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个人信息
- 所在单位:园艺学院
- 学历:博士研究生毕业
- 学位:理学博士学位
- 申加枝,张大燕,周琳,张旭周,廖界仁,段玉,文博,马媛春,王玉花,房婉萍,朱旭君.Transcriptomic and metabolomic profiling of Camellia sinensis L. cv. 'Suchazao' exposed to temperature stresses reveals modification in protein synthesis and photosynthetic and anthocyanin biosynthetic pathways,TREE PHYSIOLOGY,2019,39(9):1583-1599(参与作者)
- 朱旭君,廖界仁,夏兴莉,熊飞,李悦,申加枝,文博,马媛春,王玉花,房婉萍.Physiological and iTRAQ-based proteomic analyses reveal the function of exogenous -aminobutyric acid (GABA) in improving tea plant (Camellia sinensis L.) tolerance at cold temperature,BMC PLANT BIOLOGY,2019,19:-(参与作者)
- 文博,张晓磊,任爽,段玉,张燕媛,朱旭君,王玉花,马媛春,房婉萍.Characteristics of soil nutrients, heavy metals and tea quality in different intercropping patterns,AGROFORESTRY SYSTEMS,2019,:-(参与作者)
- 朱姣姣,邢安琪,武子辰,陶靖,马媛春,文博,朱旭君,房婉萍,王玉花.CsFEX, a Fluoride Export Protein Gene from Camellia sinensis, Alleviates Fluoride Toxicity in Transgenic Escherichia coli and Arabidopsis thaliana,JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,2019,67(21):5997-6006(通讯作者)
- 段玉,申加枝,张晓磊,文博,马媛春,王玉花,房婉萍,朱旭君.Effects of soybean-tea intercropping on soil-available nutrients and tea quality,ACTA PHYSIOLOGIAE PLANTARUM,2019,41(8):-(参与作者)
- 朱姣姣,潘俊廷,农寿华,马媛春,邢安琪,朱旭君,文博,房婉萍,王玉花.Transcriptome Analysis Reveals the Mechanism of Fluoride Treatment Affecting Biochemical Components in Camellia sinensis,INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,2019,20(2):-(通讯作者)
- 李旭,张秋萍,彭茜,徐佳,张园,朱姣姣,王玉花,安云鹤,陈冬艳.The effects of five types of tea solutions on epiboly process, neural and cardiovascular development, and locomotor capacity of zebrafish,CELL BIOLOGY AND TOXICOLOGY,2019,35(3):205-217(通讯作者)
- 王玉花,常品品,潘俊廷,朱姣姣,崔传磊,叶小丽,马媛春,朱旭君,房婉萍,江昌俊.Effect of aluminum and fluoride on R2R3-MYB transcription factor characterization and expression in Camellia sinensis,BIOLOGIA PLANTARUM,2019,63:298-307(第一作者)
- 茶树鸟苷酸交换因子CsRopGEF1和CsRopGEF3基因的克隆及表达特性,植物资源与环境学报,2018,27(4):1-10(参与作者)
- 潘俊廷,常品品,叶小丽,朱姣姣,李东芹,崔传磊,文博,马媛春,朱旭君,房婉萍,王玉花.Transcriptome-wide analysis of MADS-box family genes involved in aluminum and fluoride assimilation in Camellia sinensis,PLANT BIOTECHNOLOGY,2018,35(4):313-324(通讯作者)