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Membrane lipids and maximum lifespan in clownfish

Pedro F. Almaida-Pagan; Alejandro Lucas-Sanchez; Antonio Martinez-Nicolas; Eva Terzibasi; Maria Angeles Rol de Lama; Alessandro Cellerino; Pilar Mendiola; Jorge de Costa
Fish Physiology and Biochemistry · Vol. 48, Issue 1 · pp. 53-65 · 2022

Abstract

The longevity-homeoviscous adaptation (LHA) theory of ageing states that lipid composition of cell membranes is linked to metabolic rate and lifespan, which has been widely shown in mammals and birds but not sufficiently in fish. In this study, two species of the genus Amphiprion ( Amphiprion percula and Amphiprion clarkii , with estimated maximum lifespan potentials [MLSP] of 30 and 9–16 years, respectively) and the damselfish Chromis viridis (estimated MLSP of 1–2 years) were chosen to test the LHA theory of ageing in a potential model of exceptional longevity. Brain, livers and samples of skeletal muscle were collected for lipid analyses and integral part in the computation of membrane peroxidation indexes (PIn) from phospholipid (PL) fractions and PL fatty acid composition. When only the two Amphiprion species were compared, results pointed to the existence of a negative correlation between membrane PIn value and maximum lifespan, well in line with the predictions from the LHA theory of ageing. Nevertheless, contradictory data were obtained when the two Amphiprion species were compared to the shorter-lived C. viridis . These results along with those obtained in previous studies on fish denote that the magnitude (and sometimes the direction) of the differences observed in membrane lipid composition and peroxidation index with MLSP cannot explain alone the diversity in longevity found among fishes.

Bibliographic Information

JournalFish Physiology and Biochemistry
PublisherSpringer
Publication Date2022-02-01
Publication Year2022
Volume48
Issue1
Pages53-65
Document TypeJournal Article
Print ISSN0920-1742
eISSN1573-5168
DOI10.1007/s10695-021-01037-1

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10695
Publisher PageOpen Publisher Page
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