NARA Discovery
Article Details
← Back to Search Results
Journal Article

Maturation in Atlantic salmon (Salmo salar, Salmonidae): a synthesis of ecological, genetic, and molecular processes

Kenyon B. Mobley; Tutku Aykanat; Yann Czorlich; Andrew House; Johanna Kurko; Antti Miettinen; Jacqueline Moustakas-Verho; Andrés Salgado; Marion Sinclair-Waters; Jukka-Pekka Verta; Craig R. Primmer
Reviews in Fish Biology and Fisheries · Vol. 31, Issue 3 · pp. 523-571 · 2021

Abstract

Over the past decades, Atlantic salmon ( Salmo salar, Salmonidae) has emerged as a model system for sexual maturation research, owing to the high diversity of life history strategies, knowledge of trait genetic architecture, and their high economic value. The aim of this synthesis is to summarize the current state of knowledge concerning maturation in Atlantic salmon, outline knowledge gaps, and provide a roadmap for future work. We summarize the current state of knowledge: 1) maturation in Atlantic salmon takes place over the entire life cycle, starting as early as embryo development, 2) variation in the timing of maturation promotes diversity in life history strategies, 3) ecological and genetic factors influence maturation, 4) maturation processes are sex-specific and may have fitness consequences for each sex, 5) genomic studies have identified large-effect loci that influence maturation, 6) the brain-pituitary–gonadal axis regulates molecular and physiological processes of maturation, 7) maturation is a key component of fisheries, aquaculture, conservation, and management, and 8) climate change, fishing pressure, and other anthropogenic stressors likely have major effects on salmon maturation. In the future, maturation research should focus on a broader diversity of life history stages, including early embryonic development, the marine phase and return migration. We recommend studies combining ecological and genetic approaches will help disentangle the relative contributions of effects in different life history stages to maturation. Functional validation of large-effect loci should reveal how these genes influence maturation. Finally, continued research in maturation will improve our predictions concerning how salmon may adapt to fisheries, climate change, and other future challenges.

Bibliographic Information

JournalReviews in Fish Biology and Fisheries
PublisherSpringer
Publication Date2021-09-01
Publication Year2021
Volume31
Issue3
Pages523-571
Document TypeJournal Article
Print ISSN0960-3166
eISSN1573-5184
DOI10.1007/s11160-021-09656-w

Access Information

NARA Access Coverage1991-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11160
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.