Gene Expression Profile Provides Novel Insights of Fasting-Refeeding Response in Zebrafish Skeletal Muscle

Nutrients. 2022 May 27;14(11):2239. doi: 10.3390/nu14112239.

Abstract

Recently, fasting has been spotlighted from a healthcare perspective. However, the de-tailed biological mechanisms and significance by which the effects of fasting confer health benefits are not yet clear. Due to certain advantages of the zebrafish as a vertebrate model, it is widely utilized in biological studies. However, the biological responses to nutrient metabolism within zebrafish skeletal muscles have not yet been amply reported. Therefore, we aimed to reveal a gene expression profile in zebrafish skeletal muscles in response to fasting-refeeding. Accordingly, mRNA-sequencing and bioinformatics analysis were performed to examine comprehensive gene expression changes in skeletal muscle tissues during fasting-refeeding. Our results produced a novel set of nutrition-related genes under a fasting-refeeding protocol. Moreover, we found that five genes were dramatically upregulated in each fasting (for 24 h) and refeeding (after 3 h), exhibiting a rapid response to the provided conditional changes. The assessment of the gene length revealed that the gene set whose expression was elevated only after 3 h of refeeding had a shorter length, suggesting that nutrition-related gene function is associated with gene length. Taken together, our results from the bioinformatics analyses provide new insights into biological mechanisms induced by fasting-refeeding conditions within zebrafish skeletal muscle.

Keywords: fasting; gene length; mRNA-sequencing; refeeding; skeletal muscle; zebrafish.

MeSH terms

  • Animals
  • Fasting* / physiology
  • Muscle, Skeletal / metabolism
  • RNA, Messenger / metabolism
  • Transcriptome
  • Zebrafish* / genetics

Substances

  • RNA, Messenger

Grants and funding

This study was supported by Open Facility Network Office, Organization for Open Facility Initiatives, University of Tsukuba.