Synthetically engineering population control systems in vectors of human disease
Synthetically engineering population control systems in vectors of human disease
批准号:
9689671
负责人:
Omar Sultan Akbari
金额:
$5.91万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-08-11 至 2018-07-31
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The proposed work is to engineer multiple independent invasive gene drive systems in the Dengue mosquito, Aedes aegypti, a major vector of human insect-borne disease known to annually infect 50-100 million people worldwide, killing millions. The current approaches used for Dengue disease prevention, including vector suppression by environmental modification, insecticides and anti-pathogen drugs are simply insufficient. The replacement of wild mosquito populations with genetically modified individuals that are engineered to be "disease resistant" in theory should provide a sustainable long-term method for disease prevention. However, the transgenes that mediate the disease refractoriness are unlikely to confer an overall fitness benefit on insects that carry them. Additionally, wild populations are large, partially reproductively isolated, and dispersed over wide areas. Therefore, population replacement requires a gene drive mechanism in order to spread linked cargo genes mediating disease refractoriness through wild populations. I have previously developed multiple synthetic selfish genetic elements including Maternal-Effect-Dominant-Embryonic-Arrest (Medea) and recently a threshold dependent underdominance system (UDmel) in insects that can rapidly spread through populations, even in the presence of a linked cargo refractory gene that may impose a large increase in fitness cost. Here I propose to simply transfer these synthetic systems into an insect that vectors disease, Aedes aegypti. Therefore, the major aims of this proposal are to develop three systems: 1) Medea, 2) Threshold dependent underdominance (UDmel), and 3) a selfish genetic element the can rapidly spread and crash a population, all in the Dengue vector, Aedes aegypti. Each of these gene drive systems have several attractive features important for social and scientific acceptance for wild transgene releases: the systems are species specific and horizontal spread with other species is limited; minimal ecological impact in contrast to insecticides; relatively robust and unbreakable with a tight linkage of the selfish genetic element with its cargo; transgene recall (for Medea) and complete transgene removal (underdominance) can be carried out if desired. In summary, the overall goal of this proposal is to develop multiple population control technologies in the mosquito that can be applied successfully and safely to fight human disease.
期刊论文(14)
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DOI:
10.1534/g3.115.021386
发表时间:
2015-10-13
期刊:
G3 (Bethesda, Md.)
影响因子:
--
作者:
[Ferree PM, Fang C, Mastrodimos M, Hay BA, Amrhein H, Akbari OS]
通讯作者:
Akbari OS
DOI:
10.1038/s41598-017-02744-7
发表时间:
2017-06-19
期刊:
Scientific reports
影响因子:
4.6
作者:
[Marshall JM, Buchman A, Sánchez C HM, Akbari OS]
通讯作者:
Akbari OS
DOI:
10.1534/g3.117.1134
发表时间:
2018-02-02
期刊:
G3 (Bethesda, Md.)
影响因子:
--
作者:
[Li M, Akbari OS, White BJ]
通讯作者:
White BJ
DOI:
10.1073/pnas.1711538114
发表时间:
2017-12-05
期刊:
Proceedings of the National Academy of Sciences of the United States of America
影响因子:
11.1
作者:
[Li M, Bui M, Yang T, Bowman CS, White BJ, Akbari OS]
通讯作者:
Akbari OS
DOI:
10.1016/j.cub.2016.03.050
发表时间:
2016-05-23
期刊:
Current biology : CB
影响因子:
--
作者:
[Cheng B, Kuppanda N, Aldrich JC, Akbari OS, Ferree PM]
通讯作者:
Ferree PM
Development of precision genome editing tools in Ae. albopictus for functional genetics and mosquito control technologies
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批准号:10362718
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项目类别:
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财政年份:2021
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依托单位:
The olfactory basis of locating nectar sugar sources in Aedes aegypti mosquitoes
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依托单位:
The olfactory basis of locating nectar sugar sources in Aedes aegypti mosquitoes
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资助金额:$63.63万
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财政年份:2021
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The olfactory basis of locating nectar sugar sources in Aedes aegypti mosquitoes
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Precision guided SIT for the control of vector-borne disease
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Precision guided SIT for the control of vector-borne disease
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资助金额:$46.19万
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财政年份:2020
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Precision guided SIT for the control of vector-borne disease
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项目类别:
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资助金额:$46.12万
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财政年份:2020
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Development of synthetic gene drives using small molecules
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资助金额:$35.73万
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项目类别:
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资助金额:$35.73万
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Developing reciprocal chromosomal translocations for wild population replacement in an important vector of human disease.
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批准号:9243803
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项目类别:
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资助金额:$23.25万
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财政年份:2016
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依托单位:
Synthetically engineering population control systems in vectors of human disease
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批准号:9124726
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项目类别:
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资助金额:$4.89万
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财政年份:2015
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负责人:Omar Sultan Akbari
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依托单位:
国内基金
海外基金
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