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领域:现代农业 学校:西南大学职称:教授

油菜高收获指数与高产的分子机制、植物多倍体进化机制与群体遗传学、油菜源-库能量分配的分子调控网络...

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教育背景

1998-2002:西南农业大学农学与生物科技学院,农学学士 2002-2008:西南大学农学与生物科技学院,农学博士(导师:李加纳教授)

工作经历

2009-2010:西南大学农学与生物科技学院,生物学博士后(导师:李加纳教授) 2010-2017:西南大学农学与生物科技学院,副研究员,硕士生导师 2017-至今:西南大学农学与生物科技学院,研究员,博士生导师 2018.12-至今:南方山地农业教育部工程技术研究中心主任 2019.02-至今:南方山地作物逆境生物学国家级培育基地副主任 2019.06-至今:西南大学农业科学研究院副院长

项目课题经历

近年主持的主要科研项目 1. 国家自然科学基金面上项目:甘蓝型油菜SPL基因介导ROS和SA途径提高菌核病抗性的分子机制,60万,2019年-2022年 (31871653) 2. 国家重点研发计划课题:长江上游及北方油菜高产优质适宜机械化新品种培育——油菜优异育种新材料的创制,456万,2018年-2020年 (2018YFD0100501) 3. 重庆市自然科学基金基础研究与前沿探索项目:基于转录组与全基因组关联分析发掘甘蓝型油菜结角性状相关基因,10万,2018年-2021年 (cstc2018jcyjA1219) 4. 国家重点研发计划子课题:油菜、蔬菜重要性状的功能基因组与调控网络——油菜高收获指数和高产形成分子机制,60万,2016年-2020年 (2016YFD0101007) 5. 国家自然科学基金面上项目:甘蓝型油菜生长素极性运输异常导致茎秆弯曲的分子机制,58万,2016年-2019年 (31571701) 6. 国家自然科学基金青年基金项目:甘蓝型油菜组织特异型启动子的分离与鉴定,23万,2012年-2014年 (31101175) 7. 教育部博士点新教师基金:甘蓝型油菜BnPAP12基因家族根际有机磷利用的分子机制,3.6万,2011年-2013年 (20100182120016) 8. 重庆市自然科学基金:甘蓝型油菜BnSKIPa基因家族的耐旱分子机理研究,5万,2012年-2014年 (cstc2011jjA80026) 9. 重庆市高等学校青年骨干教师资助计划:甘蓝型油菜组织特异型启动子的分离与鉴定,12万,2012年-2013年

论文、成果、著作等

近年代表论文 1. Lu K†, Wei L†, Li X†, Wang Y, Wu J, Liu M, Zhang C, Chen Z, Xiao Z, Jian H, Cheng F, Zhang K, Du H, Cheng C, Qu C, Qian W, Liu L, Wang R, Zou Q, Ying J, Xu X, Mei J, Liang Y, Chai Y-R, Tang Z, Wan H, Ni Y, He Y, Lin N, Fan Y, Sun W, Li N-N, Zhou G, Zheng H, Wang X*, Paterson AH *, Li J* (2019) Whole-genome resequencing reveals Brassica napus origin and genetic loci involved in its improvement. Nature Communications. 10: 1154 IF2017= 12.353. 2. Lu K*,†, Li T†, He J†, Chang W†, Zhang R, Liu M, Yu M, Fan Y, Sun W, Ma J, Qu C, Liu L, Li N, Liang Y, Wang R, Tang Z, Qian W, Xu X, Lei B, Zhang K*, Li J* (2018) qPrimerDB: A thermodynamics-based gene-specific qPCR primer database for 147 organisms. Nucleic Acids Research 46: D1229–D1236. IF2017= 11.561. 3. Liu M†, Chang W†, Fan Y, Sun W, Qu C, Zhang K, Liu L, Xu X, Tang Z, Li J, Lu K* (2018) Genome-Wide Identification and Characterization of NODULE-INCEPTION-Like Protein (NLP) Family Genes in Brassica napus. International Journal of Molecular Sciences 19: 2270. IF2017= 3.687. 4. Li H†, Fan Y†, Yu J, Chai L, Zhang J, Jiang J, Cui C, Zheng B, Jiang L*, Lu K*. (2018) Genome-Wide Identification of Flowering-Time Genes in Brassica Species and Reveals a Correlation between Selective Pressure and Expression Patterns of Vernalization-Pathway Genes in Brassica napus. International Journal of Molecular Sciences 19: 3632. IF2017= 3.687. 5. Fan Y†, Yu M†, Liu M, Zhang R, Sun W, Qian M, Duan H, Chang W, Ma J, Qu C, Zhang K*, Lei B*, Lu K*. (2017) Genome-Wide Identification, Evolutionary and Expression Analyses of the GALACTINOL SYNTHASE Gene Family in Rapeseed and Tobacco. International Journal of Molecular Sciences 18:2768. IF2017= 3.687. 6. Zhang K, Wu Z, Tang D, Luo K, Lu H, Liu Y, Dong J, Wang X, Lv C*, Wang J*, Lu K* (2017) Comparative transcriptome analysis reveals critical function of sucrose metabolism related-enzymes in starch accumulation in the storage root of sweet potato. Frontiers in Plant Science 8:914. IF2017= 3.678. 7. Lu K†,*, Peng L†, Zhang C, Lu J, Yang B, Xiao Z, Liang Y, Xu X, Qu C, Zhang K, Liu L, Zhu Q, Fu M, Yuan X, Li J* (Corresponding Author) (2017) Genome-wide association and transcriptome analyses reveal candidate genes underlying yield-determining traits in Brassica napus. Frontiers in Plant Science 8: 206. IF2017= 3.678. 8. Lu K†, Xiao Z†, Jian H†, Peng L, Qu C, Fu M, He B, Tie L, Liang Y, Xu X, Li J* (2016) A combination of genome-wide association and transcriptome analysis reveals candidate genes controlling harvest index-related traits in Brassica napus. Scientific Reports 6: 36452. IF2017= 4.122. 9. Qu C†, Zhao H†, Fu F†, Zhang K, Yuan J, Liu L, Wang R, Xu X, Lu K*, Li J-N* (Corresponding Author) (2016) Molecular Mapping and QTL for Expression Profiles of Flavonoid Genes in Brassica napus. Frontiers in Plant Science 7:1691. IF2017= 3.678 10. Qu C, Zhao H, Fu F, Wang Z, Zhang K, Zhou Y, Wang R, Xu X, Tang Z, Lu K*, Li J-N*, (2016) Genome-Wide Survey of Flavonoid Biosynthesis Genes and Gene Expression Analysis between Black and Yellow-Seeded Brassica napus. Frontiers in Plant Science. 7:1755. IF2017= 3.678 11. Jian H†, Lu K†, Yang B, Wang T, Zhang L, Zhang A, Wang J, Liu L, Qu C, Li J* (2016) Genome-wide analysis and expression profiling of the SUC and SWEET gene families of sucrose transporters in oilseed rape (Brassica napus L.). Frontiers in Plant Science 7: 1464. IF2017= 3.678 12. Lu K†,*, Guo W†, Lu J†, Yu H, Qu C, Tang Z, Li J, Chai Y, Liang Y* (2015) Genome-wide survey and expression profile analysis of the mitogen-activated protein kinase (MAPK) gene family in Brassica rapa. PLoS ONE 10: e0132051. 13. Qu, C†, Fu F†, Liu M†, Zhao H., Liu C, Li J, Tang Z, Xu X, Qiu X, Wang R.*, Lu K*. (*Corresponding Author) (2015) Comparative transcriptome analysis of recessive male sterility (RGMS) in sterile and fertile Brassica napus Lines. PLoS ONE, 10: e0144118. IF2017= 2.766 14. Lei B†, Lu K†,*, Ding F, Zhang K, Chen Y, Zhao H, Zhang L, Ren Z, Qu C, Guo W, Wang J, Pan W* (*Corresponding Author) (2014) RNA sequencing analysis reveals transcriptomic variations in tobacco (Nicotiana tabacum) leaves affected by climate, soil, and tillage factors. International Journal of Molecular Sciences 15(4): 6137-6160. IF2017= 3.687. 15. Lei B, Zhao XH, Zhang K, Zhang J, Ren W, Ren R, Ren Z, Chen Y, Zhao HN, Pan WJ, Chen W, Li HX, Ding FZ*, Lu K*. (Corresponding Author) (2013) Comparative transcriptome analysis of tobacco (Nicotiana tabacum) leaves to identify aroma compound-related genes expressed in different cultivated regions. Molecular Biology Reports 40: 345-357. IF2017= 1.889 16. Qu C†, Fu F†, Lu K†, Zhang K, Wang R, Xu X, Wang M, Lu J, Wan H, Tang Z, Li J*. (2013) Differential accumulation of phenolic compounds and expression of related genes in black- and yellow-seeded Brassica napus. Journal of Experimental Botany 64(10): 2885-2898. IF2017=5.354 17. Lu K, Chai YR, Zhang K, Wang R, Chen L, Lei B, Lu J, Xu XF, Li JN* (2008). Cloning and characterization of phosphorus starvation inducible Brassica napus PURPLE ACID PHOSPHATASE 12 gene family, and imprinting of a recently evolved MITE-minisatellite twin structure. Theoretical and Applied Genetics 117: 963–975. IF2017= 3.930

专利、著作版权等

参编专著2部,获国家发明专利授权8项。参编专著 Lu K., Snowdon R., Li J. (2018) Case Study for Trait-Related Gene Evolution: Glucosinolates. In: Liu S., Snowdon R., Chalhoub B. (eds) The Brassica napus Genome. Compendium of Plant Genomes. Springer, Cham.
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