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Genetic variation in arthropod vectors of disease-causing organisms: obstacles and opportunities.
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2
Genetic make-up of arthropod vectors.
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Update on the proteomics of major arthropod vectors of human and animal pathogens.
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Vector microbiota and immunity: modulating arthropod susceptibility to vertebrate pathogens.
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Containment of arthropod disease vectors.
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Arthropod Containment Guidelines, Version 3.2.
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Genetic structure and Rickettsia infection rates in Ixodes ovatus and Haemaphysalis flava ticks across different altitudes.
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Virulence potential of Rickettsia amblyommatis for spotted fever pathogenesis in mice.
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Vector Competence for DENV-2 Among (Diptera: ) Populations in China.
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Population and Evolutionary Genomics of Amblyomma americanum, an Expanding Arthropod Disease Vector.
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Spatial genetic structure of Aedes aegypti mosquitoes in mainland Southeast Asia.
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Tsetse flies: genetics, evolution, and role as vectors.
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本文引用的文献

1
Modification of arthropod vector competence via symbiotic bacteria.
Parasitol Today. 1993 May;9(5):179-83. doi: 10.1016/0169-4758(93)90142-3.
2
Genetic variation in tsetse flies and implications for trypanosomiasis.
Parasitol Today. 1992 Mar;8(3):92-5. doi: 10.1016/0169-4758(92)90246-x.
3
Transgenic mosquitoes: a future vector control strategy?
Parasitol Today. 1990 Feb;6(2):31-6. doi: 10.1016/0169-4758(90)90057-b.
4
Does Trypanosoma cruzi stress its vectors?
Parasitol Today. 1989 Jun;5(6):185-8. doi: 10.1016/0169-4758(89)90142-7.
6
SELECTION FOR HOST PREFERENCE IN ANOPHELES GAMBIAE.
Nature. 1964 Aug 22;203:852-4. doi: 10.1038/203852a0.
7
An inherited male-producing factor in Aedes aegypti.
Science. 1960 Dec 23;132(3443):1887-9. doi: 10.1126/science.132.3443.1887.
8
Inhibition of Glossina morsitans midgut trypsin activity by D-glucosamine.
Parasitol Res. 1993;79(2):93-7. doi: 10.1007/BF00932252.
10
Genetic variation in a Tanzanian population of Glossina swynnertoni (Diptera: Glossinidae).
J Med Entomol. 1993 Mar;30(2):489-92. doi: 10.1093/jmedent/30.2.489.

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