鄧興旺,1962年10月出生于中國沅陵縣,生物學(xué)家,美國國家科學(xué)院院士,耶魯大學(xué)終身教授,北京大學(xué)現(xiàn)代農(nóng)業(yè)研究院院長、首席科學(xué)家,現(xiàn)代農(nóng)學(xué)院學(xué)術(shù)委員會(huì)主任。鄧興旺教授的研究領(lǐng)域?yàn)橹参锕庑螒B(tài)建成的分子機(jī)理,植物非編碼RNA功能。1985年,鄧興旺赴美留學(xué),在加利福尼亞大學(xué)伯克利分校攻讀博士學(xué)位。2001年,鄧興旺擔(dān)任北京大學(xué)耶魯大學(xué)植物分子遺傳學(xué)及農(nóng)業(yè)生物技術(shù)聯(lián)合研究中心主任。2003年至2008年,鄧興旺擔(dān)任北京生命科學(xué)研究所共同所長。2014年,鄧興旺辭去耶魯大學(xué)終身教授教職,全職回國籌建北京大學(xué)現(xiàn)代農(nóng)學(xué)院。
人物經(jīng)歷
1962年10月,鄧興旺出生于湖南省沅陵縣北溶鄉(xiāng)三八村鄧家?guī)X,該村只有5戶人家,要跑出10多里山路,才能見到公路。
1978年鄧興旺考入北京大學(xué)生物系植物生理生化專業(yè);1982年,獲北京大學(xué)生物學(xué)學(xué)士,之后在北京大學(xué)生物學(xué)專業(yè)攻讀碩士(導(dǎo)師梅鎮(zhèn)安)。
1985年到加利福尼亞大學(xué)伯克利分校做半年的植物光合作用研究工作,隨后獲得學(xué)校的優(yōu)秀生獎(jiǎng)學(xué)金,留校攻讀博士學(xué)位,專攻對(duì)葉綠體基因表達(dá)的調(diào)控研究。
1989年提前獲得加州大學(xué)伯克利分校植物生理及分子生物學(xué)博士學(xué)位,并獲得美國生命科學(xué)基金會(huì)的博士后獎(jiǎng)學(xué)金,之后在美國農(nóng)業(yè)部與伯克利分校合辦的研究所里進(jìn)行博士后研究,研究課題是:擬南芥光形態(tài)建成的分子遺傳學(xué)分析以及燕麥光敏色素A(phyA)基因的核蛋白與啟動(dòng)子相互作用的活體DNase指紋分析。
1992年進(jìn)入耶魯大學(xué)生物學(xué)系任教,開始創(chuàng)建自己的實(shí)驗(yàn)室,先后擔(dān)任助理教授(1992年-1995年);分子細(xì)胞發(fā)育生物學(xué)系副教授(1995年-1999年);終身副教授(1999年-2001年);分子細(xì)胞和發(fā)育生物學(xué)系終身正教授(2001年-)。
1995年8月28日獲得威廉·克林頓總統(tǒng)頒發(fā)的總統(tǒng)青年教師獎(jiǎng),可以連續(xù)5年每年獲得美國國家科學(xué)基金會(huì)10萬美元研究撥款的權(quán)利。
1998年起,他參與組織北京大學(xué)植物分子生物學(xué)與發(fā)育遺傳學(xué)暑期免費(fèi)講習(xí)班,并親自為學(xué)員授課。
1999年,因?yàn)樵谥参锓肿印?a href="/hebeideji/7182145673905618956.html">細(xì)胞和發(fā)育生物學(xué)領(lǐng)域取得的突出成就,他被耶魯大學(xué)提前聘為終身教授,成為上世紀(jì)80年代后美國常青藤大學(xué)植物生物學(xué)界第一位獲此殊榮的來自中國大陸的華人科學(xué)家。
2000年被北京大學(xué)聘為長江學(xué)者特聘講座教授。
2001年擔(dān)任北京大學(xué)-耶魯大學(xué)植物分子遺傳學(xué)及農(nóng)業(yè)生物技術(shù)聯(lián)合研究中心主任。
2003年應(yīng)邀擔(dān)任北京生命科學(xué)研究所共同所長。同年擔(dān)任耶魯大學(xué)Daniel C. Eaton植物生物學(xué)冠名講席教授。
2009年,成立未名興旺系統(tǒng)作物設(shè)計(jì)前沿實(shí)驗(yàn)室(北京)有限公司,擔(dān)任董事長。
2011年9月,鄧興旺迎接袁隆平先生到鄧興旺團(tuán)隊(duì)位于深圳市的研究場所參觀。
2013年當(dāng)選美國國家科學(xué)院院士。同年被評(píng)為品牌中國年度人物。
2014年辭去耶魯大學(xué)終身教授教職,全職回國籌建北京大學(xué)現(xiàn)代農(nóng)學(xué)院。
2015年12月8日,被授予《自然》杰出導(dǎo)師獎(jiǎng)。
2016年,加入南方科技大學(xué)開始籌辦植物分子遺傳學(xué)實(shí)驗(yàn)室。鄧興旺作為學(xué)術(shù)帶頭人主持的“植物細(xì)胞伸長的調(diào)控機(jī)理”獲得國家自然科學(xué)基金創(chuàng)新群體資助。
2018年起,擔(dān)任現(xiàn)代農(nóng)學(xué)院學(xué)術(shù)委員會(huì)主任。
主要成就
科研成就
鄧興旺在《細(xì)胞》《科學(xué)》《自然》等世界權(quán)威刊物上發(fā)表多篇學(xué)術(shù)文章,他領(lǐng)導(dǎo)的實(shí)驗(yàn)室所取得的成果處于世界領(lǐng)先水平,其研究成果成為了行業(yè)標(biāo)準(zhǔn)。
1987年,鄧興旺對(duì)葉綠體基因表達(dá)調(diào)控研究的新見解,由當(dāng)年《生化》《細(xì)胞》雜志發(fā)表,引起學(xué)術(shù)界強(qiáng)烈反響。
1992年,單體分離培養(yǎng)出第一個(gè)光性狀調(diào)控基因COP1,測(cè)定了它的分子結(jié)構(gòu)、作用和精確位置,實(shí)現(xiàn)了該項(xiàng)目研究的突破。
2010年,鄧興旺帶領(lǐng)團(tuán)隊(duì)創(chuàng)制了“第三代”雜交水稻育種技術(shù),它能夠在一定程度上克服兩系雜交稻制種風(fēng)險(xiǎn)大、水稻“三系”制種周期長的難題。
2014年,鄧興旺教授實(shí)驗(yàn)室在《美國科學(xué)公共圖書館·遺傳》發(fā)表了題為Photoactivated UVR8-COP1 Module Determines Photomorphogenic UV-B Signaling Output in Arabidopsis的研究論文,揭示了在擬南芥UV-B光受體UVR8如何在植物體內(nèi)感受UV-B信號(hào)并進(jìn)行信號(hào)轉(zhuǎn)導(dǎo)的機(jī)制。
2015年,鄧興旺研究組在《美國科學(xué)學(xué)院院報(bào)》發(fā)表題為“Arabidopsis DET1 degrades HFR1 but stabilizes PIF1 to precisely regulate seed germination”的研究論文,該工作首次鑒定到了光調(diào)控種子萌發(fā)的中心抑制子,并闡述了不同光照條件精確調(diào)控植物種子萌發(fā)的分子機(jī)理。
2016年,鄧興旺研究組在《美國科學(xué)學(xué)院院報(bào)》發(fā)表題為“BBX21, an Arabidopsis B-box protein, directly activates HY5 and is targeted by COP1 for 26S proteasome-mediated degradation”的研究論文,該項(xiàng)研究揭示了一個(gè)光調(diào)控植物幼苗形態(tài)建成的重要分子機(jī)制,為進(jìn)一步理解光調(diào)控植物生長發(fā)育信號(hào)通路具有重要意義。
2016年,鄧興旺研究組在《美國科學(xué)學(xué)院院報(bào)》發(fā)表題為“Noncanonical role of Arabidopsis COP1/SPA complex in repressing BIN2-mediated PIF3 phosphorylation and degradation in darkness”的研究成果,該研究結(jié)果對(duì)于深入發(fā)掘動(dòng)植物中COP1的新功能與作用機(jī)制提供了重要啟示。
人才培養(yǎng)
鄧興旺的研究成果被編入《植物發(fā)育的機(jī)制》等教科書;為研究生開設(shè)了《植物遺傳和發(fā)育》等多門專業(yè)課。2001年鄧興旺推動(dòng)成立了北京大學(xué)—耶魯植物分子遺傳及農(nóng)業(yè)生物技術(shù)聯(lián)合研究中心,之后在中國大陸的清華大學(xué)、北京大學(xué)、北京協(xié)和醫(yī)學(xué)院等高校聯(lián)合培養(yǎng)的碩士、博士,根據(jù)中國科學(xué)技術(shù)信息研究所、國家工程技術(shù)數(shù)字研究館信息、全國圖書館參考咨詢聯(lián)盟:2004年至2016年期間,培養(yǎng)的學(xué)生信息如下:
主要論文與著作
最近發(fā)表論文
1,Ling,約翰·約翰遜,Li,J.,Zhu,D. and Deng,X.W. (2017). Noncanonical role of Arabidopsis COP1/SPA complex in repressing BIN2-mediated PIF3 phosphorylation and degradation in darkness. Proc Natl Acad Sci U S A doi:10.1073/pnas.1700850114.
2,Zhu,P.,Wang,Y.,Qin,N.,Wang,F(xiàn).,Wang,J.,Deng,X.W.,and Zhu,D. (2016). Arabidopsis small nucleolar 核糖核酸 monitors the efficient pre-rRNA processing during ribosome biogenesis. Proc Natl Acad Sci U S A 113,11967-11972.
3,Chang,Z.,Chen,Z.,Wang,N.,Xie,G.,Lu,J.,Yan,W.,Zhou,J.,Tang,X.,and Deng,X.W. (2016). Construction of a male sterility system for hybrid rice breeding and seed production using a nuclear male sterility gene. Proc Natl Acad Sci U S A 113,14145-14150.
4,Li,K.,Yu,R.,F(xiàn)an,L.M.,Wei,N.,Chen,H.,and Deng,X.W. (2016). DELLA-mediated PIF degradation contributes to coordination of light and gibberellin signalling in Arabidopsis. Nat Commun 7,11868.
5,Shi,H.,Shen,X.,Liu,R.,Xue,C.,Wei,N.,Deng,X.W.,and Zhong,S. (2016). The 紅色 Light Receptor Phytochrome B Directly Enhances Substrate-E3 Ligase Interactions to Attenuate 乙烯 Responses. Dev Cell 39,597-610.
6,Xu,D.,Jiang,Y.,Li,J.,Lin,F(xiàn).,Holm,M.,and Deng,X.W. (2016). BBX21,an Arabidopsis B-box protein,directly activates HY5 and is targeted by COP1 for proteasome-mediated degradation. Proc Natl Acad Sci U S A 113,7655-7660.
7,Yan,W.,Chen,Z.,Lu,J.,Xu,C.,Xie,G.,Li,Y.,Deng,X.W.,He,H.,and Tang,X. (2016). Simultaneous Identification of Multiple Causal Mutations in Rice. Frontiers in plant science 7,2055.
8,Yu,R.,Yan,W.,Liang,M.,Dai,X.,Chen,H.,Sun,Y.,Deng,X.W.,Chen,X.,He,H.,and Chen,L. (2016). Exploring the genetic characteristics of 93-11 and Nipponbare recombination inbred lines based on the GoldenGate SNP assay. Sci China Life Sci 59,700-708.
9,Sun,N.,Wang,J.,Gao,Z.,Dong,J.,He,H.,Terzaghi,W.,Wei,N.,Deng,X.W. and Chen H. (2016). Arabidopsis SAURs are critical for differential light regulation of the development of various organs. Proc Natl Acad Sci U S A pii:201604782.
10,Yan,J.,Lv,S.,Hu,M.,Gao,Z.,He,H.,Ma,Q.,Deng,X.W.,Zhu Z. and Wang X. (2016). Single-Molecule Sequencing Assists Genome Assembly Improvement and Structural Variation Inference. 摩爾 Plant doi:10.1016/j.molp.2016.04.002.
11,Yang,M.,Huang,H.,Zhang,C.,Wang,Z.,Su,Y.,Zhu,P.,Guo,Y. and Deng,X.W. (2016). Arabidopsis atypical kinase ABC1K1 is involved in red light-mediated development. Plant Cell Rep 35(6):1213-1220.
12,Xu,D.,Zhu,D. and Deng,X.W. (2016). The role of COP1 in repression of photoperiodic flowering. F1000Res 5.
13,Yu,Y.,Wang,J.,Shi,H.,Gu,J.,越南盾,J.,Deng,X.W. and Huang R. (2016). Salt stress and 乙烯 antagonistically regulate nucleocytoplasmic partitioning of COP1 to control seed germination. Plant Physiol pii:pp.01724.2015.
14,Shi,H.,Liu,R.,Xue,C.,Shen,X.,Wei,N.,Deng,X.W. and Zhong S. (2016). Seedlings Transduce the Depth and Mechanical 壓強(qiáng) of Covering Soil Using COP1 and 乙烯 to Regulate EBF1/EBF2 for Soil Emergence. Curr Biol 26(2):139-149.
15,Ma,L.,Tian,T.,Lin,R.,Deng,X.W.,Wang H. and Li G. (2016). Arabidopsis FHY3 and FAR1 Regulate Light-Induced myo-肌醇 Biosynthesis and Oxidative 應(yīng)力 Responses by Transcriptional Activation of MIPS1. 摩爾 Plant 9(4):541-557.
16,Yang,M.,Wang,X.,Huang,H.,Ren,D.,Su,Y.,Zhu,P.,Zhu,D.,F(xiàn)an,L.,Chen,L.,He,G. and Deng,X.W. (2016). Natural variation of H3K27me3 modification in two Arabidopsis accessions and their hybrid. J Integr Plant Biol 58(5):466-474.
17,Dutilleul,C.,Ribeiro,I.,Blanc,N.,Nezames,C. D.,Deng,X.W.,Zglobicki,P.,Palacio Barrera,A. M.,Atehortua,L.,Courtois,M.,Labas,V.,Giglioli-Guivarc'h,N. and Ducos,E. (2016). ASG2 is a farnesylated DWD protein that acts as ABA negative regulator in Arabidopsis. Plant Cell Environ 39(1):185-198.
18,Zhou,D.,Chen,W.,Lin,Z.,Chen,H.,Wang,C.,Li,H.,Yu,R.,Zhang,F(xiàn).,Zhen,G.,Yi,J.,Li,K.,Liu,Y.,Terzaghi,W.,Tang,X.,He,H.,Zhou,S. and Deng,X.W. (2016). Pedigree-based analysis of derivation of genome segments of an elite rice reveals key regions during its breeding. Plant Biotechnol J 14(2):638-648.
19,Huang,L.,Zhang,H.,Zhang,H.,Deng,X.W. and Wei,N. (2015). HY5 regulates nitrite reductase 1 (NIR1) and ammonium transporter1;2 (AMT1;2) in Arabidopsis seedlings. Plant Sci 238:330-339.
20,Xu,D.,Lin,F(xiàn).,Jiang,Y.,Ling,J.,Hettiarachchi,C.,Tellgren-Roth,C.,Holm,M.,Wei,N. and Deng,X.W. (2015). Arabidopsis COP1 SUPPRESSOR 2 Represses COP1 E3 Ubiquitin Ligase Activity through Their Coiled-Coil Domains Association. PLoS 獛屬 11(12):e1005747.
21,Zhu,L.,Bu,Q.,Xu,X.,Paik,I.,Huang,X.,Hoecker,U.,Deng,X.W. and Huq,E. (2015). CUL4 forms an E3 ligase with COP1 and SPA to promote light-induced degradation of PIF1. Nat Commun 6:7245.
22,Dong,J.,Terzaghi,W.,Deng,X.W. and Chen H. (2015). Multiple photomorphogenic repressors work in concert to regulate Arabidopsis seedling development. Plant Signal Behav 10(3):e1011934.
23,Huang,H.,Yang,M.,Su,Y.,Qu,L.,and Deng,X.W. (2015). Arabidopsis Atypical Kinases ABC1K1 and ABC1K3 Act Oppositely to Cope with Photodamage Under Red Light. 摩爾 Plant 8,1122-1124.
24,Yang,L.,Li,B.,Zheng,X.Y.,Li,J.,Yang,M.,Dong,X.,He,G.,An,C.,and Deng,X.W. (2015). Salicylic acid biosynthesis is enhanced and contributes to increased biotrophic pathogen resistance in Arabidopsis hybrids. Nat Commun 6,7309.
280 Li,K.,Gao,Z.,He,H.,Terzaghi,W.,F(xiàn)an,L.M.,Deng,X.W.,and Chen,H. (2015). Arabidopsis DET1 Represses Photomorphogenesis in Part by Negatively Regulating DELLA Protein Abundance in Darkness. 摩爾 Plant 8,622-630.
25,Shi,H.,Wang,X.,Mo,X.,Tang,C.,Zhong,S.,and Deng,X.W. (2015). Arabidopsis DET1 degrades HFR1 but stabilizes PIF1 to precisely regulate seed germination. Proc Natl Acad Sci U S A. 112,3817-3822.
26,Zhang,H.,Zhao,X.,Li,J.,Cai,H.,Deng,X.W.,and Li,L. (2014). Micro核糖核酸408 is critical for the HY5-SPL7 gene network that mediates the coordinated response to light and 銅 Plant Cell 26,4933-4953.
27,Kim,S. H.,Kim,H.,Seo,K. I.,Kim,S. H.,Chung,S.,Huang,X.,Yang,P.,Deng,X. W.,and Lee,J. H. (2014). DWD HYPERSENSITIVE TO UV-B 1 is negatively involved in UV-B mediated cellular responses in Arabidopsis. Plant 摩爾 Biol 86,571-583.
28,Kim,S. H.,Lee,J. H.,Seo,K. I.,Ryu,B.,Sung,Y.,Chung,T.,Deng,X. W.,and Lee,J. H (2014). Characterization of a Novel DWD Protein that Participates in Heat Stress Response in Arabidopsis. 摩爾 Cells 37,833-840.
29,Dong,J.,Tang,D.,Gao,Z.,Yu,R.,Li,K.,He,H.,Terzaghi,W.,Deng,X. W. and Chen,H. (2014). Arabidopsis DE-ETIOLATED1 Represses Photomorphogenesis by Positively Regulating Phytochrome-Interacting Factors in the Dark. Plant Cell 26,3630-3645.
30,Wang,L.,Li,J.,Zhou,Q.,Yang,G.,Ding,X. L.,Li,X.,Cai,C. X.,Zhang,Z.,Wei,H. Y.,Lu,T. H.,Deng,X. W. and Huang,X. H. (2014). Rare 地球 elements activate endocytosis in plant cells. Proc Natl Acad Sci U S A. 111,12936-12941.
31,Chen,F(xiàn).,Li,B.,Demone,J.,Charron,J.B.,Shi,X.,and Deng,X.W. (2014). Photoreceptor partner FHY1 has an independent role in gene modulation and plant development under far-red light. Proc Natl Acad Sci U S A 111,11888-11893.
32,Huang,X.,Ouyang,X.,and Deng,X.W. (2014). Beyond repression of photomorphogenesis:role switching of COP/DET/FUS in light signaling. Curr Opin Plant Biol 21C,96-103.
33,Ouyang,X.,Huang,X.,Jin,X.,Chen,Z.,Yang,P.,Ge,H.,Li,S.,and Deng,X.W. (2014). Coordinated photomorphogenic UV-B signaling network captured by mathematical modeling. Proc Natl Acad Sci U S A 111,11539-11544.
34,Wang,Y.,F(xiàn)an,X.,Lin,F(xiàn).,He,G.,Terzaghi,W.,Zhu,D.,and Deng,X.W. (2014). Arabidopsis noncoding RNA mediates control of photomorphogenesis by red light. Proc Natl Acad Sci U S A 111,10359-10364.
35,Xu,D.,Lin,F(xiàn).,Jiang,Y.,Huang,X.,Li,J.,Ling,J.,Hettiarachchi,C.,Tellgren-Roth,C.,Holm,M.,and Deng,X.W. (2014). The RING-Finger E3 Ubiquitin Ligase COP1 SUPPRESSOR1 Negatively Regulates COP1 Abundance in Maintaining COP1 Homeostasis in Dark-Grown Arabidopsis Seedlings. Plant Cell 26,1981-1991.
36,Chen,F(xiàn).,Li,B.,Li,G.,Charron,J.B.,Dai,M.,Shi,X.,and Deng,X.W. (2014). Arabidopsis Phytochrome A Directly Targets Numerous Promoters for Individualized Modulation of Genes in a Wide Range of Pathways. Plant Cell 26,1949-1966.
37,Jin,D.,Li,B.,Deng,X.W.,and Wei,N. (2014). Plant COP9 signalosome subunit 5,CSN5. Plant Sci 224,54-61.
38,Huang,X.,Yang,P.,Ouyang,X.,Chen,L.,and Deng,X.W. (2014). Photoactivated UVR8-COP1 module determines photomorphogenic UV-B signaling output in Arabidopsis. PLoS Genet 10,e1004218.
參考資料:
書籍編撰
專著
1. Karplus,V. J.,and Deng,X.W. (2007). Agricultural Biotechnology in China: Origins and Prospects (a book with 10 chapters). Forwarded by Norman E. Borlaug. Published December 7,2007 by Springer.
參考資料:
書籍章節(jié)
1.Gruissem,W.,Deng,X.W.,Jones,H.,Stern,D,Tonkyn,J.,and Zurawski,G.(1987).Transcriptional and post transcriptional regulation of chloroplast gene expression.In Structure and 函數(shù) of Plant Genome,pp.135 148,Eds: Von Wettstein D.,Chua,N.H.Plenum Press,New York.
2.Melis,A.,and Deng,X.W.(1987).The physiological significance of thylakoid membrane protein phosphorylation.In Progress in Photosynthesis Research,Eds: Biggins,J.Vol.II (2):257 260.Springer.
3.Deng,X.W.,and Gruissem,W.(1994).Chloroplast run-on transcription: determination of the transcription activity of chloroplast genes.A chapter on a published laboratory manual based on a COLD SPRING HARBOR COURSE.
4.Kwok,S.F.,and Deng,X.W.(1996).The role of he pleiotropic Arabidopsis COP/DET/FUS genes in repression of photomorphogenic development in darkness.In Current Topics in Plant Physiology: an american Society of Plant Physiologists Series on [regulation of plant growth and development by light] vol.17 pg.134-143
5.Chamovitz,D.A.,and Deng,X.W.(1998).Molecular approaches to biochemical purification: the COP9 complex paradigm.NATO ASI series,vol.H104,83-91.
6.Habashi,J.,and Deng,X.W.(2002).Nondenaturing Gel Electrophoresis of Proteins.In Arabidopsis-A Laboratory Manual.pp.228-233,Eds: Weigel,D.,and Glazebrook,J.Cold Spring Harbor Laboratory Press.
7.Schwechheimer,C.,and Deng,X.W.(2002).Studying protein-protein interactions with the 酵母浸膏 two-hybid system.Chapter 9 in Molecular Plant Biology: A practical Approach,volume II,pp.173-198.Eds: Philip 重癥肌無力and Chris B.Oxford University Press.
8.Schwechheimer,C.,and Deng,X.W.(2002).FPLC Gel Filtration.In Arabidopsis-A Laboratory Manual pp.226-228,Eds: Weigel,D.,and Glazebrook,J.Cold Spring Harbor Laboratory Press.
9.Wang,H.,and Deng,X.W.(2002).Phytochrome signaling mechanisms.In The Arabidopsis Book,Eds.Somerville,C.R.,and Meyerowitz,e.m.,American Society of Plant Biologists.
10.Li,L.,Wang,X.,Li,X.,Su,N.,Stolc,V.,Han,B.,Li,J.,Xue,Y.,Wang,J.,and Deng,X.W.(2004).Toward genome-wide transcriptional analysis in rice using MAS oligonucleotide tiling-path microarrays.In Rice Is Life: Scientific Perspectives For The 21st Century.Eds: Toriyama K.,Heong,K.L.and Hardy,B.Proceedings of the World Rice Research Conference.
11.Yanagawa,Y.,F(xiàn)eng,S.,and Deng,X.W.(2005).Light control of plant development: a role of the ubiquitin/proteasome-mediated proteolysis.Chapter 29 in Light Sensing in Plants,pp.253-260.Eds: Wada,M.,Shimazaki,K.,and Lino,M.Springer.
12.Li,J.,Li,G.,Wang,H.,and Deng,X.W.(2011).Phytochrome signaling mechanisms.Arabidopsis Book 9: e0148.
13.He,G.,and Deng X.W.(2013).Chromatin and gene expression mechanisms in hybrids.Chapter 20 in Hybrid and Polyploid Genomics.John Wiley & Sons,Inc.: 323-333.
參考資料:
書籍中譯本
1.Published in Chinese in February 2004.Biochemistry & Molecular Biology of Plants.Eds: Bob Buchanan,Wilhelm Gruissem,and Russell Jones.American Society of Plant Physiologists,Rockville,MD,üSA2002 version.
2.Published in Chinese in June 2006.Mechanisms in Plant Development.Eds: Ottoline Leyser,and Stephen Day.Wiley-Blackwell,Oxford.2002 version.
參考資料:
主講課程
鄧興旺曾主持(和共同主持)《舌尖上的植物學(xué)》《植物發(fā)育及分子生物學(xué)》《農(nóng)業(yè)生物技術(shù)課題設(shè)計(jì)和論文寫作》《植物學(xué)進(jìn)展》等課程。
人物評(píng)價(jià)
鄧興旺有著堅(jiān)忍不拔的探索精神和扎實(shí)深厚的科研功底,他還對(duì)中國生物學(xué)基礎(chǔ)研究、農(nóng)業(yè)生物技術(shù)研發(fā)等方面做出了突出貢獻(xiàn)。(中國新聞網(wǎng)評(píng))
鄧興旺對(duì)植物基因組的研究可以更深入地了解植物防御機(jī)制和調(diào)控,激素調(diào)控,植物形態(tài)和大小的生物工程等諸多領(lǐng)域,這一基礎(chǔ)研究應(yīng)用于作物改良 - 這對(duì)中美兩國都具有重要意義,對(duì)整個(gè)人類具有廣泛影響。(2003年國際植物分子生物學(xué)學(xué)會(huì)Kumho獎(jiǎng)評(píng))
榮譽(yù)表彰
社會(huì)任職
學(xué)術(shù)任職
雜志任職
參考資料 >
北京大學(xué)鄧興旺教授和陳雪梅校友當(dāng)選美國科學(xué)院院士.北京大學(xué)新聞網(wǎng).2024-02-04
鄧興旺教授宴請(qǐng)北大---耶魯暑期學(xué)校師生.北京大學(xué)新聞網(wǎng).2024-02-04
【新京報(bào)】鄧興旺:用技術(shù)改變農(nóng)民命運(yùn).北京大學(xué)新聞網(wǎng).2024-02-04
鄧興旺.北京大學(xué).2024-05-02
鄧興旺.www.ccopsa.cn.2024-05-01
鄧興旺.北京大學(xué).2024-05-01
鄧興旺:我為何回國辦現(xiàn)代農(nóng)學(xué)?.北京大學(xué)新聞網(wǎng).2024-06-27
鄧興旺.北京大學(xué)生命科學(xué)學(xué)院.2024-09-08
鄧興旺.北京大學(xué)現(xiàn)代農(nóng)學(xué)院.2024-09-07