APA (7th ed.) Citation
(2026). Collective interactions along recombinase-bound D-loops could speed repair of double-strand breaks by destabilizing flanking homoduplex tails. Nucleic Acids Research.
Chicago Style (17th ed.) Citation
"Collective Interactions Along Recombinase-bound D-loops Could Speed Repair of Double-strand Breaks by Destabilizing Flanking Homoduplex Tails." Nucleic Acids Research 2026.
MLA (9th ed.) Citation
"Collective Interactions Along Recombinase-bound D-loops Could Speed Repair of Double-strand Breaks by Destabilizing Flanking Homoduplex Tails." Nucleic Acids Research, 2026.
Warning: These citations may not always be 100% accurate.