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Wulinkun
Associate professor
College of Life Sciences
Post:
Title:
Associate professor
Degree:
Ph.D
Tel:
0591-83737535
Email:
wulinkun619@163.com
Office:
Address:
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  • 1. 2009.09–2014.06, Fujian Agriculture and Forestry University, Ecology, Ph.D

    2. 2005.09–2009.06, Fujian Agriculture and Forestry University, Biological Science, Bachelor


  • 1. 2018.09-now, College of Life Sciences, Fujian Agriculture and Forestry University, Associate professor

    2. 2016.12-2018.01, Charles Sturt University (Australia), Graham Centre for Agricultural Innovation,  Visiting scholar

    3. 2014.07-2018.08, College of Life Sciences, Fujian Agriculture and Forestry University, Lecturer 


  • Research Fields

    Most recently, my research has focused on the study of the mechanism of plant replant disease (soil sickness, consecutive monoculture problem) and its biocontrol strategy, with an emphasis on plant-soil feedback, rhizosphere ecology and ecological cultivation of medicinal materials.

    Teachings

    《Ecology》, 《Ecological Experiment》, 《Environmental Biotechnology》, etc.

    Projects

    1. 地黄连作驱动的根际特异活性微生物致灾机理研究81973412),国家自然科学基金面上项目(主持)

    2. 根系分泌物介导的连作太子参根际互作与作用机制研究81303170),国家自然科学基金青年项目(主持)


    Publications

    1.Li Qian, Cai Sisi, Fang Yuan, Khan MU, Zhang Bianhong, Duan Xuzhong, Fan Shutong, Lu Cuihong, Li Mingjie, Gu Li, Wang Juanying, Xiong Jun, Zhang Zhongyi, Lin Wenxiong, Wu Linkun*. Rhizosphere microbiome assembly mediated by consecutive monoculture triggers the replant disease of Rehmannia glutinosa. Applied Soil Ecology, 2023, 190: 104971. 

    2. Li Qian, Wu Yanhong, Wang Juanying, Yang Bo, Chen Jun, Wu Hongmiao, Zhang Zhongyi, Lu Cuihong, Lin Wenxiong*, Wu Linkun*. Linking Short-chain N-acyl Homoserine Lactone-mediated Quorum Sensing and Replant Disease: A Case Study of Rehmannia glutinosa. Frontiers in Plant Science, 2020, 11: 787.

    3. Wu Linkun, Yang Bo, Li Manlin, et al. Modification of rhizosphere bacterial community structure and functional potentials to control Pseudostellaria heterophylla replant disease. Plant Disease, 2020, 104(1): 25-34.

    4. Wu Linkun, Xiao Zhigang, Li Manlin, et al. First report of Sclerotium rolfsii var. delphinii causing southern wilt of Pseudostellaria heterophylla in China. Plant Disease, 2019, 103(6): 1419.

    5. Wu Linkun, Chen Jun, Khan MU, et al. Rhizosphere fungal community dynamics associated with Rehmannia glutinosa replant disease in a consecutive monoculture regime. Phytopathology, 2018, 108(12): 1493-1500.

    6. Wu Linkun, Wang Juanying, Wu Hongmiao, et al. Comparative metagenomic analysis of rhizosphere microbial community composition and functional potentials under Rehmannia glutinosa consecutive monoculture. International Journal of Molecular Sciences, 2018, 19(8): 2394.

    7. Wu Linkun, Chen Jun, Xiao Zhigang, et al. Barcoded pyrosequencing reveals a shift in the bacterial community in the rhizosphere and rhizoplane of Rehmannia glutinosa under consecutive monoculture. International Journal of Molecular Sciences, 2018, 19(3): 850.

    8. Wu Linkun, Chen Jun, Wu Hongmiao, et al. Insights into the regulation of rhizosphere bacterial communities by application of bio-organic fertilizer in Pseudostellaria heterophylla monoculture regime. Frontiers in Microbiology, 2016, 7: 1788.

    9. Wu Linkun, Chen Jun, Wu Hongmiao, et al. Effects of consecutive monoculture of Pseudostellaria heterophylla on soil fungal community as determined by pyrosequencing. Scientific Reports, 2016, 6: 26601.

    10. Wu Linkun, Wu Hongmiao, Chen Jun, et al. et al. Microbial community structure and its temporal changes in Rehmannia glutinosa rhizospheric soils monocultured for different years. European Journal of Soil Biology, 2016, 72, 1-5.

    11. Wu Linkun, Wang Juanying, Huang Weimin, et al. Plant-microbe rhizosphere interactions mediated by Rehmannia glutinosa root exudates under consecutive monoculture. Scientific Reports, 2015, 5: 15871.

    12. Wu Linkun, Li Zhenfang, Li Ji, et al. Assessment of shifts in microbial community structure and catabolic diversity in response to Rehmannia glutinosa monoculture. Applied Soil Ecology, 2013, 67:1-9.

    13. Wu Linkun, Wang Haibin, Zhang Zhixing, et al. Comparative metaproteomic analysis on consecutively Rehmannia glutinosa - monocultured rhizosphere soil. PLoS ONE, 2011, 6(5): e20611.

    14. Wu Linkun, Chen Jun, Yang Bo, etc. Effects of Rehmannia glutinosa consecutive monoculture on the phyllosphere bacterial community structure and diversity (地黄连作对叶际细菌群落结构及多样性的影响). Chinese Journal of Applied Ecology(应用生态学报), 2019, 30(10): 3509-3517.

    15. Wu Linkun, Chen Jun, Wu Hongmiao, etc. Comparative proteomics analysis of R. glutinosa tuber root in response to consecutive monoculture (地黄连作胁迫响应机制的块根蛋白质组学分析). Acta Agronomica Sinica (作物学报), 2016, 42(2):243-254.

    16. Wu Linkun, Wu Hongmiao, Zhu Quan, etc. Effects of different amendments on contents of phenolic acids and specific microbes in rhizosphere of Pseudostellaria heterophylla (不同改良措施对太子参根际土壤酚酸含量及特异菌群的影响). Chinese Journal of Applied Ecology (应用生态学报), 2016, 27(11):3623-3630.

    17. Wu Linkun, Huang Weimin, Wang Juanying, etc. Diversity analysis of rhizosphere microflora of wild R. glutinosa grown in monocropping for different years (不同连作年限野生地黄根际土壤微生物群落多样性分析). Acta Agronomica Sinica (作物学报), 2015, 41(2): 308-317. 

    18. Wu Linkun, Lin Xiangmin, Lin Wenxiong. Advances and perspective in research on plant-soil-microbe interactions mediated by root exudates (根系分泌物介导下植物-土壤-微生物互作关系研究进展与展望). Chinese Journal of Plant Ecology (植物生态学报), 2014, 38(3): 298-310.

    19. Wu Linkun, Wang Haibin, You Chuihuai, etc. Establishment of extraction method and 2-dimensional electrophoresis conditions for tuber root proteome analysis of Rehmannia glutinosa Libosch (地黄块根总蛋白质提取及双向电泳条件优化). Chinese Journal of Chinese Materia Medica (中国中药杂志), 2011, 36(8): 5-8.


    Achievements