016/032017/03,美国乔治亚大学(植物科学中心)

    2013/012020/12,北京林业大学生物科学与技术学院,副教授

    2009/072012/12,北京林业大学生物科学与技术学院,讲师
    2005/092009/07,中国科学院遗传发育所,获理学博士学位
    2002/092005/07,南京农业大学,获农学硕士学位
    1998/092002/07,河南农业大学,获农学学士学位

    承担项目

    主持完成和正在主持国家自然科学基金、农业生物育种国家科技重大专项子课题、北京市自然科学基金面上项目、教育部博士点基金等科研项目、中央高校基本科研业务费项目等8项,重点参与完成和正在参与的国家及省部级以上课题包括教育部科学技术研究重大项目、教育部“创新团队发展计划”和国家自然科学基金项目等多项。

    发表文章情况

    1. Yu R, Liu J, Yang X, Wang J, Wang Y (王延伟). Comprehensive genome-wide characterization of calmodulin-bindingprotein 60 gene family reveals PtCBP60E1 enhances the pathogen resistance in poplar. Ind Crop Prod, 2025, 226 : 120601.(一区TOP)

    2. Fu T, Wang Z, Wang C, Yang Y, Yu R, Yang X, Liu J, Ji H, Wang YL, Wang T, Li J, Wang Y (王延伟). Integrating Transcriptomics and Metabolomics in Poplar to Uncover Crucial Genes and Metabolites in Response to Anoplophora glabripennis Infestation. Physiol Plant, 2025, 177(5):e70523. (二区)

    3. Wang Z, Fu T , Wang C, Yang Y, Yang X, Liu J , Yu R, Ji H, Wang YL, Wang T, Li J, Wang Y (王延伟). Identification and characterization of miRNAs and targets in two poplar varieties with different resistance in responses to Anoplophora glabripennis (Coleoptera) infestation. Plant Sci, 2025, 359:112630. (二区)

    4. Wang J, Yang Y, Liu Y, Liu J, Xiao D, Chen H, Wang C, Fu T, Chang F, Wang Y (王延伟), Fan D. Phenotypic and RNA-seq Profiles Identified Key Pathways and Genes Involved in Gleditsioside Biosynthesis in Gleditsia sinensis Lam. Forests, 2025, 16, 393.

    5. Xiao D, Liu J, Wang J, Yang X, Yang Y, Yu R, Wang C, Gao H, Wang Y (王延伟), Liu Y, Fan D, Lin F. Chromosome-level de novo genome unveils the evolution of Gleditsia sinensis and thorns development. Genomics, 2025, 117(2):111004. (二区)

    6. Wang C, Fu T, Wang Z, Hou S, Rong K, Wang J, Yin Y, Yang X, Yu R, Xiao D, Wang Y (王延伟) . miRNA‑seq analysis revealed a potential strategy underlying poplar root responses to low nitrogen stress Planta, 2025, 261:87.

    7. Wang C, Fu T, Wang Z, Liu J, Hou S, Yin Y, Yang X, Xiao D, Wang Y (王延伟). Selection of microRNA expression reference genes for RT-qPCR in poplar root under low nitrogen stress. J Plant Biochem Biotechnol, 2025, 34: 785-789.

    8. Zeng L, Zacharaki V, van Es SW, Wang Y (王延伟) , Schmid M. Mutations in the floral regulator gene HUA2 restore flowering to the Arabidopsis trehalose 6-phosphate synthase1 (tps1) mutant. Plant Physiol, 2025, 198(2): kiaf225. (一区TOP)

    9. Liang Y, Yang X, Wang C, Wang Y (王延伟). miRNAs Primary modulators of plant drought tolerance. J Plant Physiol, 2024, 154313.

    10. Yang Y, Liang Y , Fu T, Zhou K, Yang X, Wang C, Xiao D, Wang Y (王延伟). The Pto-miR6427 fine-tunes poplar tolerance to drought via miR6427 and miR6427*. Ind Crop Prod, 2024 ,118547. (一区TOP)

    11. Yang Y, Liang Y, Wang C, Yanwei Wang (王延伟). MicroRNAs as potent regulators in nitrogen and phosphorus signaling transduction and their applications. Stress Biol, 2024 ,4(1):38.

    12. Yang Y, Wang C, Liang Y, Xiao D, Fu T, Yang X, Liu J , Wang S, Wang Y (王延伟). PagTPS1 and PagTPS10, the trehalose-6-phosphate synthase genes, increase trehalose content and enhance drought tolerance. Int J Biol Macromol, 2024, 279(Pt 4):135518. (一区TOP)

    13. Yang X, Yu R, Liu J, Xiao D, Wang C, Fu T, Yang Y, Rong K, Wang Y (王延伟). Integrating multiregulatory analysis reveals the negative regulatory function of miR482a in the response of poplar to canker pathogen infection. Plant J, 2024, 120(3):1094-1111. (一区TOP)

    14. Yu R, Yang X,Xiao D, Bao H, Wang Y (王延伟). MiRNAs profiles among three poplar varieties provide insights into different molecular responses in resistance to newly emerging bacterial pathogen. Physiol Plant, 2024, 226: 120601. (二区)

    15. Yang R, Ming Z, Zeng S, Wang Y(王延伟), WangYL, Li A. The two-component system CpxA/CpxR regulates pathogenesis and stress adaptability in the poplar canker bacterium Lonsdalea populi. Mol Plant Pathol, 2024, 25(11):e70029. (一区TOP)

    16. Fu T, Wang T, Yang Y, Yang X, Wang J, Zhang L, Wang Z, Wang Y (王延伟). Function identification of miR159a, a positive regulator during poplar resistance to drought stress. Horticulture Research, 2023, 10: uhad221. (一区TOP)

    17. Yang X, Li Y, Yu R, Zhang L, Yang Y, Xiao D, Li A, Wang Y (王延伟). Integrated transcriptomic and metabolomic profiles reveal adaptive responses of three poplar varieties against the bacterial pathogen Lonsdalea populi. Plant Cell Environ, 2023, 46(1): 306-321 (一区TOP)

    18. Yang X, Fu T, Yu R, Zhang L, Yang Y, Xiao D, Wang YY, Wang YL, Wang Y (王延伟). miR159a modulates poplar resistance against different fungi and bacteria. Plant Physiol Biochem, 2023, 201:107899. (二区)

    19. Xiao D, Chen M, Yang X, Bao H, Yang Y, Wang Y (王延伟). The Intersection of Non-Coding RNAs Contributes to Forest Trees' Response to Abiotic Stress. Int J Mol Sci. 2022, 2022, 23, 6365. (二区TOP)

    20. Yang Y, Wang J, Wang C, Chen H, Liu Y, Wang Y (王延伟), Gao W. Comprehensive Identifification and Profifiling of miRNAs Involved in Terpenoid Synthesis of Gleditsia sinensis Lam. Forests, 2022, 13, 108.

    21. Xiao D, Zhou K, Yang X, Yang Y, Ma Y and Wang Y (王延伟). Crosstalk of DNA Methylation Triggered by Pathogen in Poplars With Different Resistances. Front Microbiol, 2021, 12: 750089. (二区TOP)

    22. Yang X, Zhang L, Yang Y, Schmid M, Wang Y (王延伟). miRNA Mediated Regulation and Interaction between Plants and Pathogens. Int J Mol Sci, 2021, 22(6): 2913. (二区TOP)

    23. Zhang L, Yang X, Yin Y, Wang J, Wang Y (王延伟). Identification and validation of miRNA reference genes in poplar under pathogen stress. Mol Biol Rep, 2021, 48, 3357–3366.

    24. Yin Y, Wang C, Xiao D, Liang Y and Wang Y (王延伟). Advances and Perspectives of Transgenic Technology and Biotechnological Application in Forest Trees. Front Plant Sci, 2021, 12: 786328. (二区TOP)

    25. Pandey SP, Benstein RM, Wang Y (王延伟), Schmid M. Epigenetic Regulation of Temperature Responses – Past Successes and Future Challenges. J Exp Bot, 2021, erab248. (一区TOP)

    26. Chen M, Yin Y, Zhang L, Yang X, Fu T, Huo X and Wang Y (王延伟). Metabolomics and Transcriptomics Integration of Early Response of Populus tomentosa to Reduced Nitrogen Availability. Front Plant Sci, 2021, 12:769748. (二区TOP)

    27. Bao H, Chen H, Chen M, Xu H, Huo X, Xu Q, Wang Y (王延伟) . Transcriptome-wide identification and characterization of microRNAs responsive to phosphate starvation in Populus tomentosa. Funct Integ Genomic, 2019, 19(6):953-972.

    28. Bao H, Chen M, Chen H, Du L,Wang Y (王延伟). Transcriptome-wide identification of miRNA targets and a TAS3-homologous gene in Populus by degradome sequencing. Genes Genom, 2019, 41 :849-861

    29. Hou J, Wu Q, Zuo T, Guo L, Chang J, Chen J, Wang Y (王延伟), He W. Genome-wide transcriptomic profiles reveal multiple regulatory responses of poplar to Lonsdalea quercina infection. Trees-Struct Funct, 2016, 30:1389-1402. (二区)

    30. Chen M, Wei M, Dong Z, Bao H, Wang Y (王延伟). Genomic identification of microRNA promoters and their cis-acting elements in Populus. Genes Genom, 2016, 38:377–387.

    31. Wu Q, Chen M, Zhou H, Zhou X, Wang Y (王延伟). Metabolite profiles of Populus in response to pathogen stress. Biochem Biophys Res Commun, 2015, 465: 421-426.

    32. Chen M, Bao H, Wu Q, Wang Y (王延伟). Transcriptome-wide Identification of miRNA Targets under Nitrogen Deficiency in Populus tomentosa Using Degradome Sequencing. Int J Mol Sci, 2015, 16:13937-13958.

    33. Xu H, Cao D, Chen Y, Wei D, Wang Y (王延伟), Stevenson RA, Zhu Y, Lin J. Gene expression and proteomic analysis of shoot apical meristem transition from dormancy to activation in Cunninghamia lanceolata (Lamb.) Hook. Sci Rep, 20166: 19938.

    34. Ren Y, Sun F, Hou J, Chen L, Zhang Y, Kang X, Wang Y (王延伟). Differential profiling analysis of miRNAs reveals a regulatory role in low N stress response of Populus. Functional & integrative genomics, 2015, 15: 93-105.

    35. Liu X, Cao D, Ji X, Zhang Z, Wang Y (王延伟), Wang R. miRNAs play essential roles in the floral thermogenesis of Magnolia denudata (Magnoliaceae). Trees, 2015, 29: 35-42.

    36. Ren Y, Chen L, Zhang Y, Kang X, Zhang Z, Wang Y (王延伟). Identification and characterization of salt-responsive microRNAs in Populus tomentosa by high-throughput sequencing. Biochimie, 2013, 95:743-750.

    37. Dong Z, Shi L, Wang Y (王延伟), Chen L, Cai Z, Wang Y, Jin J, Li X. Identification and Dynamic Regulation of microRNAs Involved in Salt Stress Responses in Functional Soybean Nodules by High-Throughput Sequencing. Int J Mol Sci, 2013,14:2717-2738.

    38. Qiu Z, Wan L, Chen T, Wan Y, He X, Lu S, Wang Y (王延伟), Lin J. The regulation of cambial activity in Chinese fir (Cunninghamia lanceolata) involves extensive transcriptome remodeling. New Phytol, 2013, 199:708-719.

    39. Chen L, Ren Y, Zhang Y, Xu J, Zhang Z, Wang Y (王延伟). Genome-wide profiling of novel and conserved Populus microRNAs involved in pathogen stress response by deep sequencing. Planta, 2012, 235: 873-883.

    40. Chen L, Zhang Y, Ren Y, Xu J, Zhang Z, Wang Y (王延伟). Genome-wide identification of cold-responsive and new microRNAs in Populus tomentosa by high-throughput sequencing. Biochem Biophys Res Commun, 2012, 417: 892-896.

    41. Ren Y, Chen L, Zhang Y, Kang X, Zhang Z, Wang Y (王延伟). Identification of novel and conserved Populus tomentosa microRNA as components of a response to water stress. Funct Integr Genomics, 2012, 12: 327-339.

    42. Chen L, Ren Y, Zhang Y, Xu J, Sun F, Zhang Z, Wang Y (王延伟). Genome-wide identification and expression analysis of heat-responsive and novel microRNAs in Populus tomentosa. Gene, 2012, 504: 160-165.

    43. Ao Y, Wang Y (王延伟), Chen L, Wang T, Yu H, Zhang Z. Identification and comparative profiling of microRNAs in wild-type Xanthoceras sorbifolia and its double flower mutant. Genes & Genomics, 2012, 34: 561-568.

    44. Wang Y (王延伟), Li P, Cao X, Wang X, Zhang A and Li X. Identification and expression analysis of miRNAs from nitrogen-fixing soybean nodules. Biochem Biophys Res Commun, 2009, 378: 799-803.

    45. Li H, Zhi H, Gai J, Guo D, Wang Y (王延伟), Li K, Bai L and Yang H. Inheritance and gene mapping of resistance to soybean mosaic virus strain SC14 in Soybean mosaic virus strain SC14 in soybean. J Integr Plant Biol, 2006, 48: 1466-1472.

    46. 张立春,肖丹丹,付田田,王延伟. 欧美杨细菌性溃疡病菌基因组测序与分析. 基因组学与应用生物学, 2022,41(2): 331-343.

    47. 徐千惠, 常福利, 霍晓薇, 周科, 王延伟. 杨树响应细菌性溃疡病菌侵染的miRNA靶基因预测及分析, 分子植物育种, 2021, 19(12): 0001-0014.

    48. 杨晓倩, 张立春, 李奕文,. 植物病原菌效应子的研究进展. 中国科学: 生命科学, 2020, 50: 227–236.

    49. 包海, 孙丰硕,徐千惠,王延伟. 杨树10miRNA的低氮胁迫差异表达及靶基因的鉴定与分析. 分子植物育种, 2019, 17(3): 771-779.

    50. 霍晓薇,徐千惠,王延伟. 杨树miRNA 的靶基因预测及低氮胁迫表达分析. 北京林业大学学报,201941(8):28−37.

    51. 周科, 徐千惠, 霍晓薇, 王延伟,贺伟. 杨树受溃疡病菌侵染初期的转录组. 东北林业大学学报, 2019,47(03):100-106.

    52. 陈慧, 李奕文, 霍晓薇, 王延伟, 皂荚类胡萝卜素合成途径基因表达分析及miRNA 调控的鉴定. 分子植物育种, 2019, 17(4): 1138-1146.

    53. 左涛,赵树堂,卢孟柱,孙爱东,王延伟,贺伟. 杨树二氢黄酮醇-4-还原酶基因( DFR) 的克隆及反义表达对儿茶素合成的影响. 东北林业大学学报, 2016, 44: 9-55.

    54. 陈敏,陈慧,包海,黄鹏,王延伟.植物miRNA启动子研究进展.中国生物工程杂志, 2016, 36(5): 125-131.

    55. 刘振阳,苏衍修,左涛,常聚普,郭利民,贺伟,王延伟. 溃疡病不同抗性杨树SAJA信号转导相关基因的差异表达分析.中国农学通报, 2015, 31:156-163.

    56. 侯佳,孙丰硕,吴秋明,杨玉巧,贺伟,王延伟. 一种高效提取杨树发病树皮总RNA的方法及应用.植物生理学报, 2014, 50:223-228.

    57. 任媛媛,王泽亮,康向阳,孙丰硕,杨喆,张志毅,王延伟. 河北杨脱水素基因(Phdhn1)的克隆与胁迫表达分析.中国农学通报, 2012, 28:21-26.

    58. 张译云,任媛媛,陈磊,徐吉臣,张志毅,王延伟.毛白杨12microRNAs的低温胁迫差异表达分析.中国农学通报, 2012,28:1-7.

    59. 王延伟,智海剑,郭东全,盖钧镒,陈庆山,李凯,李海朝.中国北方春大豆区大豆花叶病毒株系的鉴定与分布.大豆科学, 2005,24:263-268.

    60. 王延伟,智海剑,郭东全,李海朝,盖钧镒.致病性不同的大豆花叶病毒分离物外壳蛋白的基因序列分析.中国油料作物学报, 2006,28:46l-464.

    61. 郭东全,王延伟,智海剑,盖钧镒,李海朝,李凯.大豆对SMV SC-13株系群的抗性遗传及基因定位的研究.大豆科学,2007,26:21-24.

    62. 郭东全,智海剑,王延伟,盖钧镒,周新安,杨崇良,李凯,李海朝.黄淮中北部大豆花叶病毒株系的鉴定与分布.中国油料作物学报,2005,27:64-68.

    63. 郭东全,智海剑,王延伟,李海朝,盖钧镒,杨华,李凯,白丽. 大豆花叶病毒5个分离物的鉴定及外壳蛋白序列分析.大豆科学,2005,25:218-222.

    64. 智海剑,盖钧镒,郭东全,王延伟. 对大豆花叶病毒不同抗性类型品种的细胞超微结构特征.南京农业大学学报,2005,28:6-10.

    65. 智海剑,盖钧镒,陈应志,廖琴,郭东全,王延伟,李凯,李海朝. 2002-2004年国家大豆区试品种对大豆花叶病毒抗性的评价.大豆科学,2005,24:189-194.