[1] SU C,KHAN A,ZHOU P,et al.Globally diverse Toxoplasma gondii isolates comprise six major clades originating from a small number of distinct ancestral lineages[J]. Proceedings of the National Academy of Sciences,2012,109(15):5844-5849. [2] WANG J L,ZHANG N Z,LI T T,et al.Advances in the development of anti-Toxoplasma gondii vaccines:challenges,opportunities,and perspectives[J]. Trends in Parasitology,2019,35(3):239-253. [3] ZHENG J,CHEN Y,LI Z,et al.Translationally controlled tumor protein is required for the fast growth of Toxoplasma gondii and maintenance of its intracellular development[J]. The FASEB Journal,2017,32(2):906-919. [4] ZHANG X X,REN W X,HOU G,et al.Seroprevalence and risk factors of Toxoplasma gondii infection in horses in Jilin Province and Inner Mongolia Autonomous Region,Northern China[J]. Acta Tropica,2018,187:119-123. [5] 沈继龙,余莉. 我国弓形虫病流行概况及防治基础研究进展[J]. 中国血吸虫病防治杂志,2019(1):71-76. [6] 庄浩瀚,潘灵韬,姚晨倩,等. 弓形虫SAG1重组抗体制备及抗原表位鉴定[J]. 中国兽医学报,2021,41(6):1080-1085,1104. [7] SUTTERLAND A L,FOND G,KUIN A,et al.Beyond the association. Toxoplasma gondii in schizophrenia,bipolar disorder,and addiction:systematic review and meta-analysis[J]. Acta Psychiatrica Scandinavica,2015,132(3):161-179. [8] 欧阳净,陈耀凯. 弓形虫感染与精神分裂症相关性的研究进展[J]. 中国寄生虫学与寄生虫病杂志,2019,37(1):102-106. [9] STELZER S,BASSO W,BENAVIDES S J,et al.Toxoplasma gondii infection and toxoplasmosis in farm animals:Risk factors and economic impact[J]. Food and Waterborne Parasitology,2019,15:e00037. [10] ALDAY P H,DOGGETT J S.Drugs in development for toxoplasmosis:advances,challenges,and current status[J]. Drug Design Development and Therapy,2017,11:273-293. [11] REESE M L,ZEINER G M,SAEIJ J P J,et al. Polymorphic family of injected pseudokinases is paramount in Toxoplasma virulence[J]. Proceedings of the National Academy of Sciences,2011,108(23):9625-9630. [12] PICCHIO M S,SÁNCHEZ V R,ARCON N,et al. Vaccine potential of antigen cocktails composed of recombinant Toxoplasma gondii TgPI-1,ROP2 and GRA4 proteins against chronic toxoplasmosis in C3H mice[J]. Experimental Parasitology,2018,185:62-70. [13] 李杰溪. RNA-seq技术在弓形虫ROP17和ROP18调控宿主基因表达中的研究与应用[D]. 广州:华南农业大学,2019. [14] GARG H,MEHMETOGLU-GURBUZ T,JOSHI A.Recent advances in zika virus vaccines[J]. Viruses,2018,10(11):631. [15] 祭天锴,白邵缘,吴云萍,等. 猫弓形虫疫苗的研究进展[J]. 黑龙江畜牧兽医,2021(15):50-55. [16] KHOSROSHAHI K H,GHAFFARIFAR F,SOUZA S,et al.Evaluation of the immune response induced by DNA vaccine cocktail expressing complete SAG1 and ROP2 genes against toxoplasmosis[J]. Vaccine,2011,29(4):778-783. [17] 王燕娟,曹建平,孙雅雯,等. 荧光蛋白报告载体观察刚地弓形虫SAG、MIC3、ROP2鸡尾酒DNA疫苗的表达及其免疫原性的研究[J]. 中国寄生虫学与寄生虫病杂志,2015,33(5):368-371,376. [18] RAHIMI M T,SARVI S,SHARIF M,et al.Immunological evaluation of a DNA cocktail vaccine with co-delivery of calcium phosphate nanoparticles(CaPNs)against the Toxoplasma gondii RH strain in BALB/c mice[J]. Parasitology Research,2017,116(2):609-616. [19] WANG L,LU G,ZHOU A,et al.Evaluation of immune responses induced by rhoptry protein 5 and rhoptry protein 7 DNA vaccines against Toxoplasma gondii[J]. Parasite Immunology,2016,38(4):209-217. [20] CHEN J,ZHOU D H,LI Z Y,et al.Toxoplasma gondii:Protective immunity induced by rhoptry protein 9 (TgROP9)against acute toxoplasmosis[J]. Experimental Parasitology,2014,139:42-48. [21] WANG H L,WANG Y J,PEI Y J,et al.DNA vaccination with a gene encoding Toxoplasma gondii rhoptry protein 17 induces partial protective immunity against lethal challenge in mice[J]. Parasite,2016,23:4. [22] KANG H,REMINGTON J S,SUZUKI Y.Decreased resistance of B cell-deficient mice to infection with Toxoplasma gondii despite unimpaired expression of IFN-gamma, TNF-alpha, and inducible nitric oxide synthase[J]. Journal of Immunology,2000,164(5):2629-2634. [23] ZHU W,LI J,PAPPOE F,et al.Strategies developed by Toxoplasma gondii to survive in the host[J]. Frontiers in Microbiology,2019,10:899. |