西北农林科技大学园艺学院
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徐清山

来源:   作者:   发布日期:2025-06-18     浏览次数:

     


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1、基本信息

徐清山,博士,副教授,博士生导师。2018年毕业于安徽农业大学茶树种质创新与资源利用全国重点实验室茶学专业,获农学博士学位。2018年7月进入西北农林科技大学园艺学院参加工作,讲师;2020年1月破格晋升茶学系副教授。

2、研究方向

1)茶树香气成分代谢调控

2)茶树种质资源遗传多样性与分子育种

3)茶及茶饮料风味研究

3、开设课程

承担了《茶树分子生物学》、《文献阅读与科技写作》、《茶学综合实习》等本科生课程,以及《茶叶高级生物化学》等研究生课程。

4、主持科研项目

1)国家自然科学基金面上项目 (32472795), 2025.01-2028.12;

2)国家自然科学基金青年项目 (31902072), 2020.01-2022.12;

3)陕西省自然科学基础研究计划项目 (2024JC-YBMS-145), 2024.01-2025.12;

4)陕西省自然科学基础研究计划项目 (2019JQ-319), 2019.01-2020.12;

5)陕西省农业专项, 陕茶新技术研发与推广, 2022.07-2024.07;

6)陕西省农业专项, 茯茶风味物质新型检测方法开发, 2020.04-2022.04;

7)中国博士后科学基金第67批面上项目 (2020M673511), 2020.07-2022.06;

8)横向课题, 茶叶香气糖苷物质的检测方法,2025.01-2025.12;

9)横向课题, 茶叶香气糖苷物质的检测,2025.01-2025.12;

10)云南省茶学重点实验室开放基金 (2024YNCX003), 2025.01-2026.12;

11) 茶树生物学与资源利用国家重点实验室开放基金 (SKLTOF20230115), 2023,11- 2025,10;

12) 西北农林科技大学基本科研业务费专项资金项目,2022.1.1-2024.12.31;

13)陕西省引进国内博士专项资助, 2021.03-2023.03;

14)试验示范站科技创新与成果转化项目 (NO.TGZX2019-11), 2019.06-2021.06;

15)西北农林科技大学博士科研启动基金项目 (NO. 2452018068), 2018.07-2021.06.

5、主要学术论著

1) Wang X, Li X, Chen D, Gao J, Hao S, Zhang H, Zhao Z, Shen M, Chen H, Qi F, Zhang K, Zhou H, Xi Y, Zhou J, Yu Y*, Xu Q*. Core germplasm construction of tea plant populations based on genome-wide SNP and catechins in Shaanxi Province, China.  Journal of Integrative Agriculture , 2025, 2095-3119.

2) Cheng L, Tu G, Ma H, Zhang K, Wang X, Zhou H, Gao J, Zhou J, Yu Y*, Xu Q*. Alternative splicing of CsbHLH133 regulates geraniol biosynthesis in tea plants.  Plant J . 2024. 120(2):598-614.

3) Xiao Y, Dong Y, Zhang Y H, Zhang Y A, Liu L, Liu P, Wan S, Xu Q*, Yu Y*. Two galactinol synthases contribute to the drought response of  Camellia sinensis ,  Planta , 2023, 258(5).

4) Zhang K, Zhao J, Cheng L, Zhou H, Dong Yuan, Ma H, Zhou J, Yu Y*, Xu Q*. Determination of Tea Aroma Precursor Glycosides: An Efficient Approach via Liquid Chromatography-tandem Mass Spectrometry.  J Agric Food Chem . 2023, 71(9):4083-4090.

5) Zhu J, Yan X, Liu S, Xia X, An Y, Xu Q, Zhao S, Liu L, Guo R, Zhang Z, Xie D, Wei C. Alternative splicing of CsJAZ1 negatively regulates flavan-3-ol biosynthesis in tea plants.  Plant J ., 2022, 110(1), 243-261.

6) Cheng L, Liu H, Zhao J, Dong Y, Xu Q*, Yu Y*. Hormone Orchestrates a Hierarchical Transcriptional Cascade That Regulates Al-Induced De Novo Root Regeneration in Tea Nodal Cutting.  J Agric Food Chem , 2021, 69(21), 5858-5870.

7) Zhu J, Xu Q, Zhao S, Xia X, Yan X, An Y, Mi X, Guo L, Samarina L, Wei C*. Comprehensive co-expression analysis provides novel insights into temporal variation of flavonoids in fresh leaves of the tea plant ( Camellia sinensis ) [J],  Plant Sci ., 2020, 290: 110306.

8) Zhang S, Sun L, Wang Y, Fan K, Xu Q, Li Y, Ma Q, Wang J, Ren Wa, Ding Z*. Cow manure application effectively regulates the soil bacterial community in tea plantation [J],  BMC Microbiol . 2020, 20(1), 190.

9) Xu Q, Cheng L, Mei Y, Huang L, Zhu J, Mi X, Yu Y,* Wei C*. Alternative Splicing of Key Genes in LOX Pathway Involves Biosynthesis of Volatile Fatty Acid Derivatives in Tea Plant ( Camellia sinensis ) [J],  J. Agric. Food Chem ., 2019, 67: 13021-13032.

10) Zhu J, Wang X, Guo L, Xu Q, Zhao S, Li F, Yan X, Liu S, Wei C*. Characterization and alternative splicing profiles of lipoxygenase gene family in tea plant ( Camellia sinensis ) [J].  Plant Cell Physiol ., 2018.

11) Zhu J, Wang X, Xu Q, Zhao S, Tai Y, Wei C. Global dissection of alternative splicing uncovers transcriptional diversity in tissues and associates with the flavonoid pathway in tea plant ( Camellia sinensis ) [J].  BMC Plant Biol ., 2018, 18: 266.

12) Xu Q, He Y, Yan X, Zhao S, Zhu J, Wei C*. Unraveling a crosstalk regulatory network of temporal aroma accumulation in tea plant ( Camellia sinensis ) leaves by integration of metabolomics and transcriptomics [J],  Environmental and Experimental Botany , 2018, 149:81.

13) Xu Q, Zhu J, Zhao S, Hou Y, Li F, Tai Y, Wan X*, Wei C*.Transcriptome Profiling using Single-Molecule Direct RNA Sequencing Approach for in-depth Understanding of Genes in Secondary Metabolism Pathways of  Camellia Sinensis [J].  Frontiers in Plant Science , 2017, 8: 1205.

14) Xu Q, Wang Y, Ding Z*, Fan K, Ma D, Zhang Y, Yin Q.Aluminum induced physiological and proteomic responses in tea ( Camellia sinensis ) roots and leaves [J].  Plant Physiology & Biochemistry , 2017, 115:141.

15) Xu Q, Wang Y, Ding Z*, Song L, Li Y, Ma D, Wang Y, Shen J, Jia S, Sun H, Zhang H. Aluminum induced metabolic responses in two tea cultivars [J].  Plant Physiology & Biochemistry , 2016, 101:162.

16) 赵静,王滨,张静, 周天山,余有本,徐清山.顶空固相微萃取法萃取茯砖茶挥发性成分条件的优化[J]. 西北农业学报,2024,33(6):1102-1111.

6、专利及教材:

1) 徐清山, 赵静, 余有本, 张可依. METHOD FOR SIMULTANEOUSLY DETECTING 8 GLYCOSIDIC AROMA PRECURSORS IN TEA LEAVES. 国际专利. 已授权.

2) 丁兆堂, 徐清山, 王玉. 一种北方棕壤土新建茶园专用土壤改良剂配方:CN104893735B [P]. 2018. 国家发明专利. 已授权.

3) 徐清山, 余有本, 程龙, 黄利. 一种鉴定和筛选高香叶醇茶树的功能标记及其应用. 国家发明专利. 申请中.

4) 徐清山, 余有本, 向雯, 杨荷. 与高苯甲醇樱草糖苷含量相关的 InDel 分子标记、引物对、试剂盒及应用. 国家发明专利. 申请中.

5) 参编教材1部《茶树生物学实验技术》,2023年,ISBN号978-7-03-075630-5

7、联系方式

通讯地址:陕西杨凌邰城路3号西北农林科技大学园艺学院

邮编:712100

联系电话:15809259061

Email:xuqingshan@nwafu.edu.cn

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