[1] 康乐. 关于蝗虫灾害减灾对策的探讨[J]. 中国减灾,1992,2(1):50-53
[2] 洪军,杜桂林,王广君. 我国草原蝗虫发生与防治现状分析[J]. 草地学报,2014,22(5):929-935
[3] 全国畜牧兽医总站. 中国草原蝗虫生物防治实践与应用[M]. 北京:中国农业出版社,2014:66-108
[4] Lange C E. Long-term patterns of occurrence of Nosema locustae Canning and Perezia dichroplusae Lange (Microsporidia) in grasshoppers (Orthoptera:Acrididae) of the Pampas Argentina[J]. Acta Protozoology,2003,42:309-315
[5] Lange C E. The host and geographical range of the grasshopper pathogen Paranosema (Nosema) locustae revisited[J]. Journal of Orthoptera Research,2005,14:137-141
[6] Solter L F,Maddox J V,Vossbrink C R. Physiological host specificity:a model using the European corn borer, Ostrinia nubilalis (Hubner) (Lepdioptera:Crambidae) and microsporidia of row crop and other stalk-boring hosts[J]. Journal of Invertebrate Pathology,2005,90:127-130
[7] Shi W P,Wang Y Y,Lv F,et al. Persistence of Paranosema (Nosema) locustae (Microsporidia:Nosematidae) among grasshopper (Orthoptera:Acrididae) populations in the Inner Mongolia Rangeland, China[J]. Biocontrol,2009,54:77-84
[8] Miao J,Guo Y,Shi W P. The Persistence of Paranosema locustae after application in Qinghai plateau, China[J]. Biocontrol Science & Technology,2012,22:733-735
[9] Street D A. Future prospects for microbial control of grasshoppers[M]. In:Capinera, J. L., ed. Integrated pest management on rangeland:a shortgrass prairie perspective. Boulder, CO:Westview Press,1987:205-218
[10] Henry J E. Experimental application of Nosema Locustae for control of grasshoppers[J]. Journal of Invertebrate Pathology,1971,18(3):389-394
[11] Zhang K,Xing X,Hou X. Population dynamics and infection prevalence of grasshopper (Orthoptera:Acrididae) after application of Paranosema Locustae (Microsporidia)[J]. Egyptian Journal of Biological Pest Control,2015,25(1):33-38
[12] Stentiford G D,Becnel J J,Weiss L M. Microsporidia-emergent pathogens in the global food chain[J]. Trends in Parasitology,2016,32(4):336-348
[13] Lockwood J A,Bomar C R,Ewen A B. The history of biological control with Nosema locustae:lessons for locust management[J]. Insect Science and Application,1999,19:333-350
[14] Henry J E. Epizootiology of infection by Nosema locustae canning(Microsporida:Nosematidae)in grasshoppers[J]. Acrida,1972,1:111-120
[15] 王丽英. 蝗虫微孢子虫对东亚飞蝗及蒙新草原蝗虫的感染试验[J]. 北京农业大学学报, 1987,13(4):459-462
[16] 贺达汉,郑哲民. 环境因子对蝗虫群落生态效应的数值分析[J]. 草地学报,1996(3):31-39
[17] Shi W P,Guo Y,Xu C,et al. Unveiling the mechanism by which microsporidian parasites prevent locust's swarm behavior[J]. Proceedings of the National Academy of Sciences of the United States of America,2014,111(4):1343-1348
[18] Shi W P,Yan Y H,Zhu E L. Sustainable management of locust (Locusta migratoria manilensis) using Nosema locustae in Hainan Province[J]. Journal of Plant Protection,2001,28:207-212
[19] Lange C E,Wysiecki M L. Epizootias de Nosema locustae (Microsporidia) in Melanoplinos (Melanoplinae) de Buenos Airesy La Pampa[J]. Review Society of Entomoglogy Argentina, 1999,58:76-78
[20] Guo Y,An Z,Shi W. Control of grasshoppers by combined application of Paranosema locustae and an insect growth regulator (Cascade?) in rangelands in China[J]. Journal of Economic Entomology,2012,105(6):1915-20
[21] Cheng R,Xiang J,Shi W P. Effect of Nosema locustaefor controlling grasshopper on natural enemy in the Qinghai grassland[J]. Heilongjiang Journal of Animal Science and Veterinary Medicine,2004,4:11-13
[22] Christian B,Yanina M,Santogo P. Status of the alien pathogen Paranosema locustae (Microsporidia) in grasshoppers (Orthoptera:Acridoidea) of the argentine pampas[J]. Biocontrol Science & Technology,2012,22(5):497-512
[23] Plischuk S,Bardi C J,Lange C E. Spore loads of Paranosema locustae,(Microsporidia) in heavily infected grasshoppers (Orthoptera:Acridoidea) of the argentine pampas and patagonia[J]. Journal of Invertebrate Pathology, 2013,114(1):89-91
[24] Sergey A T,Igor V S,Alexander A T,et al. Heterologous expression of Paranosema (Antonospora) locustae hexokinase in lepidopteran, Sf9, cells is followed by accumulation of the microsporidian protein in insect cell nuclei[J]. Journal of Invertebrate Pathology,2017,143:104-107 |