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Rapid evolution of a voltage-gated sodium channel gene in a lineage of electric fish leads to a persistent sodium current.


ABSTRACT: Most weakly electric fish navigate and communicate by sensing electric signals generated by their muscle-derived electric organs. Adults of one lineage (Apteronotidae), which discharge their electric organs in excess of 1 kHz, instead have an electric organ derived from the axons of specialized spinal neurons (electromotorneurons [EMNs]). EMNs fire spontaneously and are the fastest-firing neurons known. This biophysically extreme phenotype depends upon a persistent sodium current, the molecular underpinnings of which remain unknown. We show that a skeletal muscle-specific sodium channel gene duplicated in this lineage and, within approximately 2 million years, began expressing in the spinal cord, a novel site of expression for this isoform. Concurrently, amino acid replacements that cause

SUBMITTER: Thompson A 

PROVIDER: S-EPMC5870949 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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