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王智,博士, 中国农业科学院棉花研究所研究员,博士生导师。中国农科院青年英才项目入选者;郑州大学农学院兼职教授、硕士生导师。2009年在中国科学院植物研究所获得博士学位。2009-2017年在中国科学院植物研究所从事植物学相关的基础研究工作。2017年9月以高层次人才加入中国农业科学院棉花研究所从事棉花生物学相关的科研工作。在植物发育、植物抗逆等领域取得了优异的研究成果。迄今,以第一或通讯作者在Nature Communications, Plant Cell, Plant BiotechnologyJournal等主流SCI期刊发表论文10余篇。主持和参加了多项国家自然科学基金、中科院先导专项等多个国家级科研项目。研究方向为棉花纤维和种子发育的分子遗传学,植物抗逆分子生物学等。
1. 国家自然科学基金面上项目“组蛋白乙酰化调控脂肪酸代谢和棉纤维起始发育的分子机制研究”(项目编号:32072022),2021年1月至2024年12月;58万元,主持
2. 中国农业科学院,青年英才项目,2019-09至2024-08,300万,主持
3. 国家自然科学基金青年基金项目, “复苏植物牛耳草肌醇半乳糖苷合酶基因(BhGolS)在植物耐脱水性中的作用机制”, 批准号:30900106,2010. 1-2012. 12,主持
(1) Ali F, Qanmber G, Li F*, Wang Z*. (2021). Updated role of ABA in seed maturation,dormancy, and germination, Journal of Advanced Research, ISSN 2090-1232, https://doi.org/10.1016/j.jare.2021.03.011. IF=10.479
(2) Gan, L, Wei Z, Yang Z, Li F,Wang Z*. (2021). Updated Mechanisms of GCN5—The Monkey King of the Plant Kingdom in Plant Development and Resistance to Abiotic Stresses. Cells 10, 979. https://doi.org/10.3390/cells10050979. IF=6.60
(3) Wu H, Zheng L, Qanmber G, Guo M, Wang Z* and Yang Z*. (2021). Response of phytohormonemediated plant homeodomain (PHD) family to abiotic stress in upland cotton(Gossypium hirsutum spp.). BMC Plant biology, 21:13. IF=4.215
(4) Ali F, Qanmber G, Wei Z, Yu D, Li Y, Gan L, Li F,* and Wang Z*.(2020) Genome-widecharacterization and expression analysis of geranylgeranyl diphosphate synthasegenes in cotton (Gossypium spp.) in plant development and abiotic stresses. BMCGenom 21:561. IF=3.594
(5) Wang Z, Yang Z, Li F*. (2019) Updates on molecularmechanisms in the development of branched trichome in Arabidopsis andnonbranched in cotton. Plant Biotechnol J. 17, pp.1706-1722. IF=8.15
(6) Ali F, Qanmber G, Li Y, Ma S, Lu L Yang Z, Wang Z* And Li F*. (2019) Genome-wide identification ofGossypium INDETERMINATE DOMAIN genes and their expression profiles in ovule development and abiotic stress responses . Journal of cotton research, 2:3,
(7) Qanmber G, Liu J, Yu D, Liu Z, Lu L, Mo H, Ma S, Wang Z*, Yang Z*. (2019) Genome-wide identification andcharacterization of PERK gene family unravels functional divergence in G.hirsutum. Int. J. Mol. Sci. 20, 1750; doi:10.3390/ijms20071750
(8) Qanmber G, Ali F, Lu L, Mo H, Ma S, Wang Z*, Yang Z*. (2019) Identification of Histone H3 (HH3)Genes in Gossypium hirsutum Revealed Diverse Expression During Ovule Development and StressResponses. Genes, 10, 355.
(9) Guo Y☯ , Wang Z☯ , Guan X, Hu Z, Zhang Z, Zheng J*, Lu Y. (2017). Proteomic analysis of Potentilla fruticosaL. leaves by iTRAQ reveals responses to heat stress. PloS ONE 12: e0182917. (☯,共同第一作者)
(10) Wang Z, Chen F, Li X, Cao H, Ding M, Zhang C, Zuo J, Xu C, Xu J, Deng X, Xiang Y, Soppe WJJ and Liu Y-X*. (2016). Arabidopsis seed germination speed is controlled by SNL histone deacetylase-bindingfactor-mediated regulation of AUX1. Nat. Commun. 7, 13412.
(11) Wang Z*, Cao H, Chen F and Liu Y-X*. (2014). The roles of histone acetylation in seed performance and plantdevelopment. Plant Physiol. Bioch. 84:125-133.
(12) Wang Z, Cao H, Sun Y, Li X, Chen F, Carles A, LiY, Ding M, Zhang C, Deng X, Soppe WJJ and Liu Y-X*. (2013). Arabidopsis PairedAmphipathic Helix Proteins SNL1 and SNL2 Redundantly Regulate Primary Seed Dormancy via AbscisicAcid–Ethylene Antagonism Mediated by Histone Deacetylation. Plant Cell 25: 149–166.
(13) Wang Z, Zhu Y, Wang LL, Liu X, Liu YX, Phillips Jand Deng X*. (2009). A WRKY transcription factorparticipates in dehydration tolerance inBoea hygrometrica by binding to the W-box elements of the galactinolsynthase (BhGolS1) promoter. Planta 230: 1155-1166.
(14) 王智,刘永秀, 魏建华*, 邓馨*.(2012). 复苏植物旋蒴苣苔棉子糖合酶基因的克隆和表达. 植物学报. 47: 44-54
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