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Parasitic sea lice (age.g., Lepeophtheirus salmonis) cause costly outbreaks in salmon farming. Molecular ideas into parasite-induced host answers offer the basis for enhanced administration techniques. We investigated the early transcriptomic reactions in pelvic fins of Atlantic salmon parasitized with chalimus I level ocean lice. Fin samples collected from non-infected (i.e. pre-infected) control (PRE) as well as chalimus-attachment websites (ATT) and adjacent to chalimus-attachment sites (ADJ) from