4.5 Article

Characterization and evaluation of the tissue distribution of CRH, apelin, and GnRH2 reveal responses to feeding states in Schizothorax davidi

期刊

FISH PHYSIOLOGY AND BIOCHEMISTRY
卷 47, 期 2, 页码 421-438

出版社

SPRINGER
DOI: 10.1007/s10695-020-00922-5

关键词

Schizothorax davidi; Feeding regulation; CRH; Apelin; GnRH2

资金

  1. Open Project Program of Key Laboratory of Aquatic Science of Chongqing [Klas-2017-01]

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The study identified and analyzed the genes CRH, apelin, and GnRH2 in Schizothorax davidi, a rare fish species in Southwest China. The research showed that these genes play critical roles in appetite regulation in S. davidi, contributing to a better understanding of the appetite regulatory systems in this fish and other teleosts.
Schizothorax davidi is a rare fish in Southwest China and is considered a promising species for aquaculture. Compared with other teleosts, little is known about the endocrine regulation of feeding in this species. In this study, we identified the CRH, apelin, and GnRH2 genes in S. davidi and assessed the effects of different energy statuses on CRH, apelin, and GnRH2 expression. Our results showed that the full-length cDNA sequences of CRH, apelin, and GnRH2 of S. davidi were 995, 905, and 669 bp long, respectively. Furthermore, CRH was mainly expressed in the hypothalamus, telencephalon, and myelencephalon; apelin was highly expressed in the spleen and heart; and GnRH2 mRNA was widely distributed in all examined tissues, with the highest level in the hypothalamus. Notably, the levels of CRH and GnRH2 increased in the hypothalamus at 1 h and 3 h post-feeding, while hypothalamic apelin levels decreased. Conversely, CRH and GnRH2 expression in the hypothalamus significantly decreased after fasting for 7 days and returned to the control levels after re-feeding for 3 or 5 days. In contrast, fasting increased apelin levels in the hypothalamus. Overall, this study suggests that CRH, apelin, and GnRH2 play critical roles in appetite regulation in S. davidi. These results provide an essential groundwork to elucidate the appetite regulatory systems in S. davidi as well as in other teleosts.

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