论文专著:
发表论文70多篇,其中SCI收录10篇。
代表性英文论文: (标* 为通讯作者)
[1]Nian-Zhang Zhang, Wen-Hui Li*, Hai-Jie Yu, Yin-Ju Liu, Hong-Tao Qin,Wan-Zhong Jia, Bao-Quan Fu*. Novel study on the prevalence of T. spiralis in farmed American minks (Neovison vison) associated with exposure to wild rats (Rattus norvegicus) in China. Zoonoses Public Health. 2022, 69(8): 938-943
[2]Li WH*, Yang Y, Zhang NZ, Wang JK, Liu YJ, Li L, Yan HB, Jia WZ, Fu BQ*. Comparative transcriptome analyses of the developmental stages of Taenia multiceps. Front Vet Sci. 2021, 8: 677045
[3]Jin QW, Zhang NZ, Li WH, Qin HT, Liu YJ, Ohiolei JA, Niu DY, Yan HB, Li L, Jia WZ, Song MX*, Fu BQ*. Trichinella spiralis thioredoxin peroxidase 2 regulates protective Th2 immune response in mice by directly inducing alternatively activated macrophages. Front Immunol. 2020,11: 2015
[4]M.M. Gumaa, Xiaoan Cao, Zhaocai Li, Zhongzi Lou, Nianzhang Zhang, Zhijun Zhang, Jizhang Zhou*, Baoquan Fu*. Specific detection and differentiation between Brucella melitensis and Brucella abortus by a duplex recombinase polymerase amplification assay. Front Vet Sci. 2020,7: 539679
[5]Muku RJ, Yan HB, Ohiolei JA, Saaid AA, Ahmed S, Jia WZ, Fu BQ*. Molecular identification of Taenia hydatigena from sheep in Khartoum, Sudan. Korean J Parasitol. 2020,58(1): 93-97
[6]Li TT, Wang JL, Zhang NZ, Li WH, Yan HB, Li L, Jia WZ, Fu BQ*. Rapid and visual detection of Trichinella Spp. using a lateral flow strip-based recombinase polymerase amplification (LF-RPA) assay. Front Cell Infect Microbiol. 2019, 9:1
[7]Qu Z, Li W, Zhang N, Li L, Yan H, Li T, Cui J, Yang Y, Jia W, Fu B*. Comparative genomic analysis of Trichinella spiralis reveals potential mechanisms of adaptive evolution. Biomed Res Int. 2019: 2948973.
[8]Gumaa MM, Cao X, Li Z, Lou Z, Zhang N, Zhang Z, Zhou J*, Fu B*. Establishment of a recombinase polymerase amplification (RPA) assay for the detection of Brucella spp. infection. Mol Cell Probes. 2019, (47): 101434.
[9]Zhang NG*, Li WH, Fu BQ*. Vaccines against Trichinella spiralis: Progress, challenges, and future prospects. Transbound Emerg Dis. 2018, 65(6): 1447-1458.
[10]Li W, Liu B, Yang Y, Ren Y, Wang S, Liu C, Zhang N, Qu Z, Yang W, Zhang Y, Yan H, Jiang F, Li L, Li S, Jia W, Yin H, Cai X, Liu T, McManus DP*, Fan W*, Fu B*. The genome of tapeworm Taenia multiceps sheds light on understanding parasitic mechanism and control of coenurosis disease. DNA Research. 2018, 25 (5): 499-510.
[11]Cao X, Li S, Li Z, Liu Z, Ma J, Lou Z, Zhou J, Liu Y, Jing Z*, Fu B*. Enzootic situation and molecular epidemiology of Brucella in livestock from 2011 to 2015 in Qingyang, China. Emerging Microbes & Infections, 2018, 7(1): 58.
[12]Zhang NZ, Liu JY, Li WH, Li L, Qu ZG, Li TT, Cui JM, Yang Y, Jia WZ, Fu BQ*. Cloning and characterization of thioredoxin peroxidases from Trichinella spiralis. Veterinary Parasitology. 2016, 231: 53-58.
[13]Liu JY, Zhang NZ, Li WH, Li L, Yan HB, Qu ZG, Li TT, Cui JM, Yang Y, Jia WZ, Fu BQ*. Proteomic analysis of differentially expressed proteins in the three developmental stages of Trichinella spiralis. Veterinary Parasitology. 2016, 231: 32-38.
[14]Zi-gang Qu, Xue-ting Ma, Wen-hui Li, Nian-zhang Zhang, Long Yue, Jian-min Cui, Jian-ping Cai, Wan-zhong Jia, Bao-quan Fu*. Molecular characterization of a cathepsin F-like protease in Trichinella spiralis. Parasites & Vectors. 2015, 8: 652.
[15]Cui JM, Zhang NZ, Li WH, Yan HB, Fu BQ*. Cloning, identification, and bioinformatics analysis of a putative aquaporin TsAQP from Trichinella spiralis. Genetics and Molecular Research. 2015, 14(4): 12699-12709.
[16]Li WH, Qu ZG, Zhang NZ, Yue L, Jia WZ, Luo JX, Yin H, Fu BQ*. Molecular characterization of enolase gene from Taenia multiceps. Research in Veterinary Science. 2015, 102: 53-58.
[17]Fu BQ, Li WH, Gai WY, Yao JX, Qu ZG, Xie ZZ, Wang YH, Zhang DL, Blaga R. Detection of anti-Trichinella antibodies in serum of experimentally-infected swine by immunochromatographic strip. Veterinary Parasitology. 2013, 194(2-4): 125-127.
[18]Fu BQ, Liu MY, Yao CY, Li WH, Li YG, Wang YH, Wu XP, Zhang DL, Cai XP, Blaga R, Boireau P. Species identification of Trichinella isolates from China. Veterinary Parasitology. 2009, 159(3-4): 214-217.
[19]Fu BQ, Liu MY, Kapel CM, Meng XP, Lu Q, Wu XP, Chen QJ, Boireau P. Molecular cloning of a cDNA encoding a putative cuticle collagen of Trichinella spiralis. Veterinary Parasitology. 2005, 132(1-2): 31-35.
[20]Fu BQ, Liu MY, Kapel CM, Meng XP, Lu Q, Wu XP, Chen QJ, Boireau P. Cloning and analysis of a novel cDNA from Trichinella spiralis encoding a protein with an FYVE zinc finger domain. Veterinary Parasitology. 2005, 132(1-2): 27-30.
中文代表性论文: (标* 为通讯作者)
[1]刘垠鞠,李文卉,岳龙,张念章,金启旺,秦洪涛,贾万忠,姚强,付宝权*.应用TmAdh3重组蛋白建立绵羊脑多头蚴病间接ELISA诊断方法的研究. 中国兽医科学,2023,53(9):1082-1088
[2]李文卉,王建魁,张念章,曲自刚,刘垠鞠,贾万忠,付宝权*. 多头带绦虫成虫和幼虫的iTRAQ蛋白质组学分析. 中国人兽共患病学报,2022,38(12): 1051-1056
[3]杨洋, 李文卉, 张念章, 李婷婷,李立, 闫鸿斌, 贾万忠,付宝权*. 多头带绦虫蛋白激酶A催化亚基基因的克隆及原核表达[J]. 中国畜牧兽医,2017,44 (10):2858-2864.
[4]杨洋,付宝权*. 动物寄生性蠕虫基因组学研究进展[J]. 畜牧兽医学报,2017,48 (6):979-989.
[5]李文卉,付宝权*. 多头带绦虫的分类研究进展[J]. 中国兽医学报,2016,36(8): 1450-1454.
[6]李文卉,付宝权*. 羊绦虫蚴病免疫学诊断研究进展[J]. 中国兽医学报,2016,36(5): 885-888.
[7]岳龙,李文卉,张念章,曲自刚,贾万忠,殷宏,付宝权*.多头带绦虫粘着蛋白TmAdh1基因的克隆及原核表达[J]. 中国兽医科学,2015,45(02):126-131.
[8]崔建敏,张念章,付宝权*.寄生虫水孔蛋白研究进展[J]. 畜牧兽医学报,2015,46(5):689-695.
[9]岳龙,付宝权*. 带科绦虫主要宿主保护性抗原及其分子生物学特性[J].中国寄生虫学与寄生虫病杂志,2014,32(6):469-473.
[10]盖文燕,李文卉,张念章,曲自刚,付宝权*. 旋毛虫丝氨酸蛋白酶抑制剂基因TsSerpin的克隆及序列分析[J].中国兽医科学,2014,44(12):1211-1216.
[11]刘静宜,李文卉,曲自刚,高小磊,岳龙,孙树民,付宝权*. 旋毛虫硫氧还蛋白过氧化物酶基因的克隆与生物信息学分析[J].中国兽医科学,2014,44(4):331-339.
[12]曲自刚,付宝权*. 寄生性蠕虫组织蛋白酶F研究进展[J].中国寄生虫学与寄生虫病杂志,2013,31(5):406-409.
[13]谢志宙,李文卉,曲自刚,刘静宜,高小磊,岳龙,张德林,付宝权*. 旋毛虫组织蛋白酶B基因TsCB1的克隆与生物信息学分析[J].中国兽医科学,2013,43(7):661-667.
[14]曲自刚,李文卉,谢志宙,刘静宜,王艳华,张德林,付宝权*,牛廷献. 旋毛虫半胱氨酸蛋白酶基因TsCP1的克隆与序列分析[J].中国兽医科学,2012,42(7):665-671.
[15]姚菊霞,付宝权*. 寄生性线虫半胱氨酸蛋白酶抑制剂研究进展[J]. 中国寄生虫学与寄生虫病杂志,2012,30(2):70-75.
[16]李文卉,王建魁,盖文燕,姚菊霞,曲自刚,贾万忠,罗建勋,R. Blaga,付宝权*. 多头带绦虫脑多头蚴cDNA表达文库的构建及初步分析[J]. 寄生虫与医学昆虫学报,2011,18(3):139-146.
[17]姚菊霞,李文卉,盖文燕,曲自刚,谢志宙,王艳华,张德林,付宝权*. 旋毛虫半胱氨酸蛋白酶抑制剂基因TsCystatin1的克隆及序列分析[J]. 中国兽医科学,2011,41(6):569-574.
[18]李文卉,盖文燕,姚菊霞,曲自刚,贾万忠,罗建勋,R. Blaga,付宝权*. 多头带绦虫甘肃分离株线粒体NADH脱氢酶亚基I基因片段差异分析,中国兽医学报,2011,31(5):663-667.
[19]李文卉,盖文燕,姚菊霞,曲自刚,贾万忠,罗建勋,R. Blaga,付宝权*. 多头带绦虫Tm16与Tm18抗原基因的克隆及原核表达[J],中国预防兽医学报,2011,33(1):76-79.
[20]李永光,李文卉,盖文燕,姚菊霞,曲自刚,贾万忠,Radu Blaga,付宝权*. 多头带绦虫硫氧还蛋白过氧化物酶基因的克隆及序列分析[J]. 中国寄生虫学与寄生虫病杂志,2011,29(1):67-70.
[21]王鸿盛,付宝权*. 旋毛虫p53糖蛋白抗原研究进展[J],动物医学进展,2011,32(1):81-85.
[22]王鸿盛,李文卉,盖文燕,姚菊霞,曲自刚,王艳华,张德林,薛慧文,付宝权*. 旋毛虫TsP53重组蛋白对小鼠的免疫保护性[J]. 中国兽医科学,2010,40(10):1023-1027.
[23]李文卉,付宝权*. 脑多头蚴病研究进展[J],动物医学进展,2010,31(10):87-91.
[24]李文卉,盖文燕,姚菊霞,曲自刚,王艳华,张德林,贾万忠,罗建勋,R. Blaga,付宝权*. 多头带绦虫甘肃分离株COI基因部分序列比较分析[J]. 寄生虫与医学昆虫学报,2010,17(3):129-134.
[25]盖文燕,李文卉,王鸿盛,姚菊霞,曲自刚,王艳华,张德林,付宝权*. 旋毛虫丝氨酸蛋白酶抑制因子基因的克隆与原核表达[J]. 中国兽医科学,2010,40(5):470-474.
[26]王鸿盛,李文卉,盖文燕,姚菊霞,曲自刚,王艳华,张德林,薛慧文,付宝权*. 旋毛虫TsP53抗原基因的原核表达及抗原性分析[J]. 中国兽医科学,2010,40(4):373-377.
[27]李永光,付宝权*. 寄生性蠕虫过氧化物氧还蛋白研究进展[J]. 中国寄生虫学与寄生虫病杂志,2010, 28(1):62-66.
[28]李永光,李文卉,李航,盖文燕,王鸿盛,姚菊霞,王艳华,张德林,贾万忠,Radu Blaga,付宝权*. 多头带绦虫TPx基因片段的克隆及原核表达[J]. 中国兽医科学,2009 ,39 (03) : 251-256.
[29]李航,李文卉,李永光,苟惠天,王艳华,张德林,贾万忠,史大中,付宝权*. 细粒棘球绦虫硫氧还蛋白过氧化物酶基因的表达及抗原性分析[J]. 中国人兽共患病学报,2008,24(8):708-711.
[30]李航,李文卉,苟惠天,李永光,王艳华,张德林,贾万忠,史大中,付宝权*. 细粒棘球绦虫TPx基因的克隆及序列分析[J]. 中国兽医科学,2008,38(3):191-195.
[31]付宝权,原丽红,张亚兰,吴秀萍,李莲瑞,卢强,刘明远,陈启军,P.Boireau. 旋毛虫肌幼虫cDNA文库的免疫筛选及初步分析[J]. 吉林农业大学学报,2004,26(3)323-325.
[32]付宝权,王峰,吴秀萍,牛廷献,卢强,刘明远,Pascal Boireau.旋毛虫成虫期特异性基因全长cDNA的克隆与序列分析[J]. 中国寄生虫学与寄生虫病杂志,2003,21(3):154-156.
[33]付宝权,刘明远,王锋,吴秀萍,卢强,黎诚耀,窦兰清,P.Boireau. 旋毛虫5日龄成虫期特异性基因片段的克隆及鉴定[J]. 中国兽医科技,2001,21(11):9-11.
[34]付宝权,窦兰清,朱兴全,柴忠威,孙晓林,郭清印,苏进才,高鹏程. 多头绦虫抗原特性的研究——脑多头蚴纯化抗原反应原性评价[J]. 中国兽医杂志,1999,25(8):11-12.
[35]付宝权,鱼海琼,窦兰清,朱兴全. 旋毛虫病动物被动免疫转移试验研究[J]. 中国寄生虫病防治杂志,1999,12(4):312-314.
[36]付宝权,柴忠威,窦兰清,朱兴全,孙晓林. 多头绦虫抗原特性的研究—应用IHA观察绵羊免疫及感染后的抗体消长规律[J]. 中国兽医寄生虫病,1998,6(4):3-7.
[37]付宝权,窦兰清,柴忠威,朱兴全,孙晓林. 多头绦虫抗原特性的研究—绵羊免疫及感染后的细胞应答反应研究[J]. 甘肃畜牧兽医,1998,28(6):7-9.
[38]付宝权,窦兰清,朱兴全,柴忠威,孙晓林. 多头绦虫抗原特性的研究—绵羊免疫后及感染后的抗体消长规律[J].中国兽医科技,1998,28(3):8-10.
[39]付宝权,窦兰清,柴忠威,朱兴全,孙晓林. 多头绦虫抗原特性的研究—多头绦虫节片抗原及原头节ES抗原的SDS-PAGE分析[J]. 中国兽医寄生虫病,1997,5(4):1-3.