农药系

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姓名:郭静

职称: 讲师

学科领域:农药学

研究方向:除草剂残留及降解,微生物修复

邮箱: guojing@neau.edu.cn

个人简历

学习经历:

2013.09-2017.06:东北农业大学植物保护系,农学学士;

2017.09-2020.06:东北农业大学农药学,农学硕士;

2020.09-2023.06:东北农业大学作物栽培学与耕作学,农学博士。

作经历:

2023.09-至今,必威,讲师。

教学工作

授课情况:《杂草学实验》

科研工作

科研项目:

论文著作:

1.Guo Jing, Song Xiuli, Li Rongxing, Zhang Qi, Zheng Shengwei, Li Qiucheng, Tao, Bo*. Isolation of a degrading strain of Fusarium verticillioides and bioremediation of glyphosate residue.Pesticide Biochemistry & Physiology,2022, 182: 105031 (SCI, IF=4.966, JCR一区,中科院一区, TOP)

2.Guo Jing, Song Xiuli, Sun Shiqi, Shao Baihui, Tao Bo*, Zhang Lili. RNA-Seq Transcriptome Analysis of Potato with Differential Tolerance to Bentazone Herbicide.Agronomy,2021, 11(5): 897 (SCI, IF=3.64, JCR一区,中科院二区)

3.Jing Guo, Xiuli Song, Caiyue Zheng, Shiqi Sun, Baolong Zhuang, Bo Tao*. Transcriptome analysis and identification of candidate genes involved in glyphosate resistance in the fungus Fusarium verticillioides.Journal of environmental science and health. Part. B, Pesticides, food contaminants, and agricultural wastes,2021, 56(7): 658-669(SCI, IF=1.99, JCR三区,中科院四区)

4.Fangyuan Wang, Lingwei Kong,Jing Guo, Xiuli Song, Bo Tao*, Yujun Han*. RNA-sequencing analysis of the Diquat-degrading yeast strain Meyerozyma guilliermondii Wyslmt and the discovery of Diquat degrading genes.Frontiers in microbiology, 2022, 13: 993721(SCI, IF=6.064, JCR一区,中科院二区, TOP)

5.Tao Bo*, Sun Shiqi, Zhang Lili,Guo Jing, Shao Baihui. Production and Assessment of Potato Material Resistant to the Broadleaf Herbicide Bentazone.POTATO RESEARCH, 2021, 64(2): 241-256(SCI, IF=0.863, JCR三区,中科院四区)

6.Song Xiuli,Guo Jing, Wu Yue, Yang Deguang, Wang Junhe, Tao Bo*. A new model for quorum sensing and image simulation of plant rhizosphere microorganisms.Journal of Intelligent & Fuzzy Systems, 2019, 37(1): 263-274(SCI, IF=1.637, JCR四区,中科院四区,共一)

7.郭静,宋秀丽,白杰,陶波*.氟磺胺草醚降解菌株TB-2的生物学特性及生物修复对玉米生长发育的影响[J].应用与环境生物学报,2020,26(5): 1059-1065

8.陶波*,郭静,白杰.土壤中氟磺胺草醚残留对后茬玉米生长及其酶活性的影响[J].植物保护学报,2020,第47卷(1): 215-216

9.李荣兴,郭静,李秋澄,陶波*,郭勇.转基因抗草甘膦大豆叶片降解对土壤微环境的影响[J].中国生物防治学报,2023,第39卷(1): 88-97

科研成果:

专利:

授权发明专利:“一种抗草甘膦相关蛋白及其编码基因与应用” (排名第2), 2023-05-30中国, ZL 2021 1 0440531.2