其他
年轻!80后教授上任211高校副校长
近5年科研情况
1、国家自然科学优秀青年基金项目,玉米基因组学和分子育种,2016/01-2018/12,在研,主持
2、国家自然科学基金国际(地区)合作与交流项目,玉米耐旱基金资源发掘与分子育种利用,2016/1-2020/12,在研,主持
3、国家自然科学基金面上项目,玉米响应干旱胁迫的甲基化调控与分子机制解析,2015/01-2018/12,在研,主持
4、国家自然科学基金青年项目,低磷胁迫下玉米根系性状关联分析与优异等位变异的发掘,2012/01-2014/12,已结题,主持
5、国家自然科学基金国际合作项目,结合连锁和关联分析剖析玉米主要叶部病害的遗传结构,2012/01-2016/12,已结题,参加
6、国家重点研发计划“七大农作物育种”专项,玉米分子设计育种课题,2016/07-2020/12,在研,子课题负责人
7、国家重点研发计划“七大农作物育种”专项,玉米应答干旱胁迫的基因发掘及调控网络解析,2016/07-2020/12,在研,子课题负责人
8、霍英东基金基础性研究课题, 玉米耐旱关键基因 SNP、eQTL 分析及分子机理研究,2014/01-2017/12,在研,主持
9、留学人员科技活动项目择优资助项目,玉米应答干旱胁迫的甲基化变异与分子调控机制解析,2014年度,主持
10、高等学校全国优秀博士学位论文作者专项资金,玉米应答干旱胁迫的甲基化变异与分子调控机制解析,2013/01-2017/12,主持
第一作者或通讯作者:
1. Yanli Lu, Jianbing Yan, Claudia T. Guimares, et al. Molecular characterization of global maize germplasm with large-scale single nucleotide polymorphism. Theoretical and Applied Genetics. 2009, 120: 93-115. (IF:3.930)
2. Yanli Lu, Shihuang Zhang, Trushar Shah, et al. Joint linkage–linkage disequilibrium mapping is a powerful approach to detecting quantitative trait loci underlying drought tolerance in maize. Proceedings of the National Academy of Sciences. 2010, 107(45): 19585–19590. (IF:9.504)
3. Yanli Lu, Zhuanfang Hao, Chuanxiao Xie, et al. Large-scale screening for maize drought resistance using multiple selection criteria evaluated under water-stressed and well-watered environments. Field Crops Research. 2011, 124: 37-45. (IF:3.127)
4. Yanli Lu, Trushar Shah, Zhuanfang Hao, et al. Comparative SNP and haplotype analysis reveals a higher genetic diversity and rapider LD decay in tropical than temperate germplasm in maize. PLoS ONE. 2011, 6 (9): e24861. (IF:2.766)
5. Farkhari Mohammad, Yanli Lu, Trushar Shah, et al. Recombination frequency variation in maize as revealed by genome-wide single nucleotide polymorphisms. Plant Breeding. 2011, 130, 533-539. 共同第一作者 (IF:1.392)
6. Jie Xu, Jian Liu, Yanli Lu*, et al. The genetic architecture of flowering time and photoperiod sensitivity in maize as revealed by QTL review and meta analysis. Journal of Integrative Plant Biology. 2012, 54 (6): 358-373. (IF:3.129)
7. Yanli Lu, Jie Xu , Zhimin Yuan, et al. Comparative LD mapping using single SNPs and haplotypes identifies QTL for plant height and biomass as secondary traits of drought tolerance in maize. Molecular Breeding. 2012, 30(1): 407–418. (IF:2.077)
8. Jie Xu, Ling Liu, Yanli Lu*, et al. Development and characterization of simple sequence repeat markers providing genome-wide coverage and high resolution in maize. DNA Research. 2013, 20, 497-509. (IF:5.415)
9. Farkhari Mohammad, Alan Krivanek , Yanli Lu*, et al . Root-lodging resistance in maize as an example for high-throughput genetic mapping via single nucleotide polymorphism-based selective genotyping. Plant Breeding. 2013, 132, 90–98. (IF:1.392)
10. Ning Yang, Yanli Lu, Xiaohong Yang, et al. Genome wide association studies using a new nonparametric model reveal the genetic architecture of 17 agronomic traits in an enlarged maize association panel. PLoS Genetics. 2014, 10(9): e1004573.共同第一作者 (IF:5.540)
11. Jie Xu, Fengkai Wu, Yanli Lu*, et al. Identification of candidate genes for drought tolerance by whole-genome resequencing in maize. BMC Plant Biology. 2014, 14(1):1-15. (IF:3.930)
12. Litian Zhang, Jia Li, Yanli Lu* , et al. Large-scale screening maize germplasm for low phosphorus tolerance using multiple selection criteria. Euphytica. 2014, DOI: 10.1007/s10681-014-1079-3. (IF:1.546)
13. Rongyao Li, Yijin Zeng, Yanli Lu*, et al. Genetic variation for maize root architecture in response to drought stress at the seedling stage. Breeding Science. 2015, DOI: 10.1270/jsbbs.65.298. (IF:1.559)
14. Fengkai Wu, Zuoming Liu, Yanli Lu*, et al. Molecular evolution and association of natural variation in ZmARF31 with low phosphorus tolerance in maize. Frontiers in Plant Science. 2016, DOI: 10.3389/fpls.2016.01076. (IF:3.678)
15. Jia Li, Erliang Hu, Yanli Lu*, et al. Evolution of DUF1313 family members across plant species and their association with maize photoperiod sensitivity. Genomics. 2016, (107): 199–207. (IF:2.910)
16. Jie Xu, Qi Wang, Yanli Lu*, et al. Natural antisense transcripts are significantly involved in regulation of drought stress in maize. Nucleic Acids Research. 2017, 1, DOI: 10.1093/nar/gkx085. (IF:11.561)
17. Ling Liu, Yuanqi Wu, Yanli Lu*, et al. Evolutionary conservation and functional divergence of the LFK gene family play important roles in the photoperiodic flowering pathway of land plants. Heredity, 2017, DOI: /10.1038/s41437-017-0006-5. (IF:3.872)
18. Xianjun Lai , James C. Schnable, Yanli Lu*, et al. Genome-wide characterization of non-reference transposable element insertion polymorphisms reveals genetic diversity in tropical and temperate maize. BMC Genomics. 2017, 18:702, DOI: 10.1186/s12864-017-4103-x. (IF:3.730)
1、中国工程院重点咨询项目《发展饲用作物,调整种植业结构,促进西南农区草食畜牧业发展战略研究》,科学出版社,2015,ISBN 978-7-03-041867-8.
2、《玉米农艺性状遗传与改良-荣廷昭论文选集》,科学出版社,2015,ISBN 9787030469694.
3、《植物生物技术概论》,中国农业大学出版社,2014,ISBN 978-7-5655-1027-4.
1、卢艳丽,刘玲,吴锋锴,王琦,熊静,徐洁,高世斌,唐祈林,兰海,吴元奇;玉米低磷响应基因ZmARF31的INDEL分子标记及其应用;国家发明专利ZL 2014 1 0578033.4
2、卢艳丽,吴锋锴,刘玲,李嘉,徐洁,兰海,高世斌,吴元奇,周树峰,曹墨菊;玉米低磷响应基因ZmARF31的SNP分子标记及其作用;国家发明专利ZL 2014 1 0446335.6
1、2015年,西南玉米育种重要目标性状的分子鉴定与利用,四川省科学技术进步奖(自然科学类)一等奖,第二完成人
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