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using the zebrafish model system. This will involve genotyping zebrafish to identify gene-edited animals and setting up and running behavioral experiments with gene-edited animals. The position will also
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reconstitution are poised to transform the field, providing unprecedented insights into adrenal development, disease modeling, and therapeutic innovation. This platform represents a critical step toward
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of CRISPR/Cas9 gene editing, generating mouse models is cost prohibitive and largely inaccessible. To circumvent this, we developed a highly efficient electroporation-based editing technique called CRISPR-EZ
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on studies of genes associated with neurodevelopmental disorders using the zebrafish model system. This will involve genotyping zebrafish to identify gene-edited animals and setting up and running behavioral