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CRISPR-induced null alleles show that Frost protects Drosophila melanogaster reproduction after cold exposure

The Journal of Experimental Biology. 2017; 
Claire E. Newman, Jantina Toxopeus, Hiroko Udaka, Soohyun Ahn, David M. Martynowicz, Steffen P. Graether, Brent J. Sinclair& Anthony Percival-Smith
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PCR Cloning and Subcloning Cloning, expression, purification, and characterisation of recombinant FST Fst was made synthetically (Genscript, Piscataway NJ) and ligated into the pET22B expression vector (Novagen, Gibbstown NJ) using standard molecular biological methods. Get A Quote

摘要

The ability to survive and reproduce after cold exposure is important in all kingdoms of life. However, even in a sophisticated genetic model system like Drosophila melanogaster, few genes have been identified as functioning in cold tolerance. The accumulation of the Frost (Fst) gene transcript increases after cold exposure, making it a good candidate for a gene that has a role in cold tolerance. However, despite extensive RNAi knockdown analysis, no role in cold tolerance has been assigned to Fst. CRISPR is an effective technique for completely knocking down genes, and less likely to produce off-target effects than GAL4-UAS RNAi systems. We have used CRISPR-mediated homologous recombination to generate Fst ... More

关键词

Genome Editing, CRISPR-Cas9, Cold tolerance, chill coma, intrinsically disordered protein, insect