M. S. Rich, R. Pellow, Y. Zhang, A. Hefel, O. Rog, E. M. Jorgensen
Extrachromosomal arrays are unique chromosome-like structures created from DNA injected into the C. elegans germline. However, they are unstable unless integrated into a chromosome. Current methods for integration using X-rays or CRISPR can damage DNA and exhibit low efficiency. We demonstrate that the viral integrase PhiC31, which mediates non-mutagenic recombination between short attB and attP sequences, can be used for extremely efficient and targeted integration of arrays. Arrays were integrated by PhIAT (PhiC31-mediated Integration of Arrays of Transgenes) at attB sites on three chromosomes, including at a fluorescent landing pad. Moreover, integrations can be inserted at any arbitrary site in the genome by simultaneously co-injecting Cas9 RNP, an attB repair template, and the DNA components for the array, thereby providing sites on all six chromosomes. Single injections can integrate arrays ranging in size from 1 to 18 megabases. PhIAT makes it practical to study genomes of other organisms in the nematode; one of our strains incorporates 65% of the yeast genome at a single site in the worm genome. PhIAT will accelerate a shift from unstable extrachromosomal arrays to direct integration of arrays in C. elegans.