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Published on: October 19, 2013
Genetic analysis of adenohypophysis formation in zebrafish
Wiebke Herzog1, Carmen Sonntag, Brigitte Walderich
1Max-Planck Institute for Immunobiology, Stuebeweg 51, 79108 Freiburg, Germany.
Abstract:
The adenohypophysis consists of at least six different cell types, somatotropes, lactotropes, thyrotropes, melanotropes, corticotropes, and gonadotropes. In mouse, cloning of spontaneous mutations and gene targeting has revealed multiple genes required for different steps of adenohypophysis development. Here, we report the results of a systematic search for genes required for adenohypophysis formation and patterning in zebrafish. By screening F3 offspring of N-ethyl-N-nitrosourea-mutagenized founder fish, we isolated eleven mutants with absent or reduced expression of GH, the product of somatotropes, but a normally developing hypothalamus. Of such mutants, eight were further analyzed and mapped. They define four genes essential for different steps of adenohypophysis development. Two of them, lia and pia, affect the entire adenohypophysis, whereas the other two are required for a subset of adenohypophyseal cell types only. The third gene is zebrafish pit1 and is required for lactotropes, thyrotropes, and somatotropes, similar to its mouse ortholog, whereas the fourth, aal, is required for corticotropes, melanotropes, thyrotropes, and somatotropes, but not lactotropes. In conclusion, the isolated zebrafish mutants confirm principles of adenohypophysis development revealed in mouse, thereby demonstrating the high degree of molecular and mechanistic conservation among the different vertebrate species. In addition, they point to thus far unknown features of adenohypophysis development, such as the existence of a new lineage of pituitary cells, which partially overlaps with the Pit1 lineage. Positional cloning of the lia, pia, and aal genes might reveal novel regulators of vertebrate pituitary development.
Insights
Researchers identified four genes crucial for zebrafish adenohypophysis development, revealing conserved mechanisms and new pituitary cell lineages. This study enhances understanding of vertebrate pituitary formation.
Area of Science:
- Developmental Biology
- Genetics
- Endocrinology
Background:
- The adenohypophysis, a key endocrine gland, comprises diverse cell types including somatotropes and lactotropes.
- Mouse models have identified several genes essential for adenohypophysis development.
Purpose of the Study:
- To systematically identify genes regulating adenohypophysis formation and patterning in zebrafish.
- To investigate the conservation of pituitary development mechanisms between zebrafish and mouse.
Main Methods:
- Screening of N-ethyl-N-nitrosourea-mutagenized zebrafish.
- Isolation and mapping of mutants with altered growth hormone (GH) expression.
- Analysis of gene function in specific adenohypophyseal cell lineages.
Main Results:
- Eleven mutants with absent or reduced GH expression were isolated.
- Four genes (lia, pia, pit1, aal) were identified as essential for adenohypophysis development.
- Two genes (lia, pia) affect the entire gland, while pit1 and aal affect specific cell subsets.
- Zebrafish pit1 function is conserved with its mouse ortholog, while aal has a unique role.
Conclusions:
- Zebrafish mutants confirm conserved adenohypophysis development principles across vertebrates.
- The study reveals novel aspects of pituitary development, including a new cell lineage.
- Positional cloning of lia, pia, and aal may uncover new pituitary regulators.

