王留強(中國林業科學研究院林業研究所研究員)

王留強(中國林業科學研究院林業研究所研究員)

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王留強,男,1984年4月出生,山東巨野人。2009年畢業於臨沂師範學院生物科學專業,獲得學士學位。2015年畢業東北林業大學林木遺傳育種專業,分別獲得碩士、博士學位。現在任中國林業科學研究院碩士生導師、林業研究所研究員。

基本介紹

  • 中文名:王留強
  • 國籍:中國
  • 民族:漢
  • 出生日期:1984年4月
  • 畢業院校:東北林業大學
  • 學位/學歷:博士
  • 專業方向:林木遺傳育種
人物經歷,研究領域,科研項目,獲獎記錄,發明專利, 論文專著,

人物經歷

學習經歷:
(1)2012.09–2015.06 東北林業大學,林木遺傳育種專業,博士
(2)2009.09–2012.06 東北林業大學,林木遺傳育種專業,碩士
(3)2005.09–2009.07 臨沂師範學院,生物科學,學士
科研與學術工作經歷:
(1)2023.12–至今,中國林業科學研究院林業研究所,研究員
(2)2018.06–2023.11,中國林業科學研究院林業研究所,副研究員
(3)2015.07–2018.05,中國林業科學研究院林業研究所,助理研究員
任職經歷:
(1)國際SCI期刊《BMC Plant Biology》、《Environmental and Experimental Botany》和《Plant science》編委
(2)林學旗艦期刊《林業科學》和中文核心期刊《溫帶林業研究》青年編委
(3)中國林學會鹽鹼地分會常務委員

研究領域

林木抗逆分子育種

科研項目

(1)科技創新2030—重大項目子課題“楊樹抗逆境脅迫的動態表型基因組選擇”(2023ZD040750103),2023/12-2025/12,主持
(2)科技創新2030—重大項目課題“西部地區抗旱楊樹新品種設計與培育”(2023ZD0405602),2023/09-2025/12,主持
(3)中央級公益性科研院所基本科研業務費專項資金青年拔尖人才培養項目院傑出青年配套“樹木根系可塑性與逆境適應的分子調控機制”(CAFYBB2023QB002),2023/12-2027/11,主持
(4)中央級公益性科研院所基本科研業務費專項資金青年拔尖人才培養項目青年協同創新研究組“楊樹根木質化應答離子脅迫的分子機制”(CAFYBB2022QC001),2022/07-2025/06,主持
(5)國家自然科學基金面上項目“基於精細取樣和時空轉錄組等分析楊樹維管形成層周期性活動規律和調控機制”(31971620),2020/01-2023/12,主持
(6)中央級公益性科研院所基本科研業務費專項資金院優秀青年創新人才項目“檉柳ThHSF2基因抗旱、耐高溫調控機理研究”(CAFYBB2018QB002),2018/01-2020/12,主持
(7)國家重點研發計畫專項子課題“人工林楊樹和楸樹木材典型品質性狀相關基因挖掘和功能分析研究”(2017YFD060020102),2017/01-2020/12,主持
(8)國家自然科學基金青年科學基金項目“PtrFBL7基因在楊樹次生生長中的功能研究”(31600539),2017/01-2019/12,主持

獲獎記錄

(1)王留強,2021年度林業所青年優秀論文一等獎, 2021.12
(2)王留強,2019年度林業所青年優秀論文三等獎,2019.12
(3)王留強,2018年度林業所青年優秀論文一等獎,2018.12
(4)王留強,中國林科院傑出青年,中國林業科學研究院,第六屆“中國林科院傑出青年”,2018.11
(5)王留強,中國林科院第二批優青創新人才,2017.12
(6)王留強,中國林學會、梁希科技教育基金委員會,第七屆梁希青年論文獎二等獎,2018.06
(7)王留強,中國林學會、梁希科技教育基金委員會,第六屆梁希青年論文獎三等獎,2016.09
(8)王留強,國家林業局科學技術委員會、中國林學會,第五屆梁希青年論文獎三等獎,2014.08

發明專利

王留強, 朱航勇, 王超, 孫婷婷. 一種基於離子置換與耐鹽植物經營改良鹽鹼地的治理方法. 授權公告日: 2024.10.18; 授權公告號: CN 116195396 B

論文專著

(1)孟佳慧, 劉宏超, 武志, 左雯騰, 王留強*. 小葉楊PsWOX11基因對側根生長發育的影響. 林業科學研究, 2024,37(6): 54-61. 通訊作者
(2)Wen-Teng Zuo, Jia-Hui Meng, Hong-Chao Liu, Hang-Yong Zhu, Meng-Zhu Lu, Liu-Qiang Wang*. PagWOX11/12a from hybrid poplar enhances drought tolerance by modulating reactive oxygen species. Plant Physiology and Biochemistry, 2024, 211: 108662. 通訊作者
(3)左雯騰, 孟佳慧, 盧孟柱, 王留強*. 銀腺楊生長素受體基因PagFBL3對莖生長發育的影響. 林業科學, 2023, 59(11): 59-67. 通訊作者
(4)Rui Liu, Shuang-Shuang Wen, Ting-Ting Sun, Rui Wang, Wen-Teng Zuo, Tao Yang, Chao Wang, Jian-Jun Hu, Meng-Zhu Lu, Liu-Qiang Wang*. PagWOX11/12a positively regulates PagSAUR36 gene that enhances adventitious root development in poplar. Journal of Experimental Botany, 2022, 73(22): 7298-7311. 通訊作者
(5)Shuang-Shuang Wen, Xiao-Lan Ge, Rui Wang, Hai-Feng Yang, Yu-E Bai, Ying-Hua Guo, Jin Zhang, Meng-Zhu Lu, Shu-Tang Zhao, Liu-Qiang Wang*. An efficient agrobacterium-mediated transformation method for hybrid poplar 84K (Populus alba × P. glandulosa) using calli as explants. International Journal of Molecular Sciences, 2022, 23(4): 2216. 通訊作者
(6)Ting-Ting Sun, Zhi-Hao Su, Rui Wang, Rui Liu, Tao Yang, Wen-Teng Zuo, Shuang-Shuang Wen, Liu-Qiang Wang*. Transcriptome and metabolome analysis reveals the molecular mechanisms of Tamarix taklamakanensis under progressive drought and rehydration treatments. Environmental and Experimental Botany, 2022, 195: 104766. 通訊作者
(7)Yan-Min Wang, Yi-Ming Zhang, Xin Zhang, Xin Zhao, Yu Zhang, Chao Wang, Yu-Cheng Wang*, Liu-Qiang Wang*.Poplar PsnICE1 enhances cold tolerance by binding to different cis-acting elements to improve reactive oxygen species-scavenging capability. Tree Physiology, 2021, 41(12): 2424-2437. 共同通訊
(8)Ting-Ting Sun, Chao Wang, Rui Liu, Yu Zhang, Yu-Cheng Wang, Liu-Qiang Wang*. ThHSFA1 confers salt stress tolerance through modulation of reactive oxygen species scavenging by directly regulating ThWRKY4. International Journal of Molecular Sciences, 2021, 22(9): 5048. 通訊作者
(9)Rui Wang, Yu Zhang, Chao Wang, Yu-Cheng Wang, Liu-Qiang Wang*. ThNAC12 from Tamarix hispida directly regulates ThPIP2;5 to enhance salt tolerance by modulating reactive oxygen species. Plant Physiology and Biochemistry, 2021, 163: 27-35. 通訊作者
(10)Liu-Qiang Wang, Shuang-Shuang Wen, Rui Wang, Chao Wang, Bei Gao, Meng-Zhu Lu*. PagWOX11/12a activates PagCYP736A12 gene that facilitates salt tolerance in poplar. Plant Biotechnology Journal, 2021, 19(11): 2249-2260. 第1作者
(11)Rui Liu, Rui Wang, Meng-Zhu Lu, Liu-Qiang Wang*. WUSCHEL-related homeobox gene PagWOX11/12a is involved in drought tolerance through modulating reactive oxygen species scavenging in poplar. Plant Signaling & Behavior, 2021, 16(3): 1866312. 通訊作者
(12)Liu-Qiang Wang, Zhen Li, Shuang-Shuang Wen, Jin-Nan Wang, Shu-Tang Zhao, Meng-Zhu Lu*. WUSCHEL-related homeobox gene PagWOX11/12a responds to drought stress by enhancing root elongation and biomass growth in poplar. Journal of Experimental Botany, 2020, 71(4): 1503-1513. 共同一作
(13)Peilong Wang, Liuqiang Wang*, Zhongyuan Liu, Tengqian Zhang, Yuanyuan Wang, Yabo Li, Caiqiu Gao*. Molecular characterization and expression profiles of GRAS genes in response to abiotic stress and hormone treatment in Tamarix hispida. Trees, 2019, 33(1): 213-225. 共同通訊
(14)Huiyan Guo, Liuqiang Wang, Chuanping Yang, Yiming Zhang, Chunrui Zhang, Chao Wang*. Identification of novel cis-elements bound by BplMYB46 involved in abiotic stress responses and secondary wall deposition. Journal of Integrative Plant Biology, 2018, 60(10): 1000-1014. 共同一作
(15)Liuqiang Wang, Xiaoling Zhang, Jin Zhang, Wei Fan, Mengzhu Lu, Jianjun Hu*. Proteomic analysis and identification of possible allergenic proteins in mature pollen of Populus tomentosa. International Journal of Molecular Sciences, 2018, 19(1): 250. 共同一作
(16)Liuqiang Wang, Chunrui Zhang, Yanmin Wang, Yucheng Wang, Chuanping Yang, Mengzhu Lu*, Chao Wang*. Tamarix hispida aquaporin ThPIP2;5 confers salt and osmotic stress tolerance to transgenic Tamarix and Arabidopsis. Environmental and Experimental Botany, 2018, 152: 158-166. 第1作者
(17)Liuqiang Wang, Zhen Li, Chao Wang, Deyin Wang, Yucheng Wang*, Mengzhu Lu*. Overexpression of a peroxiredoxin gene from Tamarix hispida, ThPrx1, confers tolerance to oxidative stress in yeast and Arabidopsis. Journal of Plant Biology, 2017, 60(6): 548-557. 共同一作
(18)Chao Wang, Liuqiang Wang, Chuanping Yang, Yucheng Wang*. Identification, phylogeny, and transcript profiling of aquaporin genes in response to abiotic stress in Tamarix hispida. Tree Genetics & Genomes, 2017, 13(4): 81. 共同一作
(19)Liuqiang Wang, Zhen Li, Mengzhu Lu*, Yucheng Wang*. ThNAC13, a NAC transcription factor from Tamarix hispida, confers salt and osmotic stress tolerance to transgenic Tamarix and Arabidopsis. Frontiers in Plant Science, 2017, 8: 635. 共同一作
(20)Liuqiang Wang, Chao Wang, Liping Qin, Ping Hu, Yucheng Wang*. ThERF1 from Tamarix hispida confers decreased tolerance to oxidative and drought stresses and is regulated by a WRKY protein. Journal of Forestry Research, 2016, 27(4): 767-772. 第1作者
(21)Liuqiang Wang, Lei Zheng, Chunrui Zhang, Yucheng Wang, Mengzhu Lu*, Caiqiu Gao*. ThWRKY4 from Tamarix hispida can form homodimers and heterodimers and is involved in abiotic stress responses. International Journal of Molecular Sciences, 2015, 16(11): 27097-27106. 共同一作
(21)Liuqiang Wang, Chao Wang, Liping Qin, Wenjin Liu, Yucheng Wang*. ThERF1 regulates its target genes via binding to a novel cis-acting element in response to salt stress. Journal of Integrative Plant Biology, 2015, 57(10): 838-847. 第1作者
(22)Xiaoyu Ji, Liuqiang Wang, Xianguang Nie, Lin He, Dandan Zang, Yujia Liu, Bing Zhang, Yucheng Wang*. A novel method to identify the DNA motifs recognized by a defined transcription factor. Plant Molecular Biology, 2014, 86(4): 367-380. 共同一作
(23)Liuqiang Wang, Liping Qin, Wenjin Liu, Daoyuan Zhang, Yucheng Wang*. A novel ethylene-responsive factor from Tamarix hispida, ThERF1, is a GCC-box- and DRE- motif binding protein that negatively modulates abiotic stress tolerance in Arabidopsis. Physiologia Plantarum, 2014, 152(1): 84-97. 第1作者
(24)Liuqiang Wang, Chao Wang, Deyin Wang, Yucheng Wang*. Molecular characterization and transcript profiling of NAC genes in response to abiotic stress in Tamarix hispida. Tree Genetics & Genomes, 2014, 10(1): 157-171. 第1作者
(25)Liuqiang Wang, Chenxi Xu, Chao Wang, Yucheng Wang*. A eukaryotic translation initiation factor 5A from Tamarix androssowii, TaeIF5A1, can form a homodimer and interact with other proteins. Plant Omics, 2014, 7(6): 468-473. 第1作者
(26)Liuqiang Wang, Chenxi Xu, Chao Wang, Yucheng Wang*. Characterization of a eukaryotic translation initiation factor 5A homolog from Tamarix androssowii involved in plant abiotic stress tolerance. BMC Plant Biology, 2012, 12: 118. 共同一作
(27)王留強, 班巧英, 賀琳, 王玉成*. 二色補血草LbDREB基因在酵母中的抗逆能力分析. 植物生理學報, 2011, 47(4): 347-350. 第1作者

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