1[1]Trager W. Acquired immunity to ticks. J Parastol, 1939,25∶137-139.
2[2]Wijffels G, Hughes S, Gough J,et al. Peritrophins of adult dipteran ectoparasites and their evaluation as vaccine antigens. Int J Parasitol, 1999,29∶1363-1377.
3[3]Wijffels G, Fitzgerald C, Gough J, et al. Cloning and characterization of angiotensin-converting enzyme from the dipteran species, Haematobia irritans exigua, and its expression in the maturing male reproductive system. Eur J Biochem, 1996,237∶414-423.
4[4]Isaac RE, Ekbote U, Coates D, et al. Insect angiotensin converting enzyme. A processing enzyme with broad substrate specificity and a role in reproduction. Ann N Y Acad Sci, 1999, 897∶342-347.
5[5]Willadsen P. Concealed antigens: expanding the range of immunological targets. Parasitol Today,1993,9∶132-135.
6[6]Elvin CM, Bunch R, Liyou NE, et al. Molecular cloning and expression in Escherichia coli of an aquaporin-like gene from adult buffalo fly. Insect Mol Biol, 1999,8∶369-380.
7[7]Echevarria M, Ramirez LR, Hernandez CS, et al. Identification of a new water channel (Rp-MIP) in the Malpighian tubules of the insect Rhodnius prolixus. Pflugers ARCH,2001,442∶27-34.
8[8]Eliven CM, Kemp DH. Genetic approaches to obtaining efficacious antigens from vector arthropods. Int J Parasitol, 1994,24∶67-79.
9[9]Beier JC, Perkins PV, Onyango FK. Characterization of malaria transmission by Anopheles in western Kenya in preparation for malaria vaccine trials. J Med Entomol, 1990,27∶570-577.
10[10]Beier JC. Frequent blood-feeding and restrictive sugar-feeding behavior enhance the malaria vector potential of Anopheles gambiae s.l . and An. funestus in western Kenya. J Med Entomol,1996,33∶613-618.