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    聞曉波

聞曉波





男,博士,中共黨員;教授;博士/碩士研究生導師;

海南省拔尖人才;海南省地方豬産業技術體系崗位科學家

郵箱:xiaobo_wen@hainanu.edu.cn

通訊地址:海南省海口市美蘭區人民大道58郵政編碼570228




研究領域

動物傳染病的預防與控制




教育背景

20039 - 20066月 中國農業科學院哈爾濱獸醫研究所 預防獸醫專業 博士

20009 - 20036 黑龍江八一農墾大學 預防獸醫專業 碩士

19969 - 20006黑龍江八一農墾大學 動物醫學專業 學士




工作經曆

20067 - 20088月 黑龍江八一農墾大學動物科技學院 講師

20089 - 200812月 黑龍江八一農墾大學動物科技學院 副教授

20091 - 20126月 美國國立衛生研究院(NIH) 博士後

20127 - 20179月 黑龍江八一農墾大學動物科技學院 副教授

20179 - 201910月 黑龍江八一農墾大學動物科技學院 教授

201911 - 20238月 365英国上市官网在线動物科技學院 教授

20239 - 至今 365英国上市官网在线熱帶農林學院 教授




講授課程:

本科:獸醫傳染病學、獸醫微生物學、獸醫生物制品學、獸醫學概論

研究生:獸醫臨床病例分析與研讨專題、文獻解析專題、獸醫生物制品學專題




科研項目

1. 國家自然科學地區基金項目,輪狀病毒NSP2NSP5決定病毒質裝配及RNA包裝的關鍵互作位點定位及機制研究、2024/1-2027/1232萬元、在研、主持。

2. 海南省農業農村廳海南省地方豬現代農業産業技術體系專項,2022/1-2025/1296萬元。

3. 365英国上市官网在线科研啟動項目,豬塞内卡病毒調控IFN信号轉導通路及病毒緻弱機制研究、2020/5-2025/5100萬元,在研,主持。

4. 海南省自然科學基金項目,豬塞内卡病毒3C蛋白調控IFN信号轉導通路的關鍵結構域及其作用機制、2020/12-2023/127萬元,已結題,主持。

5. 國家自然科學基金青年項目,牛UK株輪狀病毒拮抗IFN信号轉導通路機制的研究、2013/1-2015/1224萬元、已結題、主持。

6. 黑龍江省科學基金面上項目,異源宿主細胞内牛輪狀病毒NSP1蛋白調控IFN免疫應答機制、2015/7-2018/710萬元、已結題、主持。

7. 博士後研究人員落戶黑龍江科研啟動資助項目Caco-2細胞網格蛋白表達對輪狀病毒侵入的影響、2014/1-2016/125萬元、已結題、主持。




發表論文

[1] Zhao S M, Cui H Q, Hu Z R, Du L, Ran X H, Wen X B*. Senecavirus A Enhances Its Adaptive Evolution via Synonymous Codon Bias Evolution [J]. Viruses-Basel, 2022, 14(5): 1055.

[2] Zhang X, Cui K, Wen X, Li L, Yu X, Li B, Lin H, He H, Wang F. The Association between Gut Microbiome Diversity and Composition and Heat Tolerance in Cattle [J]. Microorganisms, 2022, 10(8): 1672.

[3] Lv Q, Ran X, Qiu H, Zhao S, Hu Z, Wang J, Ni H, Wen X*. Seroprevalence of pullorum disease in chicken across mainland China from 1982 to 2020: A systematic review and meta-analysis [J]. Res Vet Sci, 2022, 152: 156-66.

[4] Yang Y, Teng Z, Lu Y, Luo X, Mu S, Ru J, Zhao X, Guo H, Ran X, Wen X*, Sun S*. Enhanced immunogenicity of foot and mouth disease DNA vaccine delivered by PLGA nanoparticles combined with cytokine adjuvants [J]. Res Vet Sci, 2021, 136: 89-96.

[5] Gong Q L, Chen Y, Tian T, Wen X, Li D, Song Y H, Wang Q, Du R, Zhang X X. Prevalence of bovine tuberculosis in dairy cattle in China during 2010-2019: A systematic review and meta-analysis [J]. PLoS Negl Trop Dis, 2021, 15(6): e0009502.

[6] Dong H, Lu Y L, Zhang Y, Mu S Y, Wang N, Du P, Zhi X Y, Wen X B, Wang X X, Sun S Q, Zhang Y M, Guo H C. A Heat-Induced Mutation on VP1 of Foot-and-Mouth Disease Virus Serotype O Enhanced Capsid Stability and Immunogenicity [J]. J Virol, 2021, 95(16): e0017721.

[7] Wen X, Tong X, Wang M, Wang J, Ni H, Ran X. Protective immunity following vaccination with a recombinant multiple-epitope protein of bovine herpesvirus type I in a rabbit model [J]. Appl Microbiol Biotechnol, 2020, 104: 3011-23.

[8] Ni H, Jia X X, Wang J, Ran X, Wen X*. Mapping a highly conserved linear neutralizing epitope at the N-terminus of the gD glycoprotein of bovine herpesvirus type I using a monoclonal antibody [J]. Microb Pathog, 2020, 138: 103815.

[9] Mu S, Abdullah S W, Zhang Y, Han S, Guo H, Li M, Dong H, Xu J, Teng Z, Wen X, Sun S*. Development of a novel SYBR green I-based quantitative RT-PCR assay for Senecavirus A detection in clinical samples of pigs [J]. Mol Cell Probes, 2020, 53: 101643.

[10] Lu Y, Dong H, Li J, Li L, Wang M, Liu H, Teng Z, Zhang Y, Jin Y, Guo H, Yang Y, Wen X*, Sun S*. Enhanced Protective Immune Response of Foot-and-mouth Disease Vaccine through DNA-loaded Virus-like Particles [J]. Microb Pathog, 2020, 143: 104130.

[11] Wang X, Bi Y, Ran X, Tong X, Ni H, Wen X*. Mapping a highly conserved linear neutralizing epitope on gD glycoprotein of bovine herpesvirus type I using a monoclonal antibody [J]. J Vet Med Sci, 2019, 81(5): 780-6.

[12] Ran X, Yang Z, Bai M, Zhang Y, Wen X, Guo H, Sun S. Development and validation of a competitive ELISA based on bacterium-original virus-like particles of serotype O foot-and-mouth disease virus for detecting serum antibodies [J]. Appl Microbiol Biotechnol, 2019, 103(7): 3015-24.

[13] Ran X, Meng X Z, Geng H L, Chang C, Chen X, Wen X*, Ni H*. Generation of porcine Pasteurella multocida ghost vaccine and examination of its immunogenicity against virulent challenge in mice [J]. Microb Pathog, 2019, 132: 208-14.

[14] Ran X, Cheng J, Wang M, Chen X, Wang H, Ge Y, Ni H, Zhang X X*, Wen X*. Brucellosis seroprevalence in dairy cattle in China during 2008-2018: A systematic review and meta-analysis [J]. Acta Trop, 2019, 189: 117-23.

[15] Ran X, Chen X, Wang S, Chang C, Wen X, Zhai J, Ni H. Preparation of porcine enterotoxigenic Escherichia coli (ETEC) ghosts and immunogenic analysis in a mouse model [J]. Microb Pathog, 2019, 126: 224-30.

[16] Ran X, Chen X, Ma L, Wen X, Zhai J, Wang M, Tong X, Hou G, Ni H. A systematic review and meta-analysis of the epidemiology of bovine viral diarrhea virus (BVDV) infection in dairy cattle in China [J]. Acta Trop, 2019, 190: 296-303.

[17] Ran X, Yang Z, Shao G, Wen X, Liu S, Ni H. Avian Salmonella enteritidis serovar Enteritidis with ClpP deletion is attenuated and highly immunogenic in chickens [J]. Turkish Journal of Veterinary and Animal Sciences, 2018, 42(4): 269-76.

[18] Ran X, Chen X, Wang M, Cheng J, Ni H, Zhang X X*, Wen X*. Brucellosis seroprevalence in ovine and caprine flocks in China during 2000-2018: a systematic review and meta-analysis [J]. BMC Vet Res, 2018, 14(1): 393.

[19] Wen X, Sun J, Zhang Y, Cao S, Ran X, Ni H. Identification and genetic characterization of bovine parainfluenzavirus type 3 genotype c strain isolated from cattle in western China [J]. Turkish Journal of Veterinary and Animal Sciences, 2017, 41: 180-6.

[20] Wen X B, Jiang H T, Zhang Y L, Lang X Y, Liu J, Ni H B. Rapid and Sensitive Diagnosis of Cattle Anaplasmosis by Loop-Mediated Isothermal Amplification (LAMP) [J]. Pakistan Veterinary Journal, 2016, 36(2): 174-8.

[21] Wen X, Wei X, Ran X*, Ni H, Cao S, Zhang Y. Immunogenicity of porcine P[6], P[7]-specific truncated VP8* rotavirus subunit vaccines with a tetanus toxoid universal T cell epitope [J]. Vaccine, 2015, 33(36): 4533-9.

[22] Wen X, Cao D, Jones R W, Hoshino Y, Yuan L. Tandem truncated rotavirus VP8* subunit protein with T cell epitope as non-replicating parenteral vaccine is highly immunogenic [J]. Human vaccines & immunotherapeutics, 2015, 11(10): 2483-9.

[23] Ma Y, Wen X, Hoshino Y, Yuan L*. Cloning and nucleotide sequence analyses of 11 genome segments of two American and one British equine rotavirus strains [J]. Veterinary microbiology, 2015, 176(1-2): 172-8.

[24] Wen X, Wen K, Cao D, Li G, Jones R W, Li J, Szu S, Hoshino Y, Yuan L*. Inclusion of a universal tetanus toxoid CD4(+) T cell epitope P2 significantly enhanced the immunogenicity of recombinant rotavirus DeltaVP8* subunit parenteral vaccines [J]. Vaccine, 2014, 32(35): 4420-7.

[25] Wen X, Cao D, Jones R W, Li J, Szu S, Hoshino Y*. Construction and characterization of human rotavirus recombinant VP8* subunit parenteral vaccine candidates [J]. Vaccine, 2012, 30(43): 6121-6.

[26] Long-Croal L M, Wen X, Ostlund E N, Hoshino Y*. Concentration of acrylamide in a polyacrylamide gel affects VP4 gene coding assignment of group A equine rotavirus strains with P[12] specificity [J]. Virology journal, 2010, 7: 136.



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