教育背景
2008.09-2012.06,河南师范大学生命科学学院,理学,学士
2012.09-2017.12,西南大学农学与生物科技学院,作物遗传育种,博士(导师:李加纳教授)
2016.08-2017.08,美国佐治亚大学,联合培养博士(导师:Andrew H. Paterson教授)
工作经历
2018.01-2019.11:西南大学农学与生物科技学院,博士后
2019.12- 西南大学农学与生物科技学院,副教授
项目课题经历
论文、成果、著作等
1 Joint QTL mapping and transcriptome sequencing analysis reveal candidate flowering time genes in Brassica napus L. BMC Genomics, 2019 Jan 9;20(1):21
2 Genome-Wide Identification of MicroRNAs in Response to Cadmium Stress in Oilseed Rape (Brassica napus L.) Using High-Throughput Sequencing. International Journal of Molecular Sciences, 2018 May 10; 19 (5).
3 Integrated mRNA, sRNA, and degradome sequencing reveal oilseed rape complex responses to Sclerotinia sclerotiorum (Lib.) infection. Scientific Reports, 2018 Jul 20; 8(1):10987
4 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, 2016 Sep 28; 7: 1464.
5 Identification of Rapeseed MicroRNAs Involved in Early Stage Seed Germination under Salt and Drought Stresses. Frontiers in plant science, 2016 May 13; 7: 658
6 Screening of candidate leaf morphology genes by integration of QTL mapping and RNA sequencing technologies in oilseed rape (Brassica napus L.). PLoS One, 2017 Jan 9; 12(1): e0169641
7 Genome-Wide Analysis of Seed Acid Detergent Lignin (ADL) and Hull Content in Rapeseed (Brassica napus L.) PLoS One, 2015 Dec 16; 10 (12): e0145045
8 Genome-wide analysis and expression profiling of the GRF gene family in oilseed rape (Brassica napus L.). Gene, 2017 Jul 15; 620: 36-45
9 A combination of genome-wide association and transcriptome analysis reveals candidate genes controlling harvest index-related traits in Brassica napus. Scientific Reports, 2016 Nov 4; 6: 36452
10 甘蓝型油菜PEBP 基因家族的鉴定与表达分析, 作物学报,2019, 45 (3): 354-364
11 甘蓝型油菜蔗糖磷酸合酶(SPS)基因家族成员鉴定及表达分析 作物学报 2018, 44 (02): 197-207
12 利用SNP高密度遗传连锁图谱定位甘蓝型油菜种子硫苷含量的QTL. 作物学报, 2014, 40 (08): 1386-1391
13 基于 SNP 遗传图谱定位甘蓝型油菜千粒重 QTL 位点.中国农业科学 2014, 47 (20): 3953-3961
14 利用 SNP 遗传图谱定位盐, 旱胁迫下甘蓝型油菜种子发芽率的 QTL. 作物学报 2014, 40 (04): 629-635
【参与发表文章】
1 Joint RNA-Seq and miRNA Profiling Analyses to Reveal Molecular Mechanisms in Regulating Thickness of Pod Canopy in Brassica napus. Genes, 2019 Aug 5; 10 (8). pii: E591
2 Genome-wide exploration and characterization of miR172/euAP2 genes in Brassica napus L. for likely role in flower organ development. BMC Plant Biology, 2019 Aug 1; 19 (1): 336
3 Genome-wide identification and characterization of Gretchen Hagen3 (GH3) family genes in Brassica napus, Genome, 2019 Sep; 62 (9): 597-608
4 Genome-Wide Identification of the LAC Gene Family and Its Expression Analysis Under Stress in Brassica napus. Molecules, 2019 May 23; 24 (10). pii: E1985
5 Whole-genome resequencing reveals Brassica napus origin and genetic loci involved in its improvement. Nature Communications, 2019 Mar 11; 10 (1):1154.
6 Screening of candidate gene responses to cadmium stress by RNA sequencing in oilseed rape (Brassica napus L.). Environ Sci Pollut Res Int., 2018 Nov; 25 (32):32433-32446
7 Combined QTL mapping, physiological and transcriptomic analyses to identify candidate genes involved in Brassica napus seed aging. Mol Genet Genomics, 2018 Dec; 293 (6):1421-1435
8 Genome-Wide Analysis of the PYL Gene Family and Identification of PYL Genes That Respond to Abiotic Stress in Brassica napus. Genes, 2018 Mar 12; 9(3). pii: E156
9 Genetic and transcriptomic analyses of lignin- and lodging-related traits in Brassica napus. Theor Appl Genet., 2017 Sep; 130 (9):1961-1973
10 Identification of microRNAs Actively Involved in Fatty Acid Biosynthesis in Developing Brassica napus Seeds Using High-Throughput Sequencing. Front Plant Sci., 2016 Oct 24; 7: 1570
11 Genome-wide association analysis and differential expression analysis of resistance to Sclerotinia stem rot in Brassica napus. Plant Biotechnol J., 2016 Jun; 14 (6):1368-80
12 甘蓝型油菜株高、第一分枝高和分枝数的QTL检测及候选基因筛选 作物学报 2015, 41 (07): 1027-1038
13 甘蓝型油菜盐胁迫下幼苗鲜重和干重QTL定位及候选基因分析 作物学报 2017, 43 (02): 179-189
14 甘蓝型油菜茎秆菌核病抗性与木质素及其单体比例的相关性分析及QTL定位 作物学报2017, 43 (09): 1280-1289.
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