招生专业

海洋生物学

个人详细介绍

郭长军,新奥门31999新奥门31999教授,博士,博士生导师,国家优秀青年基金项目获得者(2014),国家农业农村部“神农青年英才”(2022),入选广东省特支计划科技创新青年拔尖人才(2014)、霍英东教育基金会优秀青年基金(2014)、广东省高等学校优秀青年教师(2015)、国家自然资源部高层次科技创新人才(2019)等人才计划。主持国家重点研发计划项目(首席科学家)、国家自然科学基金项目青年和面上等国家/省部级科研项目十余项。现为国家特色淡水鱼产业技术体系病毒病防控岗位科学家(2024-)、广东省海水鱼产业技术体系病毒病防控岗位科学家(2019-)等,现任南海海洋生物技术国家工程研究中心副主任、广东省水生经济动物良种繁育重点实验室副主任、广东省动物学会常务副理事长等职务。先后获得了、国家海洋局海洋领域优秀科技青年(2017)、广东省动物科技奖杰出青年奖(2021)、南方八省区林浩然动物科学与技术杰出青年奖(2022)等个人学术奖励。

一、主要学习和工作经历:

        郭长军,男,1981年出生,籍贯浙江苍南,2009年毕业于新奥门31999生命科学学院获博士学位;2009.09-2011.12 新奥门31999新奥门31999,师资博士后,讲师;2012.01-2016.12 新奥门31999新奥门31999,副教授;2017.01-至今  新奥门31999新奥门31999,教授。

 

二、主要主持的科研项目:

1、国家重点研发计划项目,首席科学家:2022.10-2025.09;

2、广东省重点研发计划项目,课题负责人:2022.06-2025.06;

3. 广州市科技计划重点项目,项目负责人:2019.04-2022.03;

4、国家重点研发计划项目,子课题负责人:2018.12-2022.12;

5. 岭南现代农业科学与技术广东省实验室自主项目:2021.10-2023.09;

6、国家自然科学基金优秀青年基金,项目负责人:2014.01-2016.12;

7、国家自然科学基金面上项目,项目负责人:2014.01-2017.12;

8、国家自然科学基金青年基金,项目负责人: 2011. 01-2013.12;

9、广东省自然科学基金面上项目,项目负责人:2013.10-2015.10;

10、霍英东教育基金会优秀青年基金,项目负责人:2014.01-2016.12;

11、中国博士后科学基金特别资助项目,项目负责人:2011.04-2012.09;

12、广州市珠江科技新星项目,项目负责人:2014.04-2017.03;

13、中国博士后科学基金,项目负责人:2009. 12-2011.12;

14、高校基本科研业务费青年教师重大培育项目:2016.01-2017.12

 

三、近5年专利情况:

1、一种肿大细胞病毒vSOCS/vTK双基因敲除株及其制备方法和应用, 2021-7-30, 中国, ZL201711355686.6

2、一种传染性脾肾坏死病毒ORF069基因缺失株及其制备方法和应用, 2022-2-11, 中国, ZL201810210972.1

3、一种传染性脾肾坏死病毒ORF022基因缺失株及其制备方法和应用, 2022-2-11, 中国, ZL201810209599.8

4、一种传染性脾肾坏死病毒ORF074基因缺失株及其制备方法和应用, 2022-2-11, 中国, ZL201810209600.7

5、一种水温优化浸泡免疫系统及其应用, 2022-11-22, 中国, CN202211463994.1

6、一种黄鳍鲷脾脏细胞系及其构建方法与应用,2023-04-17,中国,CN202310413513.4

 

四、近五年发表SCI论文情况:

入职以来,发表SCI论文50余篇,近五年的主要学术论文如下:

Liang MC, et al. Hypermethylated genome of a fish vertebrate iridovirus ISKNV plays important roles in viral infection. Commun Bio, 2024, 7:237.

 He J et al., Molecular mechanism of infectious spleen and kidney necrosis virus in manipulating the hypoxia-inducible factor pathway to augment virus replication. Virulence. 2024, Epub.

Zeng RY, et al. Low-temperature immunization attenuates the residual virulence of orf074r gene-deleted infectious spleen and kidney necrosis virus: a candidate immersion vaccine. J Virol. 2023. 97(11): e0128923.

Zeng RY, et al. A safe and efficient double-gene-deleted live attenuated immersion vaccine to prevent the disease caused by the infectious spleen and kidney necrosis virus. J Virol. 2023. 27; 97(7): e0085723.

Luo ZY, et al. Interaction of teleost fish TRPV4 with DEAD Box RNA helicase 1 regulates iridovirus replication. J Virol. 2023. 29; 97(6): e0049523.

Liu W, et al. Oxygen-sensing protein cysteamine dioxygenase from mandarin fish involved in the Arg/N-degron pathway and Siniperca chuatsi rhabdovirus infection. Viruses. 2023. 15(8):1644.

Feng Z, et al. Genomic Characteristics and Functional Analysis of Brucella sp. Strain WY7 Isolated from Antarctic Krill. Microorganisms. 2023,11(9):2281.

Yu Y, et al. Molecular characterization and functional analysis of hypoxia-responsive factor prolyl hydroxylase domain 2 in mandarin fish (Siniperca chuatsi). Animals (Basel). 2023, 13(9):1556.

Zhan Z, et al. Development and characterization of a spleen cell line from yellowfin seabream Acanthopagrus latus and its susceptibility to Mandarinfish ranavirus. J Fish Dis. 2023,46(11):1173-1181.

Wang M, et al. The genome of a vestimentiferan tubeworm (Ridgeia piscesae) provides insights into its adaptation to a deep-sea environment. BMC Genomics. 2023, 24(1):72.

Qin XW, et al. The Interaction of Mandarin Fish DDX41 with STING Evokes type I Interferon Responses Inhibiting Ranavirus Replication. Viruses. 2022,15(1):58.

He J, et al. Hypoxia triggers the outbreak of infectious spleen and kidney necrosis virus disease through viral hypoxia response elements. Virulence. 2022, 13(1):714-726.

Wang Y, et al. Environmental risk characteristics of bacterial antibiotic resistome in Antarctic krill. Ecotoxicol Environ Saf. 2022, 232:113289.

Zeng R, et al. Development of a gene-deleted live attenuated candidate vaccine against fish virus (ISKNV) with low pathogenicity and high protection. iScience. 2021, 24(7):102750.

He J, et al. Evidence for a Novel Antiviral Mechanism of Teleost Fish: Serum-Derived Exosomes Inhibit Virus Replication through Incorporating Mx1 Protein. Int J Mol Sci. 2021, 22(19):10346.

Wang Y, et al. Whole genome sequencing and comparative genomic analyses of Planococcus alpniumensis MSAK28401T, a new species isolated from Antarctic krill. BMC Microbiol. 2021, 21(1):288.

Liu C, et al. Roles of extracellular matrix components in Tiger frog virus attachment to fathead minnow (Pimephales promelas) cells. Fish Shellfish Immunol. 2020, 107(Pt A):9-15.

Qin XW, et al. The roles of mandarin fish STING in innate immune defense against Infectious spleen and kidney necrosis virus infections. Fish Shellfish Immunol. 2020, 100:80-89.

He J, et al. Tiger frog virus ORF104R interacts with cellular VDAC2 to inhibit cell apoptosis. Fish Shellfish Immunol. 2019, 92:889-896.

Guo CJ, et al. The immune evasion strategies of fish viruses. Fish Shellfish Immunol. 2019, 86:772-784.

He J, et al. Molecular cloning of Y-Box binding protein-1 from mandarin fish and its roles in stress-response and antiviral immunity. Fish Shellfish Immunol. 2019, 93:406-415.

Zhou L, Lin KT, Gan L, Sun JJ, Guo CJ, Liu L, Huang XD. Intestinal Microbiota of Grass Carp Fed Faba Beans: A Comparative Study. Microorganisms. 2019, 17;7(10):465.

He J, et al. Identification and functional analysis of the Mandarin fish (Siniperca chuatsi) hypoxia-inducible factor-1α involved in the immune response. Fish Shellfish Immunol. 2019, 92:141-150.

Lin YF, et al. Deletion of the Infectious spleen and kidney necrosis virus ORF069L reduces virulence to mandarin fish Siniperca chuatsi. Fish Shellfish Immunol. 2019, 95:328-335.

 

五、教学及研究生培养

1. 本科教学:先后负责新奥门31999专业必修课:《细胞生物学》、《细胞生物学实验》、《细胞与分子生物学》、《细胞与分子生物学实验》等教学工作。并指导新奥门31999本科生学士学位论文、大创项目等;

 2. 研究生培养:独立招收硕士研究生,博士研究生