Genetic technologies for disease vectors

作者: Frank Criscione , David A O’Brochta , William Reid

DOI: 10.1016/J.COIS.2015.04.012

关键词:

摘要: The first genetic technologies for insect vectors of disease were introduced 20 years ago. As today there are 12 classes used as functional genomic tools important diseases. Although the applications in have been conducted primarily mosquitoes, other systems could benefit from current technologies. While various technological platforms likely to function diverse arthropods, delivery these cells and tissues interest is major technical constraint that limits their widespread adoption. Increased community resources types would enhance adoption potentially eliminate limitations.

参考文章(85)
Wakae Awano, Daisuke Yamamoto, Daisuke Yamamoto, Zoltan Asztalos, Shunzo Kondo, Kotaro Baba, Suguri Niwa, Tamas Lukacsovich, Dual-tagging gene trap of novel genes in Drosophila melanogaster. Genetics. ,vol. 157, pp. 727- 742 ,(2001) , 10.1093/GENETICS/157.2.727
David A. O’Brochta, Kristina L. Pilitt, Robert A. Harrell, Channa Aluvihare, Robert T. Alford, Gal4-based Enhancer-Trapping in the Malaria Mosquito Anopheles stephensi G3: Genes, Genomes, Genetics. ,vol. 2, pp. 1305- 1315 ,(2012) , 10.1534/G3.112.003582
M. A. E. Anderson, T. L. Gross, K. M. Myles, Z. N. Adelman, Validation of novel promoter sequences derived from two endogenous ubiquitin genes in transgenic Aedes aegypti Insect Molecular Biology. ,vol. 19, pp. no- no ,(2010) , 10.1111/J.1365-2583.2010.01005.X
Omar S. Akbari, Philippos A. Papathanos, Jeremy E. Sandler, Katie Kennedy, Bruce A. Hay, Identification of germline transcriptional regulatory elements in Aedes aegypti Scientific Reports. ,vol. 4, pp. 3954- 3954 ,(2015) , 10.1038/SREP03954
B. E. Traver, M. A. E. Anderson, Z. N. Adelman, Homing endonucleases catalyze double-stranded DNA breaks and somatic transgene excision in Aedes aegypti. Insect Molecular Biology. ,vol. 18, pp. 623- 633 ,(2009) , 10.1111/J.1365-2583.2009.00905.X
Margaret L. Allen, David A. O’Brochta, Peter W. Atkinson, Cynthia S. Levesque, Stable, germ-line transformation of Culex quinquefasciatus (Diptera: Culicidae). Journal of Medical Entomology. ,vol. 38, pp. 701- 710 ,(2001) , 10.1603/0022-2585-38.5.701
S. Higgs, D. Traul, B.S. Davis, K.I. Kamrud, C.L. Wilcox, B.J. Beaty, Green Fluorescent Protein Expressed in Living Mosquitoes—Without the Requirement of Transformation BioTechniques. ,vol. 21, pp. 660- 664 ,(1996) , 10.2144/96214ST03
Kathryn E Kistler, Leslie B Vosshall, Benjamin J Matthews, Genome-engineering with CRISPR-Cas9 in the mosquito Aedes aegypti bioRxiv. pp. 013276- ,(2014) , 10.1101/013276
George B Craig, A.W Brown, R Pal, E.F Knipling, C.N Smith, J.B Kitzmiller, H Laven, Genetic control of insects of public health importance Bulletin of The World Health Organization. ,vol. 38, pp. 421- 438 ,(1968)
Flaminia Catteruccia, Tony Nolan, Thanasis G. Loukeris, Claudia Blass, Charalambos Savakis, Fotis C. Kafatos, Andrea Crisanti, Stable germline transformation of the malaria mosquito Anopheles stephensi Nature. ,vol. 405, pp. 959- 962 ,(2000) , 10.1038/35016096