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牛靓洁

时间:2025年01月10日 16:32 来源:beat365 作者: 阅读:

牛靓洁

个人概况

牛靓洁,女,汉族,中国共产党党员,博士,硕士生导师。

教育经历

20209—20246月 河南农业大学 农业生物技术专业 博士

20179—20206月 河南农业大学 植物学专业 硕士

其中,20194—20199月在日本理化学研究所横滨分所联合培养

20139—20176 河南农业大学 生物工程(绍骙实验班)专业 学士

工作经历

202412月至今 beat365 讲师

研究领域

1. 农作物(玉米、茶树)响应非生物胁迫的适应进化机制

2. 茶叶品质形成的分子生理机制与育种

3. 油茶基因组研究与新品种选育

主持科研项目

1. 国家自然科学基金青年项目(32602877),干旱胁迫下玉米保卫细胞β-淀粉酶BAM8调控气孔关闭的分子机制,2027.01-2029.12,在研,主持

2. 河南省自然科学基金青年项目(262300422167),玉米叶片蔗糖转运蛋白SWEET15a调控气孔运动和抗旱性的机制,2026.01-2027.12,在研,主持

3. 河南省科技攻关项目(262102110108),择时采茶分类加工优化信阳红茶制作工艺,2026.01-2027.12,在研,主持

4. 河南省高等公司重点科研项目(26A210024),茶树淀粉代谢调控次生代谢物质含量及信阳毛尖品质的机制,2026.01-2027.12,在研,主持

发表论文

1. Niu L, Wang C, Xie J, Cheng L, Zhou Q, Wang W. Integrative transcriptomic and metabolomic analyses of time-of-day variation of quality-related metabolites in fresh tea leaves. Plants. 2026; 15, 2558.

2. Niu L, Wang C, Zhou Q, Wang W. Multi-omics analyses of low-temperature resilience and implications for enhancing cold tolerance in oil camellia. Industrial Crops and Products. 2026; 242.

3. Niu L, Liu H, Wang N, Wu X, Tai F, Hu X, Wang W. Modification of starch synthesis in food crops using CRISPR/Cas9 gene editing technology for changing climate. Stress Biology. 2026; 6(1):2.

4. Niu L, Wu X, Liu H, Hu X, Wang W. Leaf starch degradation by β-amylase ZmBAM8 influences drought tolerance in maize. Carbohydrate Polymers. 2024;345:122555.

5. Niu L, Wang W, Li Y, Wu X, Wang W. Maize multi-omics reveal leaf water status controlling of differential transcriptomes, proteomes and hormones as mechanisms of age-dependent osmotic stress response in leaves. Stress Biology. 2024;4(1):19.

6. Niu L, Li C, Wang W, Zhang J, Scali M, Li W, Liu H, Tai F, Hu X, Wu X. Cadmium tolerance and hyperaccumulation in plants - A proteomic perspective of phytoremediation. Ecotoxicology and Environmental Safety. 2023;256:114882.

7. Li Y#, Niu L#(共同第一作者), Zhou X, Liu H, Tai F, Wang W. Modifying the expression of cysteine protease gene PCP affects pollen development, germination and plant drought tolerance in maize. International Journal of Molecular Sciences. 2023;24(8):7406.

8. Niu L, Liu L, Zhang J, Scali M, Wang W, Hu X, Wu X. Genetic engineering of starch biosynthesis in maize seeds for efficient enzymatic digestion of starch during bioethanol production. International Journal of Molecular Sciences. 2023;24(4):3927.

9. Niu L, Du C, Wang W, Zhang M, Wang W, Liu H, Zhang J, Wu X. Transcriptome and co-expression network analyses of key genes and pathways associated with differential abscisic acid accumulation during maize seed maturation. BMC Plant Biology. 2022;22(1):359.

10. Niu L, Liu L, Wang W. Digging for stress-responsive cell wall proteins for developing stress-resistant maize. Frontiers in Plant Science. 2020;11:576385.

11. Niu L, Ding H, Hao R, Liu H, Wu X, Hu X, Wang W. A rapid and universal method for isolating starch granules in plant tissues. Plant, Cell & Environment. 2019;42:3355-3371.

12. Niu L, Wu Z, Liu H, Wu X, Wang W. 2-DE-based proteomic analysis of protein changes associated with etiolated mesocotyl growth in Zea mays. BMC Genomics. 2019;20:758.

获得荣誉

河南省优秀博士学位论文(2025年)

河南省优秀硕士学位论文(2021年)

邮箱:niuliangjie@xynu.edu.cn