THE EFFECTS OF SERA FROM RABBITS IMMUNIZED WITH MOSQUITO MIDGUT EXTRACT ANTIGEN ON THE FECUNDITY AND MORTALITY OF ANOPHELES GAMBIAE (DIPERA: CULICIDE)
Gong Mao
Abstract
Gong Mao
Abstract
Objective To examine the anti vector immune response of midgut from the mosquito, Anopheles gambiae .Methods Rabbits were immunized three times with An. gambiae midgut antigens that were fractionated in SDS PAGE gel. The sera from these rabbits were fed as blood meals to An. gambiae in membrane feeders. Results The mortality of mosquitoes has increased obviously, with 56% increase, and the average number of eggs laid per female mosquito is 71.4 in experiment group, control group being 88.1, and the fecundity was reduced by 18.7% compared with the control fed on pre immune sera. Conclusion These results showed a more directed approach for identification and isolation of critical antigens within mosquito midgut, which could eventually be targeted in anti mosquito and other anti vector vaccines.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Objective To examine the anti vector immune response of midgut from the mosquito, Anopheles gambiae .Methods Rabbits were immunized three times with An. gambiae midgut antigens that were fractionated in SDS PAGE gel. The sera from these rabbits were fed as blood meals to An. gambiae in membrane feeders. Results The mortality of mosquitoes has increased obviously, with 56% increase, and the average number of eggs laid per female mosquito is 71.4 in experiment group, control group being 88.1, and the fecundity was reduced by 18.7% compared with the control fed on pre immune sera. Conclusion These results showed a more directed approach for identification and isolation of critical antigens within mosquito midgut, which could eventually be targeted in anti mosquito and other anti vector vaccines.
Key concepts: Midgut, Anopheles gambiae, Biology, Fecundity, Antigen, Immune system, Vector (molecular biology), Anopheles