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付蕊欣

2026年05月26日 15:12  点击:[]



一、个人基本情况

付蕊欣,女,19890116,河南省商丘市,中共党员,博士,生物工程系,讲师,工科实训中心103室办公。长期从事根际益生菌与植物互作方面研究,阐明了根系分泌物调控根际益生菌功能以适应植物需求的互作机制。提出了植物通过跨界信号交流调控根际微生物功能时序表达的新机制,为开发调控微生物肥料功能的增效剂提供了研究思路和产品,阐明了RIN通过调控番茄根系代谢物关键组分(核黄素和3-羟基黄酮),招募抑制病原青枯菌的链霉菌,增强根际互惠功能的微生态机制,为构建消减土壤生物障碍的根际合生元提供了创新思路。近五年以第一作者发表SCI论文6篇,相关研究成果发表在Molecular Plant(2023),New Phytologist(2023)等国际权威期刊上。主持河南省科技厅项目1项。

二、教育经历和工作经历

2009-2013年,河南城建学院生物工程专业学士;

2013-2016年,南京农业大学海洋科学专业硕士;

2016-2021年,南京农业大学农业资源与环境专业博士;

2021-至今,商丘师范学院生物工程系讲师。

三、主讲课程

主讲《生物工程下游技术》、《生物工程下游技术实验》《微生物资源学》课程。

四、承担项目

河南省自然科学基金项目,抗病品种辣椒抵御土传青枯菌入侵的根际微生态机制研究,242300421586,2024-2025,5万元,结题,主持。

五、发表论文

[1]Ruixin Fu; Mengyuan Zhu; Yanrong Zhang; Junmin Li and Haichao Feng. Harnessing the Rhizosphere Microbiome for Selenium Biofortification in Plants: Mechanisms, Applications and Future Perspectives.Microorganisms, 2025, 13(8): 1234.

[2]Ruixin Fu; Haichao Feng. Deciphering bacterial chemorepulsion the complex response of microbes to environmental stimuli.Microorganisms, 2024, 12(8): 1706-1706.

[3] Yang, Keming #;Fu, Ruixin#; Feng, Haichao; Jiang, Gaofei; Finkel, Omri; Sun, Tianyu; Liu, Mingchun; Huang, Baowen; Li, Shan; Wang, Xiaofang; Yang, Tianjie; Wang, Yikui; Wang, Shimei; Xu, Yangchun; Shen, Qirong; Friman, Ville-Petri; Jousset, Alexandre; Wei, Zhong. RIN enhances plant disease resistance via root exudate-mediated assembly of disease-suppressive rhizosphere microbiota.Molecular Plant, 2023, 16:1379–1395.(共同第一作者;高被引论文).

[4] Feng, Haichao #;Fu, Ruixin#; Luo, Jiayu; Hou, Xueqin; Gao, Kun; Su, Lv; Xu, Yu; Miao,Youzhi; Liu, Yunpeng; Xu, Zhihui; Zhang, Nan; Shen, Qirong; Xun, Weibing; Zhang, Ruifu. Listening to plant’s Esperanto via root exudates: reprogramming the functional expression of plant growth-promoting rhizobacteria.New Phytologist, 2023, 239(6): 2307-2319.(共同第一作者;高被引论文).

[5]Fu, Ruixin; Wang, Ji; Zhou, Mengjia; Ren, Xuyang; Hua, Jianyang; Liang, Mingxiang. Five NUCLEAR FACTOR-Y subunit B genes in rapeseed (Brassica napus) promote flowering and root elongation inArabidopsis.Planta, 2022, 256(6): 115.

[6]Fu, Ruixin; Feng, Haichao; Dini-Andreote, Francisco; Wang, Zhen; Bo, Chunbin; Cao,Wenhui; Yang, Keming; Liu, Mingchun; Yang, Tianjie; Shen, Qirong; Xu, Yangchun; Wei, Zhong. Modulation of the Tomato Rhizosphere Microbiome via Changes in Root Exudation Mediated by the Ethylene Receptor NR.Microorganisms, 2021, 9(12): 2456.

[7] Feng, Haichao; Lv, Yu; Krell, Tino;Fu, Ruixin; Liu, Yunpeng; Xu, Zhihui; Du, Wenbin; Shen, Qirong; Zhang, Nan; Zhang, Ruifu. Signal binding at both modules of its dCache domainenables the McpA chemoreceptor ofBacillus velezensisto sense different ligands.Proceedings ofthe National Academy of Sciences of the United States of America, 2022, 119(29).

[8] Feng Haichao;Fu Ruixin; Hou Xueqin; Lv Yu; Zhang Nan; Liu Yunpeng; Xu Zhihui; Miao Youzhi; Krell Tino; Shen Qirong; Zhang Ruifu*; Chemotaxis of Beneficial Rhizobacteria to Root Exudates: The First Step towards Root-Microbe Rhizosphere Interactions.International Journal of Molecular Sciences, 2021, 22(13): 6655.

[9] Liu Yunpeng#; Feng Haichao#;Fu Ruixin; Zhang Nan; Du Wenbin; Shen Qirong; Zhang Ruifu*; Induced root-secreted D-galactose functions as a chemoattractant and enhances the biofilm formation ofBacillus velezensisSQR9 in an McpA-dependent manner.Applied Microbiology and Biotechnology, 2019, 104(2): 785-797.

[10] Feng Haichao; Zhang Nan;Fu Ruixin; Liu Yunpeng; Krell Tino; Du Wenbin; Shao Jiahui; Shen Qirong; Zhang Ruifu*. Recognition of dominant attractants by key chemoreceptors mediates recruitment of plant growth-promoting rhizobacteria.Environmental Microbiology, 2019, 21(1): 402-415.

[11] Feng Haichao; Zhang Nan; Du Wenbin; Zhang Huihui; Liu Yunpeng;Fu Ruixin; Shao Jiahui; Zhang Guishan; Shen Qirong; Zhang Ruifu*. Identification of chemotaxis compounds in root exudates and their sensing chemoreceptors in plant growth promoting rhizobacteriaBacillus amyloliquefaciensSQR9.Molecular Plant-Microbe Interactions, 2018, 31: 995-1005.

[12] Zhang Xi; Xu Huanhuan;Fu Ruixin; Jin Lijin; Zhao Haiyan; Wang Lin; Liang Mingxiang*; Bioethanol production by heterologous expression of two individual 1-FEH genes from Helianthus tuberosus inSaccharomyces cerevisiae6525.BioEnergy Research, 2016, 9:884-893.

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