4.2 Article

Gene transcription ontogeny of hypothalamic-pituitary-thyroid axis development in early-life stage fathead minnow and zebrafish

期刊

GENERAL AND COMPARATIVE ENDOCRINOLOGY
卷 266, 期 -, 页码 87-100

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ygcen.2018.05.001

关键词

HPT axis; Fish; Endocrine system; Early development; mRNA expression; Thyroid hormone

资金

  1. European Chemical Industry Council (Cefic) Long-range Research Initiative
  2. ECETOC
  3. Belgian Federal Public Service of Health, Food chain safety and Environment (TRANSGGO)
  4. Universiteit Antwerpen [31088, 31405]
  5. LRI-ECO20 project
  6. LRI-ECO20.2 project
  7. Chemical Safety for Sustainability research program

向作者/读者索取更多资源

The hypothalamic-pituitary-thyroid (HPT) axis is known to play a crucial role in the development of teleost fish. However, knowledge of endogenous transcription profiles of thyroid-related genes in developing teleosts remains fragmented. We selected two model teleost species, the fathead minnow (Pimephales promelas) and the zebrafish (Danio rerio), to compare the gene transcription ontogeny of the HPT axis. Control organisms were sampled at several time points during embryonic and larval development until 33 days post-fertilization. Total RNA was extracted from pooled, whole fish, and thyroid-related mRNA expression was evaluated using quantitative polymerase chain reaction. Gene transcripts examined included: thyrotropin-releasing hormone receptor (trhr), thyroid-stimulating hormone receptor (tshr), sodium-iodide symporter (nis), thyroid peroxidase (tpo), thyroglobulin (tg), transthyretin (ttr), deiodinases 1, 2, 3a, and 3b (dio 1, dio2, dio3a and 3b), and thyroid hormone receptors alpha and beta (thr alpha and beta). A loess regression method was successful in identifying maxima and minima of transcriptional expression during early development of both species. Overall, we observed great similarities between the species, including maternal transfer, at least to some extent, of almost all transcripts (confirmed in unfertilized eggs), increasing expression of most transcripts during hatching and embryo-larval transition, and indications of a fully functional HPT axis in larvae. These data will aid in the development of hypotheses on the role of certain genes and pathways during development. Furthermore, this provides a background reference dataset for designing and interpreting targeted transcriptional expression studies both for fundamental research and for applications such as toxicology.

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