Many genes have several, sometimes divergent functions during development. Therefore, timing of gene knockdown for functional analysis during development has to be done with precise temporal control, as loss of a gene's function at early stages prevents its analysis later in development. RNAi, in combination with the accessibility of chicken embryos, is an effective approach for temporally controlled analysis of gene function during neural development. Here, we describe novel plasmid vectors that contain cell type-specific promoters/enhancers to drive the expression of a fluorescent marker, followed directly by a miR30-RNAi transcript for gene silencing. These vectors allow for direct tracing of cells experiencing gene silencing by the brig...
Development is the elegant and complex process by which a single celled embryo grows into a fully fo...
The chick embryonic midbrain offers an effective model to monitor the effects of gene overexpression...
Introduction: The present study was based on the microinjection of lentiviruses into chicken embryos...
Despite the development of brain organoids and neural cultures derived from iPSCs (induced pluripote...
The RNA interference technique is a powerful tool to understand gene function. Intriguingly, RNA int...
AbstractThe RNA interference technique is a powerful tool to understand gene function. Intriguingly,...
AbstractRNA interference (RNAi) provides an effective method to silence gene expression and investig...
Genomics has changed the pace by which genes are analyzed. Rather than looking at genes one by one, ...
Functional analysis of multiple genes is key to understanding gene regulatory networks controlling e...
© 2022. The Author(s).BACKGROUND: The chicken in ovo model is an attractive system to explore underl...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
<div><p>The domestic chicken is an attractive model system to explore the development and function o...
The domestic chicken is an attractive model system to explore the development and function of brain ...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
Development is the elegant and complex process by which a single celled embryo grows into a fully fo...
The chick embryonic midbrain offers an effective model to monitor the effects of gene overexpression...
Introduction: The present study was based on the microinjection of lentiviruses into chicken embryos...
Despite the development of brain organoids and neural cultures derived from iPSCs (induced pluripote...
The RNA interference technique is a powerful tool to understand gene function. Intriguingly, RNA int...
AbstractThe RNA interference technique is a powerful tool to understand gene function. Intriguingly,...
AbstractRNA interference (RNAi) provides an effective method to silence gene expression and investig...
Genomics has changed the pace by which genes are analyzed. Rather than looking at genes one by one, ...
Functional analysis of multiple genes is key to understanding gene regulatory networks controlling e...
© 2022. The Author(s).BACKGROUND: The chicken in ovo model is an attractive system to explore underl...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
<div><p>The domestic chicken is an attractive model system to explore the development and function o...
The domestic chicken is an attractive model system to explore the development and function of brain ...
The in vivo accessibility of the chick embryo makes it a favoured model system for experimental deve...
Development is the elegant and complex process by which a single celled embryo grows into a fully fo...
The chick embryonic midbrain offers an effective model to monitor the effects of gene overexpression...
Introduction: The present study was based on the microinjection of lentiviruses into chicken embryos...