
李連峰:男,漢族,1986年11月出生,內(nèi)蒙古清水河人,中國共產(chǎn)黨黨員,博士,研究員,中國農(nóng)業(yè)科學院“優(yōu)秀青年英才”,中國農(nóng)業(yè)科學院哈爾濱獸醫(yī)研究所博士研究生導師,兼任山西農(nóng)業(yè)大學博士研究生導師。
多年專注于嚴重危害養(yǎng)豬業(yè)的豬瘟病毒(CSFV)和非洲豬瘟病毒(ASFV),圍繞二者共有的生物學特性“免疫逃逸”,開展宿主的抗病毒機制以及兩種病毒的病原學和致病機制研究。獲得省部級獎勵3項。主持國家自然科學基金3項(面上項目2項、青年基金1項)、黑龍江省自然科學基金3項(重點項目、優(yōu)秀青年項目和青年項目各1項)、中國博士后科學基金、黑龍江省博士后科研啟動金(一等)和中國農(nóng)業(yè)科學院基本科研業(yè)務費專項,共9項,累計經(jīng)費612萬元。以第一或通訊(含共同)作者身份在Nucleic Acids Res、PLoS Pathog(2篇)、Emerg Microbes Infect(3篇)、J Virol(8篇)和Cell Prolif等雜志發(fā)表SCI論文21篇。
1. 聯(lián)系方式
研究方向:動物疫苗與分子免疫學
電話:0451-51051784
郵箱:lilianfeng@caas.cn
通訊地址:黑龍江省哈爾濱市香坊區(qū)哈平路678號
2. 教育經(jīng)歷
2006.09-2010.07 內(nèi)蒙古民族大學 動物醫(yī)學 學士學位
2010.09-2013.07 黑龍江八一農(nóng)墾大學 預防獸醫(yī)學 碩士學位
2013.09-2016.06 中國農(nóng)業(yè)科學院研究生院 預防獸醫(yī)學 博士學位
3. 工作經(jīng)歷
2016.07-2018.12 中國農(nóng)業(yè)科學院哈爾濱獸醫(yī)研究所 助理研究員
2016.09-2019.07 中國農(nóng)業(yè)科學院哈爾濱獸醫(yī)研究所 博士后
2019.01-2023.12 中國農(nóng)業(yè)科學院哈爾濱獸醫(yī)研究所 副研究員
2024.01-至今 中國農(nóng)業(yè)科學院哈爾濱獸醫(yī)研究所 研究員
4. 承擔項目
(1). 黑龍江省自然科學基金委員會:可用于無針注射的豬重要病毒病新型疫苗的創(chuàng)制及免疫保護機制研究(重點項目)(ZD2025C008,2026.01-2028.12),50萬元;
(2). 中國農(nóng)業(yè)科學院基本科研業(yè)務費專項:非洲豬瘟病毒病毒工廠形成的分子機制(Y2025YC117,2024.01-2028.12),400萬元;
(3). 國家自然科學基金委員會:非洲豬瘟病毒A151R蛋白調(diào)控病毒工廠形成的分子機制(面上項目)(32372983,2024.01-2027.12),50萬元;
(4). 國家自然科學基金委員會:I7L蛋白對非洲豬瘟病毒適應野豬肺泡巨噬細胞系的調(diào)控作用及其機制(面上項目)(32072855,2021.01-2024.12),58萬元;
(5). 國家自然科學基金委員會:豬瘟病毒拮抗干擾素誘導蛋白OASL抗病毒作用的分子機制(青年項目)(31702220,2018.01-2020.12),24萬元;
(6). 黑龍江省博士后科研啟動金:lncRNA_2522抑制豬瘟病毒復制的分子機制(2019-2021),10萬元;
(7). 黑龍江省自然科學基金委員會:非洲豬瘟病毒編碼蛋白A151R調(diào)控病毒復制的分子機制(優(yōu)秀青年)(YQ2022C043,2022.07-2025.07),10萬元;
(8). 中國博士后科學基金委員會:干擾素誘導蛋白RNF114抑制豬瘟病毒復制的機制(面上項目)(2017M620979,2018.01-2019.7),5萬元;
(9). 黑龍江省自然科學基金委員會:豬瘟病毒逃逸OASL抗病毒作用的分子機制(青年項目)(QC2017027,2017.10-2020.10),5萬元;
(10). 國家自然科學基金委員會:抗豬瘟病毒干擾素刺激基因的鑒定及其抗病毒分子機制的研究(面上項目)(31572450,2016.01-2019.12),76萬元;
5. 代表論文與著作
(1). Liu D1, Cao M1, Wang Y, Yan Y, Li M, Zhai H, Wang T, Lan J, Li Y, Liao F*, Sun Y*, Li LF*, Qiu HJ*. Rinderine suppresses African swine fever virus replication in porcine alveolar macrophages by dual targeting of membrane-associated profilin 1 and phosphatidylethanolamine. Emerg Microbes Infect. 2025, 2574305.
(2). Liu D1, Li LF1, Zhai H, Wang T, Lan J, Cao M, Yao M, Wang Y, Li J, Song X, Sun Y, Qiu HJ. Resveratrol inhibits African swine fever virus replication by exerting antiviral and antioxidative stress activities via the Nrf2 signaling pathway. Emerg Microbes Infect. 2025, 2469662.
(3). Ren H1, Wang Y1, Li LF1, Shi LF, Ma YH, Fan JH, Pan XY, Shao HC, Zhang Y, Han S, Wan B, Qiu HJ, Zhang GP, Li S, He WR. The African swine fever virus p22 inhibits the JAK-STAT signaling pathway by promoting the TAX1BP1-mediated degradation of the type I interferon receptor. PLoS Pathog. 2025, 21(7):e1013319.
(4). Wang Y, Peng D, Li M, Yao M, Li T, Li S, Qiu H-J*, Li LF*. Organoids: physiologically relevant ex vivo models for viral disease research. J Virol. 2025, 29:e0113225.
(5). Quan C1, Nie K1, Ma D1, Su C1, Li LF1, Zheng W, Yin C, Wang Y, Yang P, Peng D, Liu X, Li W, Liu W, Shan C, Zheng J, Liu D, Zhang H, Carr MJ, Gao GF, Qi J, Shi W. Molecular mechanism of potently neutralizing human monoclonal antibodies against severe fever with thrombocytopenia virus infection. J Virol. 2025, 99(7):e0053325.
(6). Li T, Peng D, Yao M, Li M, Wang Y, Li S, Zhang D, Yang B, Qiu HJ, Li LF*. Immune organoids: emerging platforms for modeling and analyzing human adaptive immunity. Front Immunol. 2025, 16:1632117.
(7). Li M1, Liu X1, Peng D1, Yao M, Wang T, Wang Y, Cao H, Wang Y, Dai J, Luo R, Deng H, Li J, Luo Y, Li Y, Sun Y*, Li S*, Qiu HJ*, Li LF*. The I7L protein of African swine fever virus is involved in viral pathogenicity by antagonizing the IFN-γ-triggered JAK-STAT signaling pathway through inhibiting the phosphorylation of STAT1. PLoS Pathog. 2024, 20(9):e1012576.
(8). Liu R1, Sun J1, Li LF1, Cheng Y, Li M, Fu L, Li S, Peng G, Wang Y, Liu S, Qu X, Ran J, Li X, Pang E, Qiu HJ, Wang Y, Qi J*, Wang H*, Gao GF*. Structural basis for difunctional mechanism of m-AMSA against African swine fever virus pP1192R. Nucleic Acids Res. 2024, 52(18):11301-11316.
(9). Wang T1, Luo R1, Zhang J, Lan J, Lu Z, Zhai H, Li LF*, Sun Y*, Qiu HJ*. The African swine fever virus MGF300-4L protein is associated with viral pathogenicity by promoting the autophagic degradation of IKKβ and increasing the stability of IκBα. Emerg Microbes Infect. 2024, 13(1):2333381.
(10). Peng D, Li M, Yu Z, Yan T, Yao M, Li S, Liu Z*, Li LF*, Qiu HJ*. Synergy between pluripotent stem cell-derived macrophages and self-renewing macrophages: Envisioning a promising avenue for the modelling and cell therapy of infectious diseases. Cell Prolif. 2024, 3:e13770.
(11). Yao M, Li M, Peng D, Wang Y, Li S, Zhang D, Yang B, Qiu HJ*, Li LF*. Unraveling Macrophage Polarization: Functions, Mechanisms, and "Double-Edged Sword" Roles in Host Antiviral Immune Responses. Int J Mol Sci. 2024, 25(22):12078.
(12). Chen X1, Li LF1, Yang ZY, Li M, Fan S, Shi LF, Ren ZY, Cao XJ, Zhang Y, Han S, Wan B, Qiu HJ*, Zhang G*, He WR*. The African swine fever virus I10L protein inhibits the NF-κB signaling pathway by targeting IKKβ. J Virol. 2023, 97(6):e0056923.
(13). Li M, Peng D, Cao H, Yang X, Li S, Qiu HJ*, Li LF*. The Host Cytoskeleton Functions as a Pleiotropic Scaffold: Orchestrating Regulation of the Viral Life Cycle and Mediating Host Antiviral Innate Immune Responses. Viruses. 2023, 15(6):1354.
(14). Sun M, Yu S, Ge H, Wang T, Li Y, Zhou P, Pan L, Han Y, Yang Y, Sun Y, Li S, Li LF*, Qiu HJ*. The A137R Protein of African Swine Fever Virus Inhibits Type I Interferon Production via the Autophagy-Mediated Lysosomal Degradation of TBK1. J Virol. 2022, 96(9):e0195721.
(15). Zhou P1, Li LF1, Zhang K, Wang B, Tang L, Li M, Wang T, Sun Y*, Li S*, Qiu HJ*. Deletion of the H240R Gene of African Swine Fever Virus Decreases Infectious Progeny Virus Production Due to Aberrant Virion Morphogenesis and Enhances Inflammatory Cytokine Expression in Porcine Macrophages. J Virol. 2022, 96(3):e0166721.
(16). Zhang Y, Zhang H, Zheng G, Yang Q, Yu S, Wang J, Li S, Li LF*, Qiu HJ*. Porcine RING finger protein 114 inhibits classical swine fever virus replication via the K27-linked polyubiquitination of viral NS4B. J Virol. 2019, 93(21): e01248-19.
(17). Li LF, Yu J, Zhang Y, Yang Q, Li Y, Zhang L, Wang J, Li S, Luo Y, Sun Y, Qiu HJ*. Interferon-inducible oligoadenylate synthetase-like protein acts as an antiviral effector against classical swine fever virus via the MDA5-mediated type I interferon signaling pathway. J Virol. 2017, 91(11): e01514-16.
(18). Li LF, Yu J, Li Y, Wang J, Li S, Zhang L, Xia SL, Yang Q, Wang X, Yu S, Luo Y, Sun Y, Zhu Y, Munir M, Qiu HJ*. Guanylate-binding protein 1, an interferon-induced GTPase, exerts an antiviral activity against classical swine fever virus depending on its GTPase activity. J Virol. 2016, 90(9):4412-4426.
(19). Zhang Y1, Li LF1, Munir M, Qiu HJ*. RING-domain E3 ligase-mediated host-virus interactions: orchestrating immune responses by the host and antagonizing immune defense by viruses. Front Immunol. 2018, 9:1083-1094.
(20). Wang X1, Li Y1, Li LF1, Shen L, Zhang L, Yu J, Luo Y, Sun Y, Li S, Qiu HJ*. RNA interference screening of interferon-stimulated genes with antiviral activities against classical swine fever virus using a reporter virus. Antiviral Res. 2016, 128:49-56.
(21). Yang Q1, Bai SY1, Li LF, Li S, Zhang Y, Munir M, Qiu HJ*. Human Hemoglobin Subunit Beta Functions as a Pleiotropic Regulator of RIG-I/MDA5-Mediated Antiviral Innate Immune Responses. J Virol. 2019, 93(16):e00718-19.
(22). Zheng G, Li LF, Zhang Y, Qu L, Wang W, Li M, Yu S, Zhou M, Luo Y, Sun Y, Munir M, Li S, Qiu HJ. MERTK is a host factor that promotes classical swine fever virus entry and antagonizes innate immune response in PK-15 cells. Emerg Microbes Infect. 2020, 9(1):571-581.
(23). Li Y, Li LF, Yu S, Xiao W, Zhang L, Yu J, Xie L, Qiu HJ*. Applications of replicating-competent reporter-expressing viruses in diagnostic and molecular virology. Viruses, 2016, 8(5): 127.
(24). Wang J, Chen S, Liao Y, Zhang E, Feng S, Yu S, Li LF, He WR, Li Y, Luo Y, Sun Y, Zhou M, Wang X, Munir M, Li S, Qiu HJ*. Mitogen-activated protein kinase kinase 2, a novel E2-interacting protein, promotes the growth of classical swine fever virus via attenuation of the JAK-STAT signaling pathway. J Virol. 2016, 90(22):10271-12083.
6. 獲得獎勵
(1). 中國農(nóng)業(yè)科學院2025年度優(yōu)秀碩士學位論文(指導教師:李連峰;論文作者:李美霖;培養(yǎng)單位:哈獸研),2026年;
(2). 黑龍江省科學技術獎二等獎-自然科學類——豬瘟病毒感染的分子調(diào)控機制及防控理論創(chuàng)新,仇華吉,李素,李永鋒,李連峰,孫元,羅玉子,2019年;
(3). 大北農(nóng)科技獎,豬瘟基因工程活疫苗(rAdV-SFV-E2株)的創(chuàng)制,仇華吉,孫元,羅玉子,李永鋒,李娜,王牟平,李偉杰,李彥偉,李素,李連峰,2019年;
(4). 中國農(nóng)業(yè)科學院杰出科技創(chuàng)新獎——豬瘟病毒復制的分子調(diào)控機制與防控理論創(chuàng)新,仇華吉,李素,李永鋒,李連峰,孫元,羅玉子,2018年;
(5). 中國農(nóng)業(yè)科學院優(yōu)秀博士后,2017年;
(6). 哈獸研“特等”獎學金,2017年;
(7). “干擾素誘導蛋白OASL通過增強MDA5介導的I型干擾素信號發(fā)揮抗豬瘟病毒效應”,第二屆全國病毒學青年學者研討會“優(yōu)秀報告”獎,2016年;
(8). 全國獸醫(yī)學博士生論壇“學術優(yōu)秀創(chuàng)新獎”,2016年;
(9). 北京市普通高等學校優(yōu)秀畢業(yè)生,2016年;
(10). 中國農(nóng)業(yè)科學院研究生院優(yōu)秀畢業(yè)生,2016年;
(11). 哈獸研“特等”獎學金,2016年;