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Volume 8, Number 12—December 2002
Dispatch

Isolation and Genetic Characterization of Rift Valley fever virus from Aedes vexans arabiensis, Kingdom of Saudi Arabia

Barry R. Miller*Comments to Author , Marvin S. Godsey*, Mary Crabtree*, Harry M. Savage*, Yagob Al-Mazrao†, Mohammed H. Al-Jeffri†, Abdel-Mohsin M. Abdoon†, Suleiman M. Al-Seghayer†, Ali M. Al-Shahrani†, and Thomas G. Ksiazek*
Author affiliations: *Centers for Disease Control and Prevention, Atlanta, Georgia, USA; †Ministry of Health, Riyadh, Kingdom of Saudi Arabia;

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Figure

Maximum likelihood phylogram of African Rift Valley fever virus strains (see Table 2) and mosquito isolate from the Kingdom of Saudi Arabia based on a 655-bp DNA fragment from the M segment (4).

Figure. Maximum likelihood phylogram of African Rift Valley fever virus strains (see Table 2) and mosquito isolate from the Kingdom of Saudi Arabia based on a 655-bp DNA fragment from the M segment (4).

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References
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  3. White  GB. Notes on a catalog of Culicidae of the Ethiopian region. Mosquito Systematics. 1975;7:30344.
  4. Miller  BR, Nasci  RS, Lutwama  JJ, Godsey  MS, Savage  HM, Lanciotti  RS, First field evidence for natural vertical transmission of West Nile virus in Culex univittatus complex mosquitoes from Rift Valley Province, Kenya. Am J Trop Med Hyg. 2000;62:2406.PubMedGoogle Scholar
  5. Swofford  DL. PAUP*:Phylogenetic Analysis Using Parsimony (*and other methods). Version 4.08b. Sunderland (MA): Sinauer Associates; 1998.
  6. Sall  AA, de A. Aanotto  PM, Sene  OK, Zeller  HG, Digoutte  JP, Thiongane  Y, . Genetic reassortment of Rift Valley fever in nature. J Virol. 1999;73:8196200.PubMedGoogle Scholar

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