Leptin gene expression in the brain is associated with the physiological onset of estivation in western sand lance Ammodytes japonicus

Author:

Amiya Noriko1ORCID,Nakano Nayu1,Tanaka Chikaya2,Hibino Shizuha1,Takakura Ryota3ORCID,Amano Masafumi1ORCID,Yoshinaga Tatsuki1ORCID

Affiliation:

1. School of Marine Biosciences Kitasato University Kanagawa Japan

2. Department of Biology Tokyo Medical University Tokyo Japan

3. Fisheries Technology Institute, Hyogo Prefectural Technology Center for Agriculture, Forestry and Fisheries Hyogo Japan

Abstract

AbstractDormancy is an essential ecological characteristic for the survival of organisms that experience harsh environments. Although factors that initiate dormancy vary, suppression or cessation of feeding activities are common among taxa. To distinguish between extrinsic and intrinsic causes of metabolic reduction, we focused on estivation, which occurs in summer when the feeding activity is generally enhanced. Sand lances (genus Ammodytes) are a unique marine fish with a long estivation period from early summer to late autumn. In the present study, we aimed to elucidate the control mechanisms of estivation in western sand lance (A. japonicus), and firstly examined behavioral changes in 8 months including a transition between active and dormant phases. We found that swimming/feeding behavior gradually decreased from June, and completely disappeared by late August, indicating all individuals had entered estivation. Next, we focused on leptin, known as a feeding suppression hormone in various organisms, and examined leptin‐A gene (AjLepA) expression in the brain that may regulate the seasonal behavioral pattern. AjLepA expression decreased after 7 days of fasting, suggesting that leptin has a function to regulate feeding in this species. The monthly expression dynamics of AjLepA during the feeding (active) and non‐feeding (estivation) periods showed that the levels gradually increased with the onset of estivation and reached its peak when all the experimental fish had estivated. The present study suggests that the suppression of feeding activity by leptin causes shift in the physiological modes of A. japonicus before estivation.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

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