◆发表论文
第一作者或通讯作者发表SCI收录论文19篇,主持主研各级项目9项,第一完成人授权国家发明专利8项。获四川省科学技术进步二等奖和三等各1项。
1. Transcriptome Analysis of Moso Bamboo (Phyllostachys edulis) Reveals Candidate Genes Involved in Response to Dehydration and Cold Stresses. Frontiers in Plant Science. 2022. 中科院2区top (SCI, IF=6.627) 第一作者
2. Overexpression of Myrothamnus flabellifolia MfWRKY41 confers drought and salinity tolerance by enhancing root system and antioxidation ability in Arabidopsis. Frontiers in Plant Science. 2022. 中科院2区top (SCI, IF=6.627) 第一作者
3. Overexpressing Phytochrome Interacting Factor 8 of Myrothamnus flabellifolia Enhanced Drought and Salt Tolerance in Arabidopsis. International Journal of Molecular Science. 2022. 中科院2区top (SCI, IF=6.208) 第一作者
4. Heterologous Expression of MfWRKY7 of Resurrection Plant Myrothamnus flabellifolia Enhances Salt and Drought Tolerance in Arabidopsis. International Journal of Molecular Science. 2022. 中科院2区top (SCI, IF=6.208) 第一作者
5. A WRKY Protein, MfWRKY40, of Resurrection Plant Myrothamnus flabellifolia Plays a Positive Role in Regulating Tolerance to Drought and Salinity Stresses of Arabidopsis. International Journal of Molecular Science. 2022. 中科院2区top (SCI, IF=6.208) 第一作者
6. Heterologous Expression of Dehydration-Inducible MfbHLH145 of Myrothamnus flabellifoli Enhanced Drought and Salt Tolerance in Arabidopsis.International Journal of Molecular Sciences 2022, 23(10)(SCI, IF=5.923), 第一作者
7. MfPIF1 of Resurrection Plant Myrothamnus flabellifolia Plays a Positive Regulatory Role in Responding to Drought and Salinity Stresses in Arabidopsis. International Journal of Molecular Sciences 2020, 4(21)(SCI, IF=4.183), 通讯作者
8. Heterologous Expression of Dehydration-Inducible MfWRKY17 of Myrothamnus Flabellifolia Confers Drought and Salt Tolerance in Arabidopsis. International Journal of Molecular Sciences 2020, 6(11)(SCI, IF=4.183), 第一作者
9. MfbHLH38, a Myrothamnus flabellifolia bHLH transcription factor, confers tolerance to drought and salinity stresses in Arabidopsis. BMC Plant Biology,2020. 中科院2区top(SCI, IF=3.497),通讯作者
10. Dehydration-Induced WRKY Transcriptional Factor MfWRKY70 of Myrothamnus flabellifolia Enhanced Drought and Salinity Tolerance in Arabidopsis,Biomolecules,2021.02(SCI, IF=4.082),中科院分区:3,通讯作者
11. Genome-Wide Identification, Characterization, and Stress-Responsive Expression Profiling of Genes Encoding LEA (Late Embryogenesis Abundant) Proteins in Moso Bamboo (Phyllostachys edulis),PLoS One,2016,11(9)(SCI,IF=3.057),第一作者
12. Genome-wide identification and characterization of TIFY family genes in Moso Bamboo (Phyllostachys edulis) and expression profiling analysis under dehydration and cold stresses,PeerJ,2016,11(4),Peer J(SCI,IF=2.183),第一作者
13. Molecular cloning and characterization of a novel freezing-inducible DREB1/CBF transcription factor gene in boreal plant Iceland poppy(Papaver nudicaule),Genetics and Molecular Biology,2016,39(2)(SCI,IF=1.341),第一作者
14. Evaluation of physiological responses and tolerance to low-temperature stress of four Iceland poppy (Papaver nudicaule) varieties,Journal of plant Interactions, 2016,11(1)(SCI,IF=1.191),第一作者
15. Identification and Characterization of AP2/ERF Transcription Factors in Moso Bamboo (Phyllostachys edulis),Molecular Biology,2016,50,(5)(SCI,IF=0.718),第一作者
16. Characterization of low-molecular-weight glutenin subunit genes of Aegilops section Sitopsis and comparative analysis with those of wheat (Triticum aestivum L.) and some Aegilops species,Journal of Genetics,2015,94(SCI,IF=1.093),第一作者
17. Allelic variations of a-gliadin genes from species of Aegilops section Sitopsis and insights into evolution of a-gliadin multigene family among Triticum and Aegilops,Genetica,2016,144(SCI,IF=1.343),第一作者
18. Characterization and Classification of γ-Gliadin Multigene Sequences from Aegilops Section Sitopsis ,Cereal Research Communications, (SCI收录,IF=1.190) 2010,38 (1) 第一作者
19. Molecular characterization of novel low-molecular-weight glutenin genes in Aegilops longissima ,J Appl Genet》, (SCI收录,IF=1.351) 2010,51(1) 第一作者