In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.

A simple and efficient DNA delivery method to introduce extrachromosomal DNA into mosquito embryos would significantly aid functional genomic studies. The conventional method for delivery of DNA into insects is to inject the DNA directly into the embryos. Taking advantage of the unique aspects of mo...

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Main Authors: Rong Peng, Vilena I Maklokova, Jayadevi H Chandrashekhar, Que Lan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-03-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3060925?pdf=render
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spelling doaj-a8d6bb9fd8d54cbca0f786277f6668b72020-11-25T01:21:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-03-0163e1803010.1371/journal.pone.0018030In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.Rong PengVilena I MaklokovaJayadevi H ChandrashekharQue LanA simple and efficient DNA delivery method to introduce extrachromosomal DNA into mosquito embryos would significantly aid functional genomic studies. The conventional method for delivery of DNA into insects is to inject the DNA directly into the embryos. Taking advantage of the unique aspects of mosquito reproductive physiology during vitellogenesis and an in vivo transfection reagent that mediates DNA uptake in cells via endocytosis, we have developed a new method to introduce DNA into mosquito embryos vertically via microinjection of DNA vectors in vitellogenic females without directly manipulating the embryos. Our method was able to introduce inducible gene expression vectors transiently into F0 mosquitoes to perform functional studies in vivo without transgenic lines. The high efficiency of expression knockdown was reproducible with more than 70% of the F0 individuals showed sufficient gene expression suppression (<30% of the controls' levels). At the cohort level, AeSCP-2 expression knockdown in early instar larvae resulted in detectable phenotypes of the expression deficiency such as high mortality, lowered fertility, and distorted sex ratio after induction of AeSCP-2 siRNA expression in vivo. The results further confirmed the important role of AeSCP-2 in the development and reproduction of A. aegypti. In this study, we proved that extrachromosomal transient expression of an inducible gene from a DNA vector vertically delivered via vitellogenic females can be used to manipulate gene expression in F0 generation. This new method will be a simple and efficient tool for in vivo functional genomic studies in mosquitoes.http://europepmc.org/articles/PMC3060925?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rong Peng
Vilena I Maklokova
Jayadevi H Chandrashekhar
Que Lan
spellingShingle Rong Peng
Vilena I Maklokova
Jayadevi H Chandrashekhar
Que Lan
In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
PLoS ONE
author_facet Rong Peng
Vilena I Maklokova
Jayadevi H Chandrashekhar
Que Lan
author_sort Rong Peng
title In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
title_short In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
title_full In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
title_fullStr In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
title_full_unstemmed In vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
title_sort in vivo functional genomic studies of sterol carrier protein-2 gene in the yellow fever mosquito.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-03-01
description A simple and efficient DNA delivery method to introduce extrachromosomal DNA into mosquito embryos would significantly aid functional genomic studies. The conventional method for delivery of DNA into insects is to inject the DNA directly into the embryos. Taking advantage of the unique aspects of mosquito reproductive physiology during vitellogenesis and an in vivo transfection reagent that mediates DNA uptake in cells via endocytosis, we have developed a new method to introduce DNA into mosquito embryos vertically via microinjection of DNA vectors in vitellogenic females without directly manipulating the embryos. Our method was able to introduce inducible gene expression vectors transiently into F0 mosquitoes to perform functional studies in vivo without transgenic lines. The high efficiency of expression knockdown was reproducible with more than 70% of the F0 individuals showed sufficient gene expression suppression (<30% of the controls' levels). At the cohort level, AeSCP-2 expression knockdown in early instar larvae resulted in detectable phenotypes of the expression deficiency such as high mortality, lowered fertility, and distorted sex ratio after induction of AeSCP-2 siRNA expression in vivo. The results further confirmed the important role of AeSCP-2 in the development and reproduction of A. aegypti. In this study, we proved that extrachromosomal transient expression of an inducible gene from a DNA vector vertically delivered via vitellogenic females can be used to manipulate gene expression in F0 generation. This new method will be a simple and efficient tool for in vivo functional genomic studies in mosquitoes.
url http://europepmc.org/articles/PMC3060925?pdf=render
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