Seasonal relationship between gonadotropin, growth hormone, and estrogen receptor mRNA expression in the pituitary gland of largemouth bass.

Gen Comp Endocrinol

Department of Physiological Sciences and Center for Environmental and Human Toxicology, University of Florida, Gainesville, FL 32611, USA.

Published: September 2009

AI Article Synopsis

  • The study aimed to examine seasonal variations in pituitary gonadotropins, growth hormone, and estrogen receptor mRNA in wild male and female largemouth bass to enhance understanding of their reproductive physiology.
  • Female largemouth bass exhibited significant seasonal changes in gonadotropin mRNA, peaking from January to April, while male variations were more inconsistent.
  • The research found a strong correlation between gonadotropin mRNA levels and reproductive indicators, suggesting that estrogen may play a crucial role in regulating gonadotropin synthesis in both sexes during reproduction.

Article Abstract

The objectives of this study were to investigate the seasonal changes in pituitary gonadotropins, growth hormone (GH), and estrogen receptor (ER) isoform mRNA in wild female and male largemouth bass (LMB) (Micropterus salmoides) from an unpolluted habitat to better understand reproductive physiology in this ecologically important species. Female pituitary luteinizing hormone (LH) beta subunit and follicle stimulating hormone (FSH) beta subunit mRNA showed significant seasonal variation with levels peaking from January to April and were lowest from May to August. Male LMB showed more variation in gonadotropin subunit expression from month to month. Females had approximately 2-3 times higher gonadotropin mRNA levels in the pituitary when compared to males. All three gonadotropin mRNAs in females were positively correlated to gonadosomatic index (GSI), but only LHbeta mRNA was correlated to GSI in males. Gonadotropin mRNA expression also increased with increasing oocyte and sperm maturation. Gonadotropin beta subunit mRNA expression was positively correlated to GH mRNA in both sexes. The expression of all three ER isoforms was significantly correlated to each other in both sexes. The concurrent increase in all three ER mRNA isoforms with increasing gonadotropin mRNA in females and males suggests a prominent role for E2 feedback on pituitary gonadotropin synthesis in both sexes and that each of the three ER isoforms are likely to play a role in the pituitary during teleost reproduction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4188826PMC
http://dx.doi.org/10.1016/j.ygcen.2009.04.028DOI Listing

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