牛素贞

发布者:lsman发布时间:2024-03-13浏览次数:647

ide SNPs developed by genotyping-by-sequencing , BMC Plant Biology, 2019:19.

2. Suzhen Niu, Hisashi Koiwa, Qinfei Song, Dahe Qiao, Juan Chen, Degang Zhao*Zhengwu Chen*,Ying Wang,TianyuanZhang, Development of core-collections for Guizhou tea genetic resources and GWAS of leaf size using SNP developed by genotyping-by-sequencing, PeerJ,2020.

3.Wang Wei##, Niu Suzhen##,Dai Yi, Zhai Xinmi, Wang Mingchun, Ding Yanqin,Yang  Wenpeng,Zhao Degang*.Molecular Mechanisms Underlying Increase in Lysine Content of Waxy Maize through the Introgression of the opaque2 Allele , International Journal of Molecular Sciences,2019.

4.Zhifei Zhao, Qinfei Song, Dingchen Bai, Suzhen Niu*, Yingqin He, Dahe Qiao, Zhengwu Chen*,Caiyun Li, Jing Luo and Fang Li. Population structure analysis to explore genetic diversity and geographical distribution characteristics of cultivated-type tea plant in Guizhou PlateauBMC Plant Biology, 2022, 22(1):1-14.

5Yanjun ChenSuzhen Niu*Xinyue DengQinfei SongLimin HeDingchen BaiYingqin He.Genome-wide association study of leaf-related traits in tea plant in Guizhou based on genotyping-by-sequencing.BMC Plant Biology, 2023, 23(1)

6. Fang Li, Xinyue Deng, Zheng Huang, Zhifei Zhao, Caiyun Li, Qinfei Song, Yingqin He and Suzhen Niu* Integrated Transcriptome and Metabolome Provide Insights into Flavonoids Biosynthesis in 'P113', a New Purple Tea of Camellia tachangensis. Beverage Plant Research, 2023, 3:3

7. Limin He, Jing Luo, Suzhen Niu*, Dingchen Bai and Yanjun Chen. Population structure analysis to explore genetic diversity and geographical distribution characteristics of wild tea plant in Guizhou Plateau, BMC Plant Biology, 2023, 23:255.

8. Jingxue Han, Xiaojing Wang *, Suzhen Niu *. Genome-Wide Identification of 2-Oxoglutarate and Fe (II)-Dependent Dioxygenase (2ODD-C) Family Genes and Expression Profiles under Different Abiotic Stresses in Camellia sinensis (L.).2023

9. Wang yihanSuzhen Niu*, Deng xinyue, Bai dingchen, Chen zhengwu, Deng xiuling, Huang dejun. Genome-wide association study, population structure, and genetic diversity of the tea plant in Guizhou Plateau. BMC Plant Biol. 2024;24(1):79.

10. Ai yujie, Wu qidi, Yuan Haibo, Yingqin He, Yongwen Jiang*, Suzhen Niu*. Development of a rapid, accurate and efficient HPLC method for simultaneous determination of catechins and theaflavins in black tea[J]. Journal of Food Composition and Analysis, 2024, 128: 105990.

11.刘霞,李芳,宋勤飞,牛素贞*,吕立堂..大厂茶紫芽品系P113不同季节花青素调控相关基因表达分析茶叶科学, 2021,06:789-801.

12李彩云,宋勤飞, 牛素贞*,赵支飞,何应琴,李芳,马安权.大厂茶优势株系芽叶性状与生化成分的鉴定与评价.热带作物学报. 2022,12: 2564-2575.

13.牛素贞,宋勤飞,安红卫等.贵州古茶树种质资源基于形态特征的多样性研究.浙江农业学报,2019,31(10):1689-1699.

14.牛素贞,赵支飞,宋勤飞.贵州野生茶树种质资源立地环境多样性.浙江农业学报, 2020, 32(07):1223-1232.     

15.牛素贞,安红卫,宋勤飞.贵州野生茶树立地土壤养分状况分析及综合评价.浙江农业学报,2020, 32(06):1039-1048.

16.牛素贞,安红卫,刘文昌等.贵州古茶树种质资源的生育期及春梢萌发特性.贵州农业科学,2020,48(03):10-15.     

17.李芳, 黄政, 牛素贞*.黔中地区大茶树种质资源基于形态性状的遗传多样性分析,分子植物育种

18.黄政,李芳,尹杰,牛素贞*.贵州低热河谷地方茶树种质资源基于表型性状的遗传多样性分析.分子植物育种 2021,07:0225.

19.安红卫,宋勤飞, 牛素贞.贵州茶树种质资源遗传多样性、群体结构和遗传分化研究.浙江农业学报,2021,33(07):1234-1243. 

20.罗静,宋勤飞,牛素贞*.干旱胁迫对5个茶树优良品系扦插苗根系生长和叶片生理生化特性影响的比较,分子植物育种,2021,5:14.

21.安红卫,宋勤飞, 牛素贞*.pH值对两种野生茶树生长生理的影响.分子植物育种2021, 07: 02.

22.白鼎臣,何立敏,李彩云, 牛素贞*.贵州大厂茶珍稀濒危种质资源研究及保护进展.科技导报,2023,04:58-64.

23.李彩云,宋勤飞,范乔,何应琴,赵支飞,李芳, 牛素贞*陈正武.大厂茶古树与其无性系子代的农艺性状和品质性状比较及综合评价.南方农业学报. 2022,02: 343-355.

24.李芳,刘霞,黄政,何应琴,宋勤飞, 牛素贞*.代谢组学解析大厂茶P113叶色变化规律.浙江农业学报. 2022,10: 2121-2131.