讲师,博士,硕士生导师,林学系副主任。Email: sailuo1987@163.com个人简介:1987年7月生,湖南吉首人。2005.09-2009.06,北京林业大学,食品科学与工程专业,..." />
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盛崧 副教授

时间:2025-09-17    浏览次数:

盛崧 副教授

一、个人基本信息

- 姓名:盛崧

- 籍贯:湖南吉首

- 职称:副教授

- 职务:硕士生导师、林学系副主任

- 邮箱:songsheng@csuft.edu.com

二、教育背景

(按时间倒序排列)

- 2013.09 – 2019.05:苏黎世大学 (University of Zurich),植物科学,博士

- 2009.09 – 2012.06:中国农业大学,作物遗传育种,硕士

- 2005.09 – 2009.06:北京林业大学,食品科学与工程,本科

三、工作经历

(按时间倒序排列)

- 2022.09 – 至今:中南林业科技大学,林学院,林木遗传育种教研室,专任教师

- 2019.10 – 2022.08:中国农业大学,资源与环境学院,博士后

四、研究方向与主要研究领域

研究方向

1. 林木遗传育种

2. 人工智能育种

主要研究领域

1. 林草响应生物/非生物胁迫的分子机制;林草关键性状形成的分子机制。

2. 竹林改造与高产高效栽培技术研究,聚焦笋材兼用型林分结构优化与经营模式创新。

五、承担科研项目(主持,按年份倒序)

1. 2024年 长沙市自然科学基金

2. 2024年 中国烟草总公司湖南省公司科研项目

3. 2024年 湖南省林业科技创新计划项目

4. 2023年 中国烟草总公司湖南省公司科研项目

5. 2023年 湖南省教育厅科学 优秀青年基金

6. 2022年 中南林业科技大学引进人才科研启动基金

六、科研项目参与/指导情况

1. 项目参与

- 项目编号:YLS-2025-ZY01007

- 项目类型:现代种业重大项目(岳麓山实验室种业专项项目任务书)

- 项目名称:竹材优质性状遗传调控与高效利用基础

- 参与角色:主要参与人

2. 学生项目指导

- 计划类别:湖南省本科省自然科学基金项目

- 项目编号:2025JJ60906

- 指导学生:李瑞冰

- 项目题目:《GWAS结合小尺度泛基因组分析挖掘影响毛竹材性的关键基因及分子功能鉴定》

七、代表性学术成果(部分,按时间倒序排列)

1. 2026.03:Brassinosteroids Orchestrate Multi-Layered Drought Adaptation in Quercus glauca Through Integrated Transcriptomic and Metabolomic Reprogramming,Tree Physiology(一区 Top,校定重大影响),通讯

2. 2025.11:Multi-omics Analyses Reveal Regulatory Networks Underpinning Metabolite Biosynthesis in Nicotiana tabacumNature Communications(Nature子刊),第11

3. 2025.09:Developmental Regulatory Genes in Recalcitrant Forest Trees: Advances in Somatic Regeneration and Genetic Transformation,Frontier in Plant Science(二区 Top),共通讯

4. 2025.09:Physiological and transcriptomic analyses reveal the regulatory mechanisms of floral response to drought stress in Camellia oleiferaScientia Horticulturae(二区),共通讯

5. 2025.09:Comprehensive Analysis of SDH Genes in Populus and Functional Characterization of SDH4 in Xylem and Cambium Development,BMC Plant Biology(二区 Top),通讯

6. 2025.08:Phylogenetic and functional analysis of MYB genes unraveling its role involved in anthocyanin biosynthesis in H. macrophyllaScientific Reports(三区),共通讯

7. 2025.07:Lipid-mediated photoprotection confers strong light resilience in hyperaccumulator Sedum alfredii,Plant Science(二区),通讯

8. 2025.06:Deciphering the growth-mechanical trade-offs in moso bamboo through multi-omics approaches,Industrial Crops and Products(一区 Top),共通讯

9. 2025.05:Time‐Course Transcriptome Analysis Unveils the CoFKF1‐CoMYB4‐CoFT1 Regulatory Module in Flowering Control of Camellia oleifera Abel.,Plant, Cell & Environment(一区 Top),第5

10. 2025.02:Enhancing fruit quality through unraveling the molecular and physiological basis and preventing cracking in jujube (Ziziphus jujuba Mill.),Postharvest Biology and Technology(一区 Top,校定重大影响),共通讯

11. 2024.10:A Colletotrichum fructicola dual specificity phosphatase CfMsg5 is regulated by the CfAp1 transcription factor during oxidative stress and promotes virulence on Camellia oleiferaVirulence(一区 Top),共通讯

12. 2024.04:Complex Interplay of Metabolic Pathways in Grafting of Ziziphus Species: Transcriptomic Insights into Regulatory Networks of Carbohydrates and Secondary Metabolite Biosynthesis,Forests(二区),第2

13. 2024.04:Stochastic Processes Dominated the Soil Bacterial Community Assemblages Along an Altitudinal Gradient in Boreal Forests,CATENA(一区 Top),共一

14. 2024.04:Phytochemical and Gene Network Analysis Elucidating the Key Genes Involved in the Biosynthesis of Gomisin J in Schisandra sphenanthera,Agronomy(二区),共通讯

15. 2024.02:Regulation of Blue Infertile Flower Pigmentation by WD40 Transcription Factor HmWDR68 in Hydrangea macrophylla ‘forever summer’,Molecular Biology Reports(三区),第5

16. 2024.02:Transcriptomic Insights and Cytochrome P450 Gene Analysis in Kadsura coccinea for Lignan Biosynthesis,Genes(三区),共通讯

17. 2024.02:Hormonal Regulation and Transcriptomic Insights into Flower Development in Hydrangea paniculata ‘Vanilla Strawberry’,Plants(二区),第3

18. 2024.02:High temperature treatment induced production of unreduced 2n pollen in Camellia oleiferaHorticultural Plant Journal(一区 Top),共一

19. 2024.01:Differential absorption of cadmium and zinc by tobacco plants: Role of apoplastic pathway,Biochemistry and Biophysics Reports(四区),第4

20. 2023.11:Nano-Silicon Triggers Rapid Transcriptomic Reprogramming and Biochemical Defenses in Brassica napus Challenged with Sclerotinia sclerotiorumJournal of Fungi(二区),共通讯

21. 2023.11:Molecular identification of twenty NtDREB homologs and overexpression of NtDREB_A2.1 improved plant growth in response to cold-stress and P-nutrition limitation,Environmental and Experimental Botany(二区 Top),第2

22. 2023.09:Integrative transcriptomic analysis deciphering the role of rice bHLH transcription factor Os04g0301500 in mediating responses to biotic and abiotic stresses,Frontier in Plant Science(二区 Top),第4

23. 2023.02:Identification of CoDREB Genes for Drought and Cold Tolerance in Camellia oleifera,International Journal of Plant Biology,第2

24. 2022.12:Genome-Wide Identification of bHLH Transcription Factor in Medicago sativa in Response to Cold Stress,Genes(三区),通讯

25. 2022.06:Genome-wide identification and expression analysis of DREB genes in alfalfa (Medicago sativa) in response to cold stress,Plant Signaling & Behavior(四区)第一

26. 2022.04:Coding-sequence confirmation of rice OsLHTs with their differential expressions involved in N-nutritional status, tissue specificity and grain production,Plant Gene(四区)共一

27. 2022.03:Polyamine: A Potent Ameliorator for Plant Growth Response and Adaption to Abiotic Stresses Particularly the Ammonium Stress Antagonized by Urea,Frontiers in Plant Science(二区)第一

28. 2020.12:Phenotypical evidence of effective amelioration of ammonium-inhibited plant (root) growth by exogenous low urea,Journal of Plant Physiology (二区)共通讯

29. 2020.01:Evidence that exogenous urea acts as a potent cue to alleviate ammonium‐inhibition of root system growth of cotton plant (Gossypium hirsutum),Physiologia Plantarum (二区)第4

30. 2018.12:Molecular identification and functional characterization of GhAMT1.3 in ammonium transport with a high affinity from cotton (Gossypium hirsutum L.),Physiologia Plantarum(二区) 第2

31. 2012.01:Rice DUR3 mediates high-affinity urea transport and plays an effective role in improvement of urea acquisition and utilization when expressed in Arabidopsis,New Phytologist (一区)第6