Arthropod promoters for genetic control of disease vectors

被引:1
作者
Wudarski, Jakub [1 ]
Aliabadi, Simindokht [1 ]
Gulia-Nuss, Monika [1 ]
机构
[1] Univ Nevada, Dept Biochem & Mol Biol, Reno, NV 89557 USA
关键词
YELLOW-FEVER MOSQUITO; GERMLINE TRANSFORMATION; POPULATION MODIFICATION; SALIVARY-GLANDS; EXPRESSION; GENOME; MALARIA; DRIVE; FLY; IDENTIFICATION;
D O I
10.1016/j.pt.2024.04.011
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
Vector-borne diseases (VBDs) impose devastating effects on human health and a heavy financial burden. Malaria, Lyme disease, and dengue fever are just a few examples of VBDs that cause severe illnesses. The current strategies to control VBDs consist mainly of environmental modification and chemical use, and to a small extent, genetic approaches. The genetic approaches, including transgenesis/genome modification and gene-drive technologies, provide the basis for developing new tools for VBD prevention by suppressing vector populations or reducing their capacity to transmit pathogens. The regulatory elements such as promoters are required for a robust sex-, tissue-, and stage-specific transgene expression. As discussed in this review, information on the regulatory elements is available for mosquito vectors but is scant for other vectors.
引用
收藏
页码:619 / 632
页数:14
相关论文
共 100 条
[81]   Identification of new Anopheles gambiae transcriptional enhancers using a cross-species prediction approach [J].
Schember, I. ;
Halfon, M. S. .
INSECT MOLECULAR BIOLOGY, 2021, 30 (04) :410-419
[82]   Germline transformation of the spotted wing drosophilid, Drosophila suzukii, with a piggyBac transposon vector [J].
Schetelig, Marc F. ;
Handler, Alfred M. .
GENETICA, 2013, 141 (4-6) :189-193
[83]   Cas9-mediated gene editing in the black-legged tick, Ixodes scapularis, by embryo injection and ReMOT Control [J].
Sharma, Arvind ;
Pham, Michael N. ;
Reyes, Jeremiah B. ;
Chana, Randeep ;
Yim, Won C. ;
Heu, Chan C. ;
Kim, Donghun ;
Chaverra-Rodriguez, Duverney ;
Rasgon, Jason L. ;
Harrell, Robert A. ;
Nuss, Andrew B. ;
Gulia-Nuss, Monika .
ISCIENCE, 2022, 25 (03)
[84]   Isolation of germline cells from Drosophila embryos by flow cytometry [J].
Shigenobu, S ;
Arita, K ;
Kitadate, Y ;
Noda, C ;
Kobayashi, S .
DEVELOPMENT GROWTH & DIFFERENTIATION, 2006, 48 (01) :49-57
[85]   DIPA-CRISPR is a simple and accessible method for insect gene editing [J].
Shirai, Yu ;
Piulachs, Maria-Dolors ;
Belles, Xavier ;
Daimon, Takaaki .
CELL REPORTS METHODS, 2022, 2 (05)
[86]   TRANSPOSITION OF CLONED P ELEMENTS INTO DROSOPHILA GERM LINE CHROMOSOMES [J].
SPRADLING, AC ;
RUBIN, GM .
SCIENCE, 1982, 218 (4570) :341-347
[87]   Impact of a small-scale tsetse fly control operation with deltamethrin impregnated "Tiny Targets" on tsetse density and trypanosomes' circulation in the Campo sleeping sickness focus of South Cameroon [J].
Tanekou, Tito Tresor Melachio ;
Tsakeng, Calmes Ursain Bouaka ;
Tirados, Inaki ;
Acho, Alphonse ;
Bigoga, Jude ;
Wondji, Charles Sinclair ;
Njiokou, Flobert .
PLOS NEGLECTED TROPICAL DISEASES, 2023, 17 (11)
[88]   Optimized In Vitro CRISPR/Cas9 Gene Editing Tool in the West Nile Virus Mosquito Vector, Culex quinquefasciatus [J].
Torres, Tran Zen B. ;
Prince, Brian C. ;
Robison, Alexis ;
Ruckert, Claudia .
INSECTS, 2022, 13 (09)
[89]   Transgenic methods for increasing Drosophila life span [J].
Tower, J .
MECHANISMS OF AGEING AND DEVELOPMENT, 2000, 118 (1-2) :1-14
[90]   Biology and genetics of human head and body lice [J].
Veracx, Aurelie ;
Raoult, Didier .
TRENDS IN PARASITOLOGY, 2012, 28 (12) :563-571