Affiliation:
1. Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City, Southwest University, Chongqing 401329, China
2. Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), School of Life Sciences, Southwest University, Chongqing 400715, China
Abstract
To enhance our understanding of teleost reproductive physiology, we identified six Sichuan bream (Sinibrama taeniatus) vitellogenin genes (vtg1-6) and characterized their sequence structures. We categorized them into type Ⅰ (vtg1,4,5 and 6), type Ⅱ (vtg2) and type Ⅲ (vtg3) based on differences in their subdomain structure. The promoter sequence of vtgs has multiple estrogen response elements, and their abundance appears to correlate with the responsiveness of vtg gene expression to estrogen. Gene expression analyses revealed that the vitellogenesis of Sichuan bream involves both heterosynthesis and autosynthesis pathways, with the dominant pathway originating from the liver. The drug treatment experiments revealed that 17β-estradiol (E2) tightly regulated the level of vtg mRNA in the liver. Feeding fish with a diet containing 100 μg/g E2 for three weeks significantly induced vtg gene expression and ovarian development, leading to an earlier onset of vitellogenesis. Additionally, it was observed that the initiation of vtg transcription required E2 binding to its receptor, a process primarily mediated by estrogen receptor alpha in Sichuan bream. The findings of this study provide novel insights into the molecular information of the vitellogenin gene family in teleosts, thereby contributing to the regulation of gonadal development in farmed fish.
Funder
Chongqing Technology Innovation and Application De-velopment Special Key Project
Ministry of Agriculture of China
Reference76 articles.
1. Vitellogenesis and choriogenesis in fishes;Hara;Fish. Sci.,2016
2. Ultrastructural Studies on Oocyte Development and Vitellogenesis during Oogenesis in Female Boleophthalmus pectinirostris;Chung;Anim. Cells Syst.,2009
3. Vitellogenin gene family in vertebrates: Evolution and functions;Carducci;Eur. Zool. J.,2019
4. Ovarian yolk formation in fishes: Molecular mechanisms underlying formation of lipid droplets and vitellogenin-derived yolk proteins;Hiramatsu;Gen. Comp. Endocrinol.,2015
5. Babin, P.J., Carnevali, O., Lubzens, E., and Schneider, W.J. (2007). Molecular Aspects of Oocyte Vitellogenesis in Fish, Springer.