
姓名:刘峰 性别:男
职称:教授 办公室:农学院331 室
Email:liufeng@shzu.edu.cn 电话:
学历学位:博士 硕/博士生导师:博士生导师
研究方向:作物遗传育种与生物技术
刘峰,博士,教授,博士生导师。绿洲生态农业兵团重点实验室副主任,石河子大学农业硕士-农艺与种业领域负责人。先后入选石河子大学“3152”学科带头人、自治区“天山英才”、自治区产业体系岗位专家。承担本科生《种子检验学》、《作物种子学》,研究生《分子遗传学》等课程的教学任务。围绕作物种子油脂代谢调控及生物和非生物胁迫等开展研究工作,主要针对作物生物育种关键技术开展攻关,主持国家自然科学基金6项、国家重点研发项目子课题2项;主持其他各类科研课题10余项,发表研究论文80余篇,授权专利12项,出版专著2部,选育新品种2个,获兵团科技进步二等奖1项。
承担的部分科研项目:
1. 棉花GhFAO2A上游远端SNP介导的转录调控影响纤维长度和强度的分子机制(32672703),国家自然科学基金,主持;
2. 棉花lncRNA2237调控棉籽发育过程中脂肪酸合成代谢的机制研究(32260144),国家自然科学基金,主持;
3. 棉花花药发育过程中亚油酸与α-亚麻酸的代谢及调控机制研究(31960369),国家自然科学基金,主持;
4. 棉花FAD2基因调控花药脂肪酸代谢与花粉外壁发育的机制研究(31660353),国家自然科学基金,主持;
5. 棉花FAD2-1基因的5'UTR内含子与启动子的顺式作用元件的鉴定及其转录调控作用的研究(31460361),国家自然科学基金,主持;
6. 同步抑制FAD2-1与FatB基因对棉籽脂肪酸组分的分子调控(31101094),国家自然科学基金,主持;
7. 棉花重要农艺性状相关基因位点的定位和分子标记的开发(2016YFD0101901-4),国家重点研发项目子课题,主持;
8. 高油棉花种质资源的创制与利用(2023YFD2301202-3),国家重点研发项目子课题,主持;
9. 棉用种花关利氮键用磷基养因分挖高掘效及育种利用(2025AB002),兵团重点领域科技攻关项目,主持;
10. 基于多群体棉花抗黄萎病性状遗传机制解析与优质抗病种质创制(2024DA001),兵团自然科学支持计划-重点项目,主持;
11. 脂质代谢相关基因棉花响应水分亏缺胁迫中的功能及调控机制研究(XL202402-07),新疆人才发展基金子课题,主持。
发表的部分论文:
1. Chong Yang, Ruiting Zheng, Yanjun Li, Fei Xue, Shuaishuai Cheng, Jie Sun, Xinyu Zhang, Feng Liu. GhMYB94-activated GhLTP1 couples cuticle barrier formation with membrane lipid remodeling to confer water-deficit tolerance in cotton. Plant Physiology and Biochemistry. 2026, 238, 111714.
2. Lihong Ma, Pengtao Wang, Qian-Hao Zhu, Xinqi Cheng, Tao Zhang, Xinyu Zhang, Huaguo Zhu, Zuoren Yang, Jie Sun, Feng Liu. Unbalanced lipid metabolism in anther, especially the disorder of the alpha-linolenic acid metabolism pathway, leads to cotton male sterility. Journal of Integrative Agriculture, 2026, 25(2): 2-15
3. Yuan R, Li Y, Li Y, Sun T, Feng A, Sun N, Zhang S, Liang Q, Liu F, Zhang X. Vdbgl1 Encodes a GH55 Glucan 1,3-β-Glucosidase Required for Full Virulence of Verticillium dahliae. International Journal of Molecular Sciences. 2026; 27(15):6737.
4. Lingyu Wang, Yongchao Han, Haihong Chen, Yanjun Li, Xinyu Zhang, Shuaishuai Cheng, Fei Xue, Jie Sun, YaJun Liang, Feng Liu. Methyl jasmonate enhances seed germination via accelerating lipid mobilization and jasmonate signal amplification in cotton (Gossypium hirsutum L.), Environmental and Experimental Botany. 2026, 248, 106396.
5. Sun T, Li Y, Li Y, Yuan R, Liu F, Ma X, Zhang X, Sun Y, Li Y, Sun J. The deletion of a major facilitator superfamily gene VdMFS2 results in enhanced pathogenicity of Verticillium dahliae to cotton. Microbiol Spectr. 2026,14: e02761-25.
6. Yuanjing Li, Ruixiang Yuan, Yongtai Li, Tiange Sun, Yating Wei, Qingwen Yang, Feng Liu, Xinyu Zhang, Yanjun Li & Jie Sun. VdEGe1, a cell wall-degrading enzyme gene from Verticillium dahliae required for cotton pathogenesis. BMC Microbiol. 2026,26, 457.
7. Wei Q, Wang X, Zhao K, Wang S, Basit A, Liu F, Zhao Y. Transcriptomic Analysis Reveals Molecular Mechanisms of Wolbachia–Plant Association. International Journal of Molecular Sciences. 2026; 27(9):3746.
8. Ma X, Wang G, Dong C, Liu F. Integrative transcriptomics unravels the central role of fatty acid elongation in early cotton fiber development. PLoS One.2026, 21(3): e0343644.
9. Wei Q, Wang X, Zhao K, Qu H, Wang C, Liu F, Zhao Y. Effects of Single-Walled Carbon Nanotubes on the Development and Reproductive Performance of Tetranychus turkestani. Insects. 2026; 17(3):284.
10. Hongyue Xu, Xiaohu Ma, Qian-Hao Zhu, Fei Xue, Feng Liu, Yanjun Li, Shuaishuai Cheng, Xinyu Zhang, Jie Sun. The JA signaling pathway modulates fruit branch internode development in Gossypium hirsutum L.: Insights from multi-omics investigations. Industrial Crops and Products. 2026,242,122887.
11. Youzhong Li, Xiaohui Jiang, Hongyu Cao, Xinyu Zhang, Zhongxu Lin, Qian-Hao Zhu, Yanjun Li, Fei Xue, Shuaishuai Cheng, Feng Liu & Jie Sun. CSSL-based GWAS identifies SNPs and candidate genes associated with Verticillium wilt resistance in cotton. Theor Appl Genet. 2026, 139, 64.
12. H Shi, Y Qiao, X Ma, Q Zhu, H Tang, Y Jin, X Wang, F Liu, J Sun, F Xue. Genetic mapping and functional characterisation of ghcup regulating leaf curling in cotton. Plant Biotechnology Journal, 2026, 24(4):2607-2622
13. Chen H, Li Y, Xiong X, Liu X, Xue F, Sun J, Zhu QH, Liu F. pseudo-GhFAD2-1 Is a lncRNA Involved in Regulating Cottonseed Oleic and Linoleic Acid Ratios and Seed Size in Gossypium hirsutum. Plant Biotechnology Journal, 2025, 23(11): 5229-5251.
14. Li X, Zhu L, Wang H, Zhou X, Wang M, Li L, Liu F, Sun J, Xiao G. Peptide Hormone-Mediated Regulation of Plant Development and Environmental Adaptability. Adv Sci. 2025,12(34):e06590.
15. Han Y, Yang Y, Luo H, Cui J, Kuang B, Zhang X, Sun J, Xu JW, Liu F. Water stress reduces cellulose deposition in the cell wall and increases wax content, resulting in decreased fiber quality. Front Plant Sci. 2025,16:1611390.
16. Liu F. Editorial: Perspectives on crop response to abiotic stresses: function of lipid components. Front Plant Sci. 2025, 16:1648015.
17. Liang Q, Feng X, Hu D, Jin Y, Wang X, Ma X, Liang R, Zhu QH, He S, Zhu H, Liu F, Zhang X, Sun J, Xue F. Genetic, metabolomic and transcriptomic analyses of the cotton yellow anther trait. Int J Biol Macromol. 2025,300:140193.
18. Feng X, Ma Y, Liang Q, Jin Y, Wang X, Wang J, Liu F, Zhang X, Shao D, Sun J, Zhu QH, Xue F. Deletion of GhSCY2D Causes Impaired Chloroplast Development and Temperature-Dependent Leaf Yellowing in Cotton (Gossypium hirsutum L.). Plant Cell Environ. 2025,48(7):4902-4917.
19. Kamau SM, Li Y, Sun T, Liu F, Zhu QH, Zhang X, Sun J, Li Y. VdPAT1 encoding a pantothenate transporter protein is required for fungal growth, mycelial penetration and pathogenicity of Verticillium dahliae. Front Microbiol. 2025,15:1508765.
20. Tang H, Shi H, Zhu QH, He Z, Ma X, Wang K, Liu F, Cheng S, Xiong X, Sun J. Genome-wide identification of peanut ERFs and functional characterization of AhERF28 in response to salt and drought stresses. Plant Cell Rep. 2025,44(7):165.
21. Wang X, Wang S, Basit A, Wei Q, Zhao K, Liu F, Zhao Y. Metabolomics Provides New Insights into the Mechanisms of Wolbachia-Induced Plant Defense in Cotton Mites. Microorganisms. 2025,13(3):608.
22. Han Y, Luo H , Zhu Q H ,et al.Lower Demand for Boll Dry Matter Accumulation and Higher Harvestable Bolls Ensure the Yield and Quality Advantages of Small Boll Cotton Under Water-Deficit Conditions. Journal of Agronomy and Crop Science, 2025, 211(2). e70035.
23. Song S, Li Y, Zhang Y, Liu F, Zhu Q-H, Zhang X, Sun J, Li Y. Transcriptome-Based Gene Modules and Soluble Sugar Content Analyses Reveal the Defense Response of Cotton Leaves to Verticillium dahliae. International Journal of Molecular Sciences. 2024; 25(24):13326.
24. Li Y, Li Y, Yang Q, Song S, Zhang Y, Zhang X, Sun J, Liu F, Li Y. Dual Transcriptome Analysis Reveals the Changes in Gene Expression in Both Cotton and Verticillium dahliae During the Infection Process. Journal of Fungi. 2024; 10(11):773.
25. Zhaojie He, Xiaohu Ma, Qian-Hao Zhu, Shuaishuai Cheng, Feng Liu, Tao Zhang, Caixia Zhang, Jianbin Li, Xianpeng Xiong & Jie Sun. Genome‑wide analysis of cotton SCAMP genes and functional characterization of GhSCAMP2 and GhSCAMP4 in salt tolerance. BMC Plant Biol . 2024, 24, 870
26. Lihong Ma, Tao Zhang, Qian-Hao Zhu, Xinyu Zhang, Jie Sun, Feng Liu. HSP70 and APX1 play important roles in cotton male fertility by mediating ROS homeostasis. International Journal of Biological Macromolecules, 2024, 278: 134856.
27. Tao Zhang, Li-hong Ma, Qian-hao Zhu, Xin-yu Zhang, Chu-yi Nie, Jing-ya Zhou, Jie Sun, Feng Liu. Multi-Omics analysis reveals the important role of indole-3-acetic acid homeostasis in male fertility of cotton. Industrial Crops & Products, 2024, 222:119480.
28. Y Li, X Zhang, Z Lin, QH Zhu, Y Li, F Xue, S Cheng, H Feng, J Sun, F Liu. Comparative transcriptome analysis of interspecific CSSLs reveals candidate genes and pathways involved in Verticillium wilt resistance in cotton. Industrial Crops and Products. 2023, 197:12
29. Feng Z, Cheng X, Wang T, Han Y, Chen H, Zhang X, Sun J, Zhang W, Liu F. Investigation of GhFAT Genes Related to Seed Oil Content and Fatty Acid Composition in Gossypium hirsutum L. Phyton-International Journal of Experimental Botany. 2023, 92(5), 1633-1647
30. Mengjiao Jia, Shuaishuai Chen, Qianhao Zhu, Ruiting Zheng, Yanjun Li, Jie Sun, Feng Liu. Silencing of GhGRL28 in cotton increases sensitivity to salt stress. Plant Growth Regulation. 2023, 101, 307-315
31. Li YZ, Chen HH, Wang YW, Zhu JC, Zhang XL, Sun J, Liu F, Zhao YY. Function Analysis of GhWRKY53 regulating cotton resistance to Verticillium Wilt by JA and SA signaling pathways. Frontiers in plant science. 2023, 14:1203695
32. Chen L, Chen B, Zhu Q-H, Zhang X, Sun T, Liu F, Yang Y, Sun J and Li Y. Identification of sugar transporter genes and their roles in the pathogenicity of Verticillium dahliae on cotton. Front. Plant Sci.2023, 14:1123523
33. Q Liang, Y Jin, QH Zhu, D Shao, X Wang, X Ma, F Liu, X Zhang, Y Li, J Sun, F Xue. A MYB transcription factor containing fragment introgressed from Gossypium bickii confers pink flower on Gossypium hirsutum. Industrial Crops and Products, 2023, 192:116121
34. Chen L, Ma X, Sun T, Zhu Q-H, Feng H, Li Y, Liu F, Zhang X, Sun J, Li Y. VdPT1 Encoding a Neutral Trehalase of Verticillium dahliae Is Required for Growth and Virulence of the Pathogen. Int. J. Mol. Sci. 2024, 25, 294.
35. XF Wang, DN Shao, Q Liang, XK Feng, QH Zhu, YL Yang, F Liu, XY Zhang, LI Yan-Jun, J Sun, F Xue. A 2-bp frameshift deletion at GhDR,which encodes a B-BOX protein that co-segregates with the dwarf-red phenotype in Gossypium hirsutum L.Journal of Integrative Agriculture. 2023, 22(7):2000-2014
36. Fan Yang, Yongchao Ha, Qian‑Hao Zhu, Xinyu Zhang, Fei Xue, Yanjun Li, Honghai Luo, Jianghong Qin, Jie Sun, Feng Liu. Impact of water deficiency on leaf cuticle lipids and gene expression networks in cotton (Gossypium hirsutum L.). BMC Plant Biology.2022, 22:404
37. Lu Y, Cheng X, Jia M, Zhang X, Xue F, Li Y, Sun J, Liu F. Silencing GhFAR3.1 reduces wax accumulation in cotton leaves and leads to increased susceptibility to drought stress. Plant Direct.2021,5(4):e00313
38. Lihong Ma, Xinqi Cheng, Chuan Wang, Xinyu Zhang, Fei Xue, Yanjun Li, Qianhao Zhu, Jie Sun, Feng Liu. Explore the gene network regulating the composition of fatty acids in cottonseed. BMC Plant Biology.2021, 21(4): 177
39. Cheng XQ, Zhang XY, Xue F, Li YJ, Zhu QH, Liu F, Sun J. Characterization and transcriptome analysis of a dominant genic male sterile cotton mutant. BMC Plant Biology.2020,20:312

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