职称:讲师
职务:
邮箱:zhusheng303@163.com
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主要从事:主要从事分子生物学、进化生物学、林木基因组与生物信息学等的教学和科研工作。目前专注于林木生长与耐旱性性状的分子遗传机制研究,主要通过统计学模型、多组学数据分析以及图像分析技术挖掘生长与耐旱相关基因。
https://www.researchgate.net/profile/Sheng-Zhu-12
1. 江苏省青年自然基金(BK20150879,主持)
2. 上海市科技兴农重点攻关项目(G20160503,参与)
3. 江苏省重点研发计划(现代农业)(BE2016387,参与)
4. 长江中下游平原栽培区杨树大径材高质林分立地品种精确适配研究(2021YFD220120502,参与)
[28] Sheng Zhu, Xue-Fen Wei, Yu-Xin Lu, et al. The jacktree genome and population genomics provides insights for the mechanisms of the germination obstacle and the conservation of endangered ornamental plants. Horticulture Research 2024; uhae166. https://doi.org/10.1093/hr/uhae166.
[27] Yao Zhao, Xinyue Zheng, Javier F. Tabima, Sheng Zhu, et al. Secreted Effector Proteins of Poplar Leaf Spot and Stem Canker Pathogen Sphaerulina musiva Manipulate Plant Immunity and Contribute to Virulence in Diverse Ways. Mol Plant Microbe Interactions 2023; 36 (12): 779-795. PMID: 37551980.
[26] Yaolin Wang, Zesen Wang, Sheng Zhu, Huixin Pan, Changjun Ding, Meng Xu. Analysis of Growth Trajectories and Verification of Related SNPs in Populus deltoides. Int J Mol Sci 2023; 24(22): 16192. PMID: 38003382.
[25] Sheng Zhu, Heng Zhang, Siyuan Chen, Lei Zhang, Minren Huang. Large-Scale and High-Accuracy Phenotyping of Populus simonii Leaves Using the Colony Counter and OpenCV. Forests 2023, 14, 1766. https://doi.org/10.3390/f14091766.
[24] Xueli Zhang, Haoran Wang, Ying Chen, Minren Huang, Sheng Zhu (通讯作者). The Over-Expression of Two R2R3-MYB Genes, PdMYB2R089 and PdMYB2R151, Increases the Drought-Resistant Capacity of Transgenic Arabidopsis. Int J Mol Sci 2023; 24 (17): 13466. PMID: 37686270.
[23] Yaolin Wang, Heng Zhang, Sheng Zhu, Tengfei Shen, Huixin Pan, Meng Xu. Association Mapping and Expression Analysis of the Genes Involved in the Wood Formation of Poplar. Int J Mol Sci 2023; 24 (16): 12662. PMID: 37628843.
[22] Xueli Zhang, HaoranWang, Ying Chen, Minren Huang, Sheng Zhu (通讯作者). Comprehensive Genome-Wide Analyses of Poplar R2R3-MYB Transcription Factors and Tissue-Specific Expression Patterns under Drought Stress. Int J Mol Sci 2023; 24 (6): 5389. PMID: 36982459.
[21] Lu Meng, Siyuan Chen 1, Dawei Li, Minren Huang, Sheng Zhu (通讯作者). Genome-Wide Characterization and Evolutionary Expansion of Poplar NAC Transcription Factors and Their Tissue-Specific Expression Profiles under Drought. Int J Mol Sci 2023; 24 (1):253. PMID: 36613699.
[20] 张雪梨, 陈英, 黄敏仁, 朱嵊 (通讯作者). 杨树干旱胁迫响应转录因子的研究进展. 西北农林科技大学学报 (自然科学版) 2023; 51(3).
[19] Liei Yang, Sheng Zhu. The Interconnected Relationship between Auxin Concentration Gradient Changes in Chinese Fir Radial Stems and Dynamic Cambial Activity. Forests 2022; 13: 1698. https://doi.org/10.3390/f13101698.
[18] Wentao Ye, Jiachen Wang, Xinyi Zhao, Hongyi Liu, Sheng Zhu(通讯作者). Mitochondrial Genomes of two Lycosa spiders (Araneae, Lycosidae): Genome Description and Phylogenetic Implications. Diversity 2022; 14, 538. https://doi.org/10.3390/d14070538.
[17] Liwei Yang, Sheng Zhu, Jin Xu. Roles of Auxin in Inhibition of Shoot Branching in 'Dugan' Fir. Tree Physiology 2022; 1-21. PMID: 35088089.
[16] Hui Wei, Ali Movahedi, Guoyuan Liu, Sheng Zhu, et al. Poplar glycosylphosphatidylinositol-anchored lipid transfer proteins respond to osmotic stress by regulating fatty acid biosynthesis. Industrial Crops & Products 2022; 179:114683.
[15] Hui Wei, Ali Movahedi, Guoyuan Liu, Sheng Zhu, et al. Characteristics, expression profile, and function of non-specific lipid transfer proteins of Populus trichocarpa. International Journal of Biological Macromolecules 2022; 202: 468-481.
[14] Weihuang Wu, Sheng Zhu, Lin Xu, et al. Genome-wide identification of the Liriodendron chinense WRKY gene family and its diverse roles in response to multiple abiotic stress. BMC Plant Biology 2022; 22(1): 25. PMID: 35012508.
[13] Huiying Gong, Xiao-Yu Zhang, Sheng Zhu, et al. Genetic Architecture of Multiphasic Growth Covariation as Revealed by a Nonlinear Mixed Mapping Framework. Frontiers in Plant Science 2021; 12: 711219. PMID: 34675947.
[12] Huiying Gong, Sheng Zhu, Xuli Zhu, et al. A Multilayer Interactome Network Constructed in a Forest Poplar Population Mediates the Pleiotropic Control of Complex Traits. Frontiers in Genetics 2021; 12:769688. PMID: 34868256.
[11] Weihuang Wu, Sheng Zhu, Liming Zhu, et al. Characterization of the Liriodendron Chinense MYB Gene Family and Its Role in Abiotic Stress Response. Frontiers in Plant Science 2021; 12: 641280. PMID: 34381467.
[10] 朱嵊, 黄敏仁. 基因组选择在林木遗传育种研究中的进展与展望. 林业科学 2020, 11: 176-186.
[9] Sheng Zhu, Meng Xu, Haoran Wang, et al. Study of spontaneous mutations in the transmission of poplar chloroplast genomes from mother to offspring. BMC Genomics 2018; 19(1):411. PMID: 29843600.
[8] Jingyuan Liu, Meixia Ye, Sheng Zhu, et al. Two-stage identification of SNP effects on dynamic poplar growth. The Plant Journal 2018; 93(2): 286-296. PMID: 29168265.
[7] Liyong Fu, Lidan Sun, Hao Han, Libo Jiang, Sheng Zhu, et al. How trees allocate carbon for optimal growth: insight from a game-theoretic model. BRIEFINGS IN BIOINFORMATICS 2017; https://doi.org/10.1093/bib/bbx003. PMID: 28158473.
[6] Meng Xu*, Libo Jiang*, Sheng Zhu*, et al. A computational framework for mapping the timing of vegetative phase change. New Phytologist 2016; 211(2): 750-760. (并列第一). PMID: 26958803.
[5] Libo Jiang*, Meixia Ye*, Sheng Zhu*, et al. Computational identification of genes modulating stem height–diameter allometry. Plant Biotechnology Journal 2016; 14(12): 2254-2264. (并列第一). PMID: 27155207.
[4] Qiang Cheng, Haoran Wang, Bin Xu, Sheng Zhu, Lanxi Hu and Minren Huang, Discovery of a novel small secreted protein family with conserved N-terminal IGY motif in Dikarya fungi, BMC Genomics, 2014, 15:1151. PMID: 25526808.
[3] Sheng Zhu, Zhong Wang, Jianxin Wang, et al. A quantitative model of transcriptional differentiation driving host-pathogen interactions. BRIEFINGS IN BIOINFORMATICS 2013; 14 (6): 713-723. PMID: 22962337.
[2] Sheng Zhu, Yong-Mei Dai, Xin-Ye Zhang, et al. Untangling the transcriptome from fungus-infected plant tissues. GENE 2013; 519 (2): 238-44. PMID: 23466979.
[1] Sheng Zhu, You-Zhi Cao, Cong Jiang, et al. Sequencing the genome of Marssonina brunnea reveals fungus-poplar co-evolution. BMC Genomics 2012; 13:382. PMID: 22876864.
1. 第五届梁希青年论文奖三等奖(2014)
1. 江苏省环保知识竞赛优秀指导老师(2015)