羅小金

發布時間:2021-08-01瀏覽次數:7201

教師基本信息Basic information

姓名Name羅小金Xiaojin Luo

職稱Title研究員Professor

職務Duties基因技術教育部工程研究中心副主任Deputy Director of MOE Engineering Research Center of Gene Technology

電子郵箱Emailluoxj@fudan.edu.cn

辦公地點Office location狗万外围充值 江灣校區生科樓C409

C409, Life Science Building, Jiangwan Campus, Fudan University

辦公電話Office Phone021-31246573

個人網頁/課題組主頁Personal webpage/research group homepage

研究方向Research Interests

水稻遺傳改良:利用分子遺傳學、細胞生物學、基因組學和生物信息學等手段,以野生稻染色體片段置換係為材料,挖掘、研究水稻野生資源中的高產、優質基因,並利用現代生物技術協同改良產量與品質、培育水稻新品種。

Genetic improvement of rice: mining and studying high-yield and high-quality genes in rice, and cultivating new rice varieties.

個人簡介Personal profile

男,博士,研究員,博士生導師,遺傳工程國家重點實驗室獨立PI2006年獲中國農業大學農學博士學位;2006-2008年在狗万外围充值 生科院從事博士後研究;2009年至今,万博英超狼队网官方网 ,講師、副研究員、研究員。長期從事水稻種質資源與分子遺傳育種工作。擔任Crop Design雜誌編委,兼任上海遺傳學會、作物學會及農學會理事,中國遺傳學會標準化技術委員會委員。主持課題有:上海市“東方英才”拔尖人才項目,江西省“千人計劃”創新領軍人才項目,科技創新2030-農業生物育種重大項目,國家自然科學基金麵上項目,上海市教委科研創新計劃重大項目等。聯合培育水稻新品種三個:申優27、申優42及申優R2,培育獲得環境釋放基因編輯新品係兩個:T025-1CGHC-1。先後獲得上海市科技進步一等獎、江西省科技進步二等獎。

Xiaojin Luo received the Ph.D. degree from College of Agriculture, China Agricultural University, China, in 2006. He is currently a professor with School of Life Science, Fudan University, Shanghai, China. He has been engaged in rice germplasm resources and molecular genetic breeding for a long time.

授課情況Teaching講授《基因組學》Genomics

招生專業Enrollment major植物遺傳學Plant Genetics

科研項目Projects

[1]上海市東方英才(鄉村振興)拔尖人才項目,水稻高產與優質性狀的形成及協同改良的分子機製,2024/01/01-2026/12/31,主持

[2]科技創新2030-農業生物育種”重大項目,2023ZD04066,資源高效與耐鹽堿水稻新品種設計與培育,2023/12-2025/12,子課題負責人

[3]上海市教委科研創新計劃重大項目,2023ZKZD05水稻高產優質基因的挖掘與應用,2023/01/01-2027/12/31,主持

[4]國家自然科學基金麵上項目,32172043RBP-A-J-K複合體對水稻粒重和粒型的轉錄後調控,2022/01-2025/12,主持

[5]國家自然科學基金麵上項目,31971918TGW3/OsSK41負調水稻籽粒大小的分子機製與應用,2020/01-2023/12,主持

[6]江西省“千人計劃”創新領軍人才項目(2019年),負調OsPDCD5基因改良水稻產量,2020/01-2022/12,主持

[7]上海市“科技創新行動計劃”項目,19391900400,利用現代分子育種技術培育優質穩產粳稻新品種,2019/11-2022/10,主持

[8]國家重點研發計劃,2016YFD0100902,水稻功能基因組研究與應用,2016/9-2021/6,子課題負責人

[9]國家自然科學基金麵上項目,31671655Anti-OsPDCD5/Cas9-OsPDCD5提高水稻生物量、增加產量的分子機製2017/01-2020/12,主持

[10]轉基因重大專項,2016ZX08001004001-006,高產轉基因水稻新品種培育,2016/01-2020/12子課題負責人

[11]國家自然科學基金麵上項目,31471461,東鄉野生稻OsEBS基因增加穗粒數以及提高生物量的機理,2015/01-2018/12,主持

[12]上海市科技興農重點攻關項目,滬農科攻字(2014)第7-1-2號,水稻秈粳雜種育性基因的遺傳基礎及其種質創新研究,2014/10-2019/09任務負責人

[13]山東省農業良種工程項目,水稻產量與品質特異性種質材料的創新與利用,2014/06-2017/06任務負責人

[14]轉基因重大專項,2014ZX08001004001-009,高光效與理想株型高產轉基因水稻新品種培育,2014/01-2015/12子課題負責人

[15]上海市自然科學基金,13ZR1402800,江西東鄉野生稻控製株型及穗粒數基因OsEBS的克隆及應用研究,2013/07-2016/06,主持

[16]轉基因重大專項,2013ZX08001004001-009,高光效與理想株型高產轉基因水稻新品種培育,2013/01-2013/12子課題負責人

[17]國家自然科學青年基金,30900881,水稻穗粒數及葉寬窄變化的遺傳及細胞分子機製研究,2010/01-2012/12,主持

[18]教育部博士點新教師基金,20090071120034,江西東鄉野生稻增產QTL qGY2-1區域的比較基因組,2010/01-2012/12,主持

[19]轉基因重大專項,2009ZX08001-028B,水稻反義程序性死亡基因轉基因耐鹽新品係的培育,2009/06-2010/12任務負責人

[20]轉基因重大專項,2009ZX08009-047B,水稻抗褐飛虱基因的克隆及功能驗證,2009/06-2010/12任務負責人

[21]中國博士後基金首批特別資助,20080117,東鄉野生稻穗粒數QTL的克隆及利用,2008/12,主持

[22]中國博士後基金一等資助,20060400160,東鄉野生稻穗粒數QTL的定位及克隆,2006/12-2008/12,主持

獲獎情況Award

1.上海市科技進步一等獎R52023First Prize of Shanghai Science and Technology Progress Award (2023)

2.狗万外围充值 研究生教材二等獎(3/32021Second Prize in Graduate Textbooks of Fudan University (2021)

3.複星醫藥獎教金(201220142018Fosun Medical Scholarship (2012, 2014, 2018)

4.江西省科學技術進步二等獎R72007Second Prize of Jiangxi Province Science and Technology Progress Award (2007)

5.中國農業大學優秀博士學位論文(校十佳,2006Excellent Doctoral Dissertation from China Agricultural University (2006)

代表性論文和論著Selected Publications

1. Ren D#, Liu H#, Sun XJ#, Zhang F#, Jiang L, Wang Y, Jiang N, Yan PW, Cui JH, Yang JS, Li ZK*, Lu PL*and Luo XJ*(2023).Post-transcriptional regulation of grain weight and shape by the RBP A-J-K complex in rice.Integr Plant BiolDOI: 10.1111/ jipb.13583.

2. Hu ZJ#, Niu FA#, Yan PW#, Wang K, Zhang LX, Yan Y, Zhu Y, Dong SQ, Ma FY, Lan DY, Liu SW, Xin XY, Wang Y, Yang JS, Cao LM*, Wu SJ*, Luo XJ*(2023). The kinase OsSK41/OsGSK5 negatively regulates amylose content in rice endosperm by affecting the interaction between OsEBP89 and OsBP5. Integr Plant Biol65(7): 1782-1793

3. Ma FY#, Zhang F#, Zhu Y#, Lan DY, Yan PW, Wang Y, Hu ZJ, Zhang XW, Hu J, Niu FA, Liu MY, He SC, Cui JH, Yuan XY, Yan Y, Wu SJ, Cao LM, Bian HW, Yang JS, Li ZK*. Luo XJ*(2023). Auxin signaling module OsSK41-OsIAA10-OsARF regulates grain yield traits in rice. Integr Plant Biol, 65(7): 1753-1766

4. Lan DY#, Cao LM#, Liu MY, Ma FY, Yan PW, Zhang XW, Hu J, Niu FA, He SC, cui JH, Yuan XY, Yang JS, Wang Y*, Luo XJ*(2023). The identification and characterization of a plant height and grain length related gene hfr131 in rice. Front Plant Sci, 14DOI: 10.3389/fpls.2023.1152196.

5. Jiang L, Jiang N, Hu ZJ, Sun XJ, Xiang X, Liu YH, Wu MW, Liu CM*, Luo XJ* (2023). TATA-box binding protein-associated factor 2 regulates grain size in rice. Crop J, 11(2):438-446.

6. Wang Y, Li XY, Ishikawa R, Luo XJ*(2023). Editorial: Mining andutilization of favorable generesources in rice.Front Plant Sci, DOI 10.3389/fpls.2023.1289069

7.Yan PW#, Zhu Y#, Wang Y, Ma FY, Lan DY, Niu FA, Dong SQ, Zhang XW, Hu J, Liu SW, Guo T, Xin XY, Zhang SY, Yang JS, Cao LM*Luo XJ*(2022). A new RING finger protein, PLANT ARCHITECTURE and GRAIN NUMBER 1, affects plant architecture and grain yield in rice. Int J Mol Sci, 23(2)824, doi.org/10.3390/ijms 23020824.

8. Dong SQ#, Dong XX#, Han XK, Zhang F, Zhu Y, Xin XY, Wang Y, Hu YY, Yuan DY, Wang JP, Huang Z, Niu FA, Hu ZJ, Yan PW, Cao LM, He HH, Fu JR, Xin YY, Tan YN, Mao BG, Zhao BR*, Yang JS*, Yuan LP, Luo XJ* (2021).OsPDCD5 negatively regulates plant architectureand grain yield in rice. Proc Natl Acad Sci USA, 118: 1-11, doi.org/10.1073/pnas.2018799118

9. Liu H#, Ren D#, Jiang L, Li XJ, Yao Y, Mi LM, Chen WL, Mo AW, Jiang N, Yang JS, Chen P, Ma H, Luo XJ*, Lu PL*(2020). A Natural Variation in PLEIOTROPIC DEVELOPMENTAL DEFECTS Uncovers a Crucial Role for Chloroplast tRNA Modification in Translation and Plant Development. Plant cell, 32: 2345-2366

10. Liu YH, Zhu Y, Xu XD, Sun F, Yang JS, Cao LM*, Luo XJ*(2019). OstMAPKKK5, a truncated mitogen-activated protein kinase 5, positively regulates plant height and yield in rice. Crop J, 7(5):707-714

11. Hu ZJ#, Lu SJ#, Wang MJ#, He HH, Sun L, Wang HR, Liu XH, Jiang L, Sun JL, Xin XY, Kong W, Chu CC, Xue HW, Yang JS, Luo XJ*, Liu JX* (2018). A Novel QTL qTGW3 Encodes the GSK3/SHAGGY-Like Kinase OsGSK5/OsSK41 that Interacts with OsARF4 to Negatively Regulate Grain Size and Weight in Rice. Mol Plant, 11(5): 736-749

12. Wang YCao LMZhang YXCao CXLiu FHuang FK, Qiu YF, Li RB*, Luo XJ* (2015). Map-based cloning and characterization of BPH29, a B3 domain-containing recessive gene conferring brown planthopper resistance in rice.J Exp Bot66(19)6035-6045

13. Dong XXWang XYZhang LSYang ZTXin XYWu SSun CQLiu JXYang JSLuo XJ* (2013). Identification and characterization of OsEBS, a gene involved in enhanced plant biomass and spikelet number in rice. Plant Biotechnol J, 11(9): 1044-1057

14. Yang MF, Sun F, Wang SY, Qi WW, Wang QJ, Dong XX, Yang JS*, Luo XJ*(2013). Down-regulation of OsPDCD5, a homolog of the mammalian PDCD5, increases rice tolerance to salt stress. Mol Breeding,31(2): 333-346.

15. Hu ZJ#He HH#Zhang SYSun FXin XYWang WX, Qian X, Yang JS, Luo XJ*(2012). A Kelch Motif-Containing Serine/Threonine Protein Phosphatase Determines the Large Grain QTL Trait in Rice. Integr Plant Biol, 54(12): 979-990. 52

16. Luo XJ#Wu S#Tian F #Xin XYZa XJDong XXFu YCWang XKYang JS*Sun CQ*(2011). Identification heterotic loci associated with yield-related traits derived from Chinese common wild rice (Oryza rufipogon Griff.). Plant Sci, 181(1): 14-22. 38

17. Qi WWSun FWang QJChen MLHuang YQFeng YQLuo XJ, Yang JS†*(2011). Rice Ethylene-Response AP2/ERF Factor OsEATB Restricts Internode Elongation by Down-Regulating a Gibberellin Biosynthetic Gene. Plant Physiol, 157(1): 216-228

18. Liang F#Xin XY#Hu ZJXu JDWei GQian XYYang JS, He HH*, Luo XJ*(2011). Genetic Analysis and Fine Mapping of a Novel Semidominant Dwarfing Gene LB4D in Rice. J Integr Plant Biol,53(4): 312-323

19. Luo XJ, Fu YC, Zhang PJ, Wu S, Tian F, Liu JY, Zhu ZF, Yang JS, Sun CQ*(2009). Additive and Over-dominant Effects Resulting from Epistatic Loci Are the Primary Genetic Basis of Heterosis in Rice. J Integr Plant Biol, 51(4): 393-408.

20. He GM#, Luo XJ#, Tian F, Li KG, Zhu ZF, Su W, Qian XY, Fu YC, Wang XK, Sun CQ*, Yang JS* (2006). Haplotype variation in structure and expression of a gene cluster associated with a quantitative trait locus for improved yield in rice. Genome Res, 16: 618-626







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