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王強

(中科院水生生物研究所研究員)

鎖定
王強,1973年8月生,中科院水生生物研究所研究員博士 [1] 
中文名
王強
出生日期
1973 年8月
職    稱
中科院水生生物研究所研究員

王強人物經歷

2002年在中國科學院北京植物研究所獲得博士學位。2002年10月至2010年7月期間先後在以色列希伯來大學(the Hebrew University of Jerusalem)、田納西大學(University of Tennessee at Knoxville,USA)、阿肯色大學(University of Arkansas at Little Rock, USA)和密西根州立大學(Michigan State University,USA)從事獨立研究工作。 [1] 

王強主要成就

王強研究領域

藻類生理學、分子生物學生物化學遺傳學 [1] 

王強研究方向

微藻生物能源、微藻光合作用。 [1] 

王強項目參與

參加或主持國家“973”、自然科學基金、企業橫向以及中科院和所級創新領域前沿項目共十餘項項。 [1] 

王強所獲榮譽

1. 2017年,第四屆華創杯(國務院僑務辦公室主辦)
2. 2017年,中國科學院武漢教育基地“優秀導師”
3. “Eni AWARD”2017/2018提名(評議中)
4. 2016年,獲中國產學研合作促進會2016年“產學研合作創新獎”(國科獎社證字第0191號,證書號:20163062)
5. 2016年1月,研究論文“Effective Biological DeNOx of Industrial Flue Gas by the Mixotrophic Cultivation of an Oil-Producing Green Alga Chlorella sp. C2”被國際可再生能源組織Renewable Energy Global Innovations評為領域 Key Scientific Article
6. 2014年12月,研究論文“Evaluation of an oil-producing green alga Chlorella sp. C2 for biological DeNOx of industrial flue gases”被國際可再生能源組織Renewable Energy Global Innovations評為領域 Key Scientific Article
7. 指導研究生獲獎情況:自2011年9月至2017,招收研究生13名,共獲得包括“中科院院長獎學金”、“國家獎學金”等獎勵37人次 [1] 

王強社會任職

王強國際期刊任職

1. Frontiers in Microbiology, Associate Editor
2. Scientific Reports, Editorial Board Member
3. Frontiers in Energy Research, Associate Editor
4. Frontiers in Synthetic Biology, Associate Editor [1] 

王強其他學術任職

1. 美國化學學會(American Chemical Society)會員
2. 美國微生物學會(American Society for Microbiology)會員
3. 美國植物生物學家學會(American Society of Plant Biologist)會員
4. 國際實驗生物學學會(Society of Experimental Biology)會員
5. 全球植物研究理事會(Global Plant Council)會員
6. 湖北省生物化學學會,理事
7. 中國植物生理與植物分子生物學學會,光合作用專業委員會,委員
8. 中國植物生理與植物分子生物學學會,植物生物質與生物能源專業委員會,委員
9. 中共武漢市委統戰部智庫專家
10. 瞭望智庫專家
11. 中美環境增值能源國際會議學術委員會委員 [1] 

王強代表論著

1. Giordano M, Wang Q. Microalgae for Industrial Purposes. In: Vaz Jr S, (ed). Biomass and Green Chemistry: Building a Renewable Pathway. Cham: Springer Nature Publishing, 2018, 133-167
2. Chen H, Wang J, Zheng Y, Zhan J, He C, Wang Q. Algal biofuel production coupled bioremediation of biomass power plant wastes based on Chlorella sp. C2 cultivation. Applied Energy, 2018, 211: 296-305
3. Zhang X, Ma F, Zhu X, Zhu J, Rong J, Zhan J, Chen H, He C, Wang Q. The Acceptor Side of Photosystem II Is the Initial Target of Nitrite Stress in Synechocystis sp. Strain PCC 6803. Appl Environ Microbiol, 2017, 83(3)
4. Zhan J, Rong J, Wang Q. Mixotrophic cultivation, a preferable microalgae cultivation mode for biomass/bioenergy production, and bioremediation, advances and prospect. International Journal of Hydrogen Energy, 2017, 42(12): 8505-8517
5. Ma F, Zhang X, Zhu X, Li T, Zhan J, Chen H, He C, Wang Q. Dynamic Changes of IsiA-Containing Complexes during Long-Term Iron Deficiency in Synechocystis sp. PCC 6803. Mol Plant, 2017, 10(1): 143-154
6. Hu J, Li T, Xu W, Zhan J, Chen H, He C, Wang Q. Small Antisense RNA RblR Positively Regulates RuBisCo in Synechocystis sp. PCC 6803. Front Microbiol, 2017, 8(231): 231
7. Chen H, Zhou W, Chen W, Xie W, Jiang L, Liang Q, Huang M, Wu Z, Wang Q. Simplified, rapid, and inexpensive estimation of water primary productivity based on chlorophyll fluorescence parameter Fo. J Plant Physiol, 2017, 211: 128-135
8. Chen H, Zheng Y, Zhan J, He C, Wang Q. Comparative metabolic profiling of the lipid-producing green microalga Chlorella reveals that nitrogen and carbon metabolic pathways contribute to lipid metabolism. Biotechnol Biofuels, 2017, 10(1): 153
9. Zhu X, Rong J, Chen H, He C, Hu W, Wang Q. An informatics-based analysis of developments to date and prospects for the application of microalgae in the biological sequestration of industrial flue gas. Appl Microbiol Biotechnol, 2016, 100(5): 2073-2082
10. Zhu J, Chen W, Chen H, Zhang X, He C, Rong J, Wang Q. Improved Productivity of Neutral Lipids in Chlorella sp. A2 by Minimal Nitrogen Supply. Front Microbiol, 2016, 7: 557
11. Zhan J, Zhu X, Zhou W, Chen H, He C, Wang Q. Thf1 interacts with PS I and stabilizes the PS I complex in Synechococcus sp. PCC7942. Mol Microbiol, 2016, 102(4): 738-751
12. Li T, Xu G, Rong J, Chen H, He C, Giordano M, Wang Q. The acclimation of Chlorella to high-level nitrite for potential application in biological NOx removal from industrial flue gases. J Plant Physiol, 2016, 195: 73-79
13. Chen W, Zhang S, Rong J, Li X, Chen H, He C, Wang Q. Effective Biological DeNOx of Industrial Flue Gas by the Mixotrophic Cultivation of an Oil-Producing Green Alga Chlorella sp. C2. Environ Sci Technol, 2016, 50(3): 1620-1627
14. Qiao Y, Rong J, Chen H, He C, Wang Q. Non-Invasive Rapid Harvest Time Determination of Oil-Producing Microalgae Cultivations for Biodiesel Production by Using Chlorophyll Fluorescence. Frontiers in Energy Research, 2015, 3
15. Mo R, Yang M, Chen Z, Cheng Z, Yi X, Li C, He C, Xiong Q, Chen H, Wang Q, Ge F. Acetylome analysis reveals the involvement of lysine acetylation in photosynthesis and carbon metabolism in the model cyanobacterium Synechocystis sp. PCC 6803. J Proteome Res, 2015, 14(2): 1275-1286
16. Daddy S, Zhan J, Jantaro S, He C, He Q, Wang Q. A novel high light-inducible carotenoid-binding protein complex in the thylakoid membranes of Synechocystis PCC 6803. Sci Rep, 2015, 5: 9480
17. Chen Z, Zhan J, Chen Y, Yang M, He C, Ge F, Wang Q. Effects of Phosphorylation of beta Subunits of Phycocyanins on State Transition in the Model Cyanobacterium Synechocystis sp. PCC 6803. Plant Cell Physiol, 2015, 56(10): 1997-2013
18. Chen H, Qiu T, Rong J F, He C L, Wang Q. Microalgal biofuel revisited: An informatics-based analysis of developments to date and future prospects. Applied Energy, 2015, 155: 585-598
19. Chen H, Hu J, Qiao Y, Chen W, Rong J, Zhang Y, He C, Wang Q. Ca(2+)-regulated cyclic electron flow supplies ATP for nitrogen starvation-induced lipid biosynthesis in green alga. Sci Rep, 2015, 5: 15117
20. Zhang X, Rong J, Chen H, He C, Wang Q. Current Status and Outlook in the Application of Microalgae in Biodiesel Production and Environmental Protection. Frontiers in Energy Research, 2014, 2
21. Zhang X, Chen H, Chen W, Qiao Y, He C, Wang Q. Evaluation of an oil-producing green alga Chlorella sp. C2 for biological DeNOx of industrial flue gases. Environ Sci Technol, 2014, 48(17): 10497-10504
22. Xu W, Chen H, He C L, Wang Q. Deep sequencing-based identification of small regulatory RNAs in Synechocystis sp. PCC 6803. PLoS One, 2014, 9(3): e92711
23. Chen H, Zhang Y, He C, Wang Q. Ca2+ signal transduction related to neutral lipid synthesis in an oil-producing green alga Chlorella sp. C2. Plant Cell Physiol, 2014, 55(3): 634-644
24. Chen G, Qu S, Wang Q, Bian F, Peng Z, Zhang Y, Ge H, Yu J, Xuan N, Bi Y, He Q. Transgenic expression of delta-6 and delta-15 fatty acid desaturases enhances omega-3 polyunsaturated fatty acid accumulation in Synechocystis sp. PCC6803. Biotechnol Biofuels, 2014, 7(1): 32
25. 張芯, 張雲明, 何晨柳, 王強. 微藻生物能源的產業化進程及其在CO_2減排中的應用進展. 生物產業技術, 2013(5): 45-51
26. Zhang Y M, Chen H, He C L, Wang Q. Nitrogen starvation induced oxidative stress in an oil-producing green alga Chlorella sorokiniana C3. PLoS One, 2013, 8(7): e69225
27. Wang Q. Three Step Dissociation and Covalent Stabilization of Phycobilisome. Photosynthesis Research for Food, Fuel and the Future: Springer Berlin Heidelberg, 2013, 156-166 [1] 
參考資料