![]() | 姓 名: | 丰柳春 | |
| 职 称: | 副教授 | ||
| 办公电话: | |||
| 电子邮箱: | fenglc2021@163.com | ||
| 个人简介: |
丰柳春,博士,硕士生导师。本科毕业于河南农业大学,博士毕业于南京农业大学。2021年2月至2023年2月,于江苏省中国科学院植物研究所工作,主要从事植物-根际微生物互作研究。2023年3月至今,于生命科学学院工作,主要从事作物逆境生物学、植物-根际微生物逆境互作研究。主持有国家自然科学基金青年基金项目、中国博士后第75批面上资助项目、河南省科技攻关项目、河南省高等学校重点科研项目。以第一作者或通讯作者于The Plant Journal、Industrial Crops and Products、Plant Science、BMC Plant Biology等杂志发表SCI论文10余篇,授权国家发明专利3项。目前主要承担本科课程:《细胞生物学》、《农业生物技术》,以及研究生课程:《分子育种》、《体细胞发生的分子生物学》等。 |
| 研究领域: |
1、作物逆境生物学及遗传改良:1)利用正向遗传学挖掘植物抗逆基因;2)研究基因的作用机制和育种价值;3)利用基因编辑技术创制新种质。 2、植物-根际微生物逆境互作研究:1)植物根际微生物的分离与鉴定;2)根际微生物提高植物耐逆性的分子机制研究。 |
| 主要学术及社会兼职: |
BMC Plant Biology、Frontiers in Plant Science等杂志审稿人。 |
| 主持或参加科研项目情况: |
1、国家自然科学基金青年基金项目(3240177),2025-2027,主持; 2、中国博士后科学基金第75批面上资助项目(2024M750833),2024-2026,主持; 3、河南省重点研发与推广专项(科技攻关)项目(242102110198),2024-2025,主持; 4、河南省高等学校重点科研项目(25A210005),2025-2026,主持; 5、博士科研启动经费支持课题(校20240269),2024-2026,主持。 |
| 学术成果: |
代表性论文: 1. Feng L, Liu YH, Wang L, Sang SF, Ji SD, Chen Y*, Li JH*. QTL mapping and functional analysis reveal the critical role of GbABC1K in regulating cotton salt tolerance. Industrial Crops and Products. 2025, 237: 122242. 2. Feng L,Chen Y, Ma T, Zhou C, Sang S, Li J, Ji S*. Integrative physiology and transcriptome sequencing reveal differences between G. hirsutum and G. barbadense in response to salt stress and the identification of key salt tolerance genes. BMC Plant Biology. 2024, 24(1):787. 3. Feng L, Li Q, Zhou D, Jia M, Liu Z, Hou Z, Ren Q, Ji S, Sang S, Lu S, Yu J*. B. subtilis CNBG-PGPR-1 induces methionine to regulate ethylene pathway and ROS scavenging for improving salt tolerance of tomato. The Plant Journal, 2024, 117(1): 193-211. 4. Feng L, Su Q, Yue H, Wang L, Gao J, Xing L, Xu M, Zhou C, Yang Y, Zhou B*. TIP41L, a putative candidate gene conferring both seed size and boll weight, was fine-mapped in an introgression line of Gossypium hirsutum-Gossypiumarboreum. Plant Science, 2022,317:111197. 5. Feng L, Chen Y, Xu M, Yang Y, Yue H, Su Q, Zhou C, Feng G, Ai N, Wang N, Zhou B*. Genome-wide introgression and quantitative trait locus mapping reveals the potential of Asian cotton (Gossypium arboreum) in improving Upland cotton (Gossypium hirsutum). Frontiers in Plant Science, 2021, 12: 719371. 6. Feng L, Zhou C, Su Q, Xu M, Yue H, Zhang S, Zhou B. Fine-mapping and candidate gene analysis of qFS-Chr. D02, a QTL for fibre strength introgressed from a semi-wild cotton into Gossypium hirsutum. Plant Science. 2020, 297:110524. 7. Feng L,Zhang S, Xing L, Yang B, Gao X, Xie X, Zhou B*. QTL analysis for yield and fibre quality traits using three sets of introgression lines developed from three Gossypium hirsutum race stocks. Molecular Genetics and Genomic, 2019, 294(3):789-810. 8. Chen Y, Wang W, Zhang S, Zhao Y, Feng L*, Zhu C*. Assembly and analysis of the complete mitochondrial genome of Carya illinoinensis to provide insights into the conserved sequences of tRNA genes. Scientific Reports. 2024, 14(1):28571. (*通讯作者) 9. Lu S, Feng L*, Zhou D, Jia M, Liu Z, Hou Z, Li Q, Yu J*. Complete Genome Sequence of Bacillus subtilis CNBG-PGPR-1 for Studying the Promotion of Plant Growth. Molecular Plant-Microbe Interactions. 2022, 35(12):1115-1119. (*通讯作者) 10.Xu M, Feng L, Liu S, Zhang Z, Zhou C, Feng G, Wang N, Ai N, Zhou B. Fine mapping and functional analysis of the candidate gene OFP17, regulating both seed and fruit sizes in cotton. Plant Genome. 2026, 19(1): e70195. 11.Cui C, Feng L, Zhou C, Wan H, Zhou B. Transcriptome Analysis Revealed that GhPP2C43-A Negatively Regulates Salinity Tolerance in an Introgression Line from a Semi-Wild Upland Cotton. Plant and Cell Physiology. 2023, 64(7):786-802. |

