蘭州大學研究生導師:侯歲穩(Dr. Suiwen Hou)

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蘭州大學研究生導師:侯歲穩(Dr. Suiwen Hou)

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蘭州大學研究生導師:侯歲穩(Dr. Suiwen Hou) 正文

  學習經歷

  1986.9-1990.6  甘肅省成縣師范學校,中專;

  1990.9-1994.6  西北師范大學生物系,學士;

  1994.9-1997.8  中科院昆明植物研究所,碩士,導師陳宗蓮研究員;

  1999.9-2004.5  蘭州大學生命科學學院,細胞生物學博士學位,導師賈敬芬教授;

  2002.1-2003.1  英國劍橋大學植物科學系,訪問學者,導師 Alex Webb 教授;

  2005.3-2008.2  中科院近代物理研究所,博士后,合作導師李文建研究員。

  1986.9-1990.6  Normal School of Chengxian, Gansu Province

  1990.9-1994.6  B.S., College of Life Sciences, Northwest Normal University

  1994.9-1997.8  M.S., Kunming Institute of Botany, Chinese Academy of Sciences,Supervisor Professor Zonglian Chen

  1999.9-2004.5  Ph.D., School of Life Sciences, Lanzhou University, Supervisor Professor Jingfen Jia

  2002.1-2003.1  Visiting scholar, Plant Sciences Department, Cambridge University, Supervisor Professor Alex Webb

  2005.3-2008.2  Postdoctor, Institute of Modern Physics, Chinese Academy of Sciences, Cooperation Supervisor Researcher Wenjian Li

  工作經歷

  1997.8-2000.5   蘭州大學生命科學學院助教;

  2000.6-2004.5   蘭州大學生命科學學院講師;

  2004.6-2009.5   蘭州大學生命科學學院副教授,碩士研究生導師;

  2009.6-現在     蘭州大學生命科學學院教授,博士研究生導師。

  1997.8-2000.5    Teaching assistant, School of Life Sciences, Lanzhou University, China

  2000.6-2004.5    Lecturer, School of Life Sciences, Lanzhou University, China

  2004.6-2009.5    Associate professor, School of Life Sciences, Lanzhou University, China

  2009.6-Present   Professor, School of Life Sciences, Lanzhou University, China

  教學及指導研究生情況

  主講本科生主干基礎課《細胞生物學》課程,研究生《植物細胞信號轉導專題》、《博士生前沿進展講座——細胞生物學專業》等課程,曾講授研究生《細胞信號轉導進展》和《專業英語》、本科生《細胞信號轉導》和《細胞生物學實驗》。已經畢業并獲得博士學位研究生10位、碩士學位研究生54位,指導70余名本科生畢業論文。有1位博士生獲得甘肅省第二屆優秀博士學位論文獎(秦倩倩),1位博士生獲得蘭州大學優秀博士學位論文獎(陳亮)。畢業研究生去向有國外著名大學博士后、博士生,國內重要大學、科研、教學以及企業等單位的工作人員。

  研究生主要招生方向:植物細胞信號轉導。

  歡迎有志于細胞科學研究的學子報考!

  歡迎師資、研究人員和博士后加盟!

  發表論文及專著

  主要發表的論文(*通訊作者):

  Hu C, Zhu Y, Cui Y, Cheng K, Liang W, Wei Z, Zhu M, Yin H, Zeng Li, Xiao Y, Lv M, Yi J, Hou S, He K, Li J, Gou X*. 2018. A group of receptor kinases are essential for CLAVATA signaling to maintain stem cell homeostasis. Nature Plants, 4: 205-211

  Zheng H, Zhang F, Wang SL, Su YH, Ji XR , Jiang PF, Chen RH, Hou SW, and Ding Y*. 2018. MLK1 and MLK2 coordinate RGA and CCA1 activity to regulate hypocotyl elongation in Arabidopsis thaliana. Plant Cell, 30: 67-82

  Huang BY, Qian PP, Gao N, Shen J, Hou SW*. 2017. Fackel interacts with gibberellic acid signaling and vernalization to mediate flowering in Arabidopsis. Planta, 245(5): 939-950

  Zhou WQ, Wang YC,  Wu ZL, Luo L, Liu P, Yan LF, Hou SW*. 2016. Homologs of SCAR/WAVE complex components are required for epidermal cell morphogenesis in rice. Journal of Experimental Botany, 67 (14): 4311-4323

  Chen L, Guan LP, Qian PP, Xu F, Wu ZL, Wu YJ, He K, Gou XP, Li J, Hou SW*. 2016. NRPB3, the third largest subunit of RNA polymerase II, is essential for stomatal patterning and differentiation in Arabidopsis. Development, 143: 1600-1611

  Yue J, Qin QQ, Meng SY, Jin HT, Gou XP, Li J, Hou SW*. 2016. TOPP4 regulates the stability of Phytochrome Interacting Factor 5 during photomorphogenesis in Arabidopsis. Plant Physiology, 170(3), 1381-1397

  Wu Y, Xun Q, Guo Y, Zhang J, Cheng K, Shi T, He K, Hou S, Gou X, Li J*. 2016. Genome-wide expression pattern analyses of the Arabidopsis leucine-rich repeat receptor-like kinases. Molecular Plant, 9(2): 289-300

  Guo XL, Qin QQ, Yan J, Niu YL, Huang BY, Guan LP, Li Y, Ren DT, Li J,  Hou SW*. 2015. TYPE-ONE PROTEIN PHOSPHATASE4 regulates pavement cell interdigitation by modulating PIN-FORMED1 polarity and trafficking in Arabidopsis. Plant Physiology, 167: 1058–1075

  Han B, Chen L, Wang J, Wu ZL, Yan LF, Hou SW*. 2015. Constitutive Expresser of Pathogenesis Related Protein 1 is required for pavement cell morphogenesis in Arabidopsis. PLOS One,  DOI:10.1371/journal.pone.0133249, http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0133249.

  Yang JX, Yan LF, Song YJ, Chai CC, Song LL, Guan LP,  Hou SW*. 2015. New roles for the Arabidopsis TAO1 gene besides disease resistance. Russ J Plant Physl, 62, 542–550

  Zhou WQ, Wu ZL, Zhang YC, Wu DL, Liu D, Wang YC, Gao QX, Dang BR, Li WJ, Hou SW*. 2015. Stable inheritance of excellent agricultural traits induced by 12C6+ heavy-ions in lentil (Lens culinaris Medik.). Czech J. Genet. Plant Breed, 51, 29–35

  Wang W, Zhang J, Qin QQ, Yue J, Huang BY, Xu XF, Yan LF, Hou SW*. 2014. The six conserved serine/threonine sites of REPRESSOR OF ga1-3 protein 1 are important for its functionality and stability in gibberellin signaling in Arabidopsis. Planta, 240: 763–779

  Qin QQ, Wang W, Guo XL, Yue J, Huang Y, Xu XF, Li J, Hou SW*. 2014. Arabidopsis DELLA protein degradation is controlled by a type-one protein phosphatase, TOPP4. PLOS Genetics, 10(7): e1004464. doi:10.1371/journal.pgen.1004464. http://www.plosgenetics.org/doi/pgen.1004464

  Yan LF, Cheng X, Jia RL, Qin QQ, Guan LP, Du H, Hou SW*. 2014. New phenotypic characteristics of three tmm alleles in Arabidopsis thaliana. Plant Cell Reports, 33: 719–731

  Hu ZH,  Xu F, Guan LP,  Qian PP,  Liu YQ, Zhang HF, Huang Y, Hou SW*. 2014. The tetratricopeptide repeat-containing protein Slow Green1 is required for chloroplast development in Arabidopsis. Journal of Experimental Botany, 65: 1111–1123

  Qian PP, Han B, Forestier E, Hu ZH, Gao N, Lu WW, Schaller H, Li J, Hou SW*. 2013. Sterols are required for cell fate commitment and maintenance of the stomatal lineage in Arabidopsis. The Plant Journal, 74:1029–1044

  Guo XL, Lu WW, Ma YR, Qin QQ, Hou SW*. 2013. The BIG gene is required for auxin-mediated organ growth in Arabidopsis. Planta, 237: 1135-1147

  Luo L, Zhou WQ, Liu P, Li CX, Hou SW*. 2012. The development of stomata and other epidermal cells on the rice leaves. Biologia Plantarum, 56(3): 521-527

  Qian PP, Hou SW*, Guo GQ. 2009. Molecular mechanisms controlling pavement cell shape in Arabidopsis leaves. Plant Cell Reports, 28: 1147-1157

  Wu DL, Hou SW*, Qian PP, Sun LD, Zhang YC, Li WJ. 2009. Flower color chimera and abnormal leaf mutants induced by 12C6+ heavy ions in Salvia splendens Ker- Gawl. Scientia Horticulturae, 121: 462-467

  Sun LD, Hou SW*, Wu DL, Zhang YC. 2008. Rapid clonal propagation of Zygophyllum xanthoxylon (Bunge) Maxim., an endangered desert forage species. In Vitro Cellular Development Biology - Plant. 44: 396-400

  Dodd AN, Jakobsen MK, Baker AJ, Tezerow A, Hou SW, Laplaze L, Barrot L, Poethig RS, Haseloff J, Webb AR. 2006. Time of day modulates low-temperature Ca2+ signals in Arabidopsis. The Plant Journal, 48:962-973

  He WT, Hou SW*, Wang CY. 2006. Callus induction and high-frequency plant regeneration from hypocotyl and cotyledon explants of Arctium lappa L. In Vitro Cellular and Development Biology-Plant, 42(5): 411-414

  He WT, Hou SW*, Wang CY. 2006. An efficient in vitro method for mass propagation of Potentilla potaninii Wolf. In Vitro Cellular and Development Biology-Plant, 42(5): 415-417

  Hou SW*, Jia JF. 2005. In vitro regeneration of Perilla frutescens from hypocotyl and cotyledon explants. Biologia Plantarum, 49: 129-132

  Hou SW*, Jia JF. 2004. High frequency regeneration from Astragalus melilotoides hypocotyl and stem explants via somatic embryogenesis and organogenesis. Plant Cell Tissue and Organ Culture, 2004, 79: 95-100

  Hou SW*, Jia JF. Plant regeneration from protoplasts isolated from embryogenic calli of the forage legume Astragalus melilotoides Pall. Plant Cell Reports, 2004, 22: 741-46

  編著教材:

  細胞生物學實驗(第4版),主編:王崇英,侯歲穩,高歡歡。高等教育出版社,2017。

  研究方向

  1、植物蛋白磷酸酶1(PP1)的功能。通過遺傳和分子生物學方法,在國際上首次發現擬南芥蛋白磷酸酶 PP1 調控赤霉素信號轉導、生長素的極性運輸和光信號通路。磷酸酶TOPP4通過對GA信號通路抑制蛋白DELLA去磷酸化修飾,促進其降解,正調控赤霉素信號通路(PLoS Genetics, 2014);證明TOPP4可以對生長素運輸蛋白PIN1去磷酸化,調控生長素在表皮細胞內外的極性分布,控制扁平細胞的形態建成(Plant Physiology,2015);發現TOPP4與phyB在紅光下對PIF5進行磷酸化修飾,調節PIF5的降解,參與了植物的光形態建成(Plant Physiology,2016)。目前主要深入闡明PP1調控植物生長發育機理,包括研究PP1的調節亞基、PP1參與各種逆境響應的分子機理,以及PP1在重要作物中的應用等。

  2、氣孔發育的分子機理。研究擬南芥、水稻表皮細胞發育圖式和形態建成的內在調控因子和信號轉導機制,已經克隆到多個參與氣孔及表皮細胞形態建成的基因。例如發現植物甾醇早期合成途徑調控氣孔系細胞的命運維持和決定,參與氣孔的圖式發育(Plant Journal,2013);發現RNA聚合酶II的亞基NRPB3、NRPB2對于氣孔圖式和分化是非常重要的,NRPB3通過與FAMA和ICE1直接作用,扮演了氣孔圖式發育過程中轉錄因子信號接受器的角色,這一策略與肌肉細胞的發育機理類似(Development,2016)。目前主要開展雙子葉和單子葉植物(水稻和玉米)氣孔發育的網絡調控,以及其在作物中的應用。

  1. The functions of protein phosphatase I (PP1) in plant

  Using genetic and molecular biology approaches, our research group illustrated that protein phosphatase PP1 regulates gibberellin signal transduction, auxin polar transport and light signaling pathways in Arabidopsis for the first time. The phosphatase TOPP4 dephosphorylates DELLA, a key GA signaling pathway inhibitor, and promotes its degradation, positively regulating GA signaling pathway (PLOS Genetics, 2014). TOPP4 also dephosphorylates PIN1, and regulates its polar distribution in the pavement cell, controlling pavement cell morphogenesis (Plant Physiology, 2015). In addition, TOPP4 dephosphotylates PIF5, and promotes its degradation during plant photomorphogenesis (Plant Physiology, 2016). At present, we focus on the PP1 mediated molecular mechanisms underlie plant growth and development and the function of PP1 regulatory subunits.

  2. The molecular mechanisms of stomata development

  Through forward and reverse genetic approaches, we cloned several genes controlling epidermal cell morphogenesis and stomotal patterning in Arabidopsis and rice. For example, early sterol synthesis pathway is required for cell fate commitment and maintenance in stomatal lineage (Plant Journal, 2013); NRPB3 and NRPB2, the subunits of RNA polymerase II, are essential for stomatal patterning and differentiation. NRPB3 receives signals from transcription factors during stomatal patterning development by directly interacting with FAMA and ICE1. This mechanism is similar to that in muscle cell differentiation (Development, 2016). At present, we are studying the regulatory mechanisms of stomatal development in rice and maize.

  項目成果

  主持7項國家自然科學基金,參加2項科技部“973”計劃項目、4項農業部轉基因專項,主持3項省基金項目等。部分項目:

  1、農業部重大專項,2016ZX08009003-002,抗逆和抗除草劑關鍵基因克隆及功能驗證,2016/01-2020/12,201萬元,參加/主持

  2、國家自然科學基金面上項目,31670185,水稻F-box蛋白SFC通過泛素化降解途徑調控氣孔圖式發育,2017/01-2020/12,62萬元,主持

  3、國家自然科學基金面上項目,31470372,TOPP4與WAT1相互作用調控赤霉素和生長素信號通路互作,2015/01-2018/12,90萬元,主持

  4、國家自然科學基金面上項目,31271460,TIR-NB-LRR蛋白調控乙烯合成和細胞擴展的分子機理,2013/01-2016/12,80萬元,主持

  5、國家自然科學基金重大研究計劃培育項目,91017002,擬南芥蛋白磷酸酶1調控赤霉素和生長素信號轉導機理,2011/01-2013/12,60萬元,主持

  6、國家自然科學基金面上項目,31070247,一個新的擬南芥PP1磷酸酶(PIPE)調節赤霉素信號轉導通路的研究,2011/01-2013/12,33萬元,主持

  7、國家自然科學基金面上項目,30670124,擬南芥氣孔發育圖式基因篩選與鑒定研究,2007/01-2009/12,27萬元,主持

  8、國家自然科學基金青年科學基金項目,30300029,用增強子誘捕法克隆與分析擬南芥保衛細胞的功能基因,2004/01-2006/12,19萬元,主持

  9、科技部“973 計劃”項目,2011CB915401,高等植物蛋白的重要修飾過程與調控機制,謝旗教授主持,2011/01-2015/12,45萬元,參加

  10、科技部“973 計劃”項目,2009CB941501,植物器官特征決定的遺傳和表觀遺傳調控網絡,曹曉風院士主持,2009/01-2013/12,80 萬元,參加

  榮譽、獲獎

  1、教育部“長江學者獎勵計劃”特聘教授(2017年)

  2、國務院政府特殊津貼(2016年)

  3、蘭州大學優秀博士學位論文指導教師(2016年)

  4、甘肅省優秀博士學位論文指導教師(2015年)

  5、教育部新世紀優秀人才支持計劃(2006年);

  6、甘肅省自然科學二等獎(2008年);

  7、陜西省科學技術獎二等獎(2006年);

  8、蘭州大學隆基中青年教師教學骨干獎(2009年);

  9、蘭州大學“三育人”先進個人(2007年);

  10、蘭州大學第二屆“教學新秀獎”(2000年)。

  社會工作

  《植物學報》第七屆編輯委員會責任編委,中國細胞生物學學會第九屆理事,中國植物學會外事處副主任,中國細胞生物學會植物器官發生分委員會委員、細胞生物學教學與普及工作委員會委員,中國植物生理與分子生物學學會植物激素生物學專業委員會委員,甘肅省植物學會理事,細胞活動與逆境適應教育部重點實驗室副主任,蘭州大學生命科學學院副院長。

 

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