Related Experiment Video
Updated: Jan 28, 2026

Determining the Role of Maternally-Expressed Genes in Early Development with Maternal Crispants
Published on: December 21, 2021
The Role of Maternal Thyroid Hormones in Avian Embryonic Development
1Laboratory of Comparative Endocrinology, Animal Physiology and Neurobiology Section, Biology Department, KU Leuven, Leuven, Belgium.
Insights
Maternal thyroid hormones (THs) are crucial for avian embryonic development, regulating gene expression and tissue maturation. Their availability impacts central nervous system development and posthatch fitness, highlighting a critical maternal contribution.
Area of Science:
- Developmental Biology
- Endocrinology
- Avian Biology
Background:
- Thyroid hormones (THs) are essential for coordinating gene expression during avian embryonic development, ensuring proper cell proliferation, differentiation, and maturation.
- The embryonic thyroid gland matures late in development, necessitating maternal THs transferred via egg yolk for early developmental stages.
- Maternal THs are selectively metabolized and transported by the yolk sac membrane, with TH receptors and regulators expressed dynamically in embryonic tissues.
Purpose of the Study:
- To investigate the critical role of maternal thyroid hormones in avian embryonic development.
- To explore the impact of maternal TH availability on gene expression and central nervous system development.
- To examine the link between embryonic TH exposure and posthatch performance and fitness.
Main Methods:
- Studied gene expression patterns and TH regulator presence in avian embryos.
- Manipulated maternal TH levels through supplementation or goitrogen treatment.
- Utilized knockdown of the monocarboxylate transporter 8 (MCT8) to assess TH transport in the embryonic CNS.
- Administered THs via yolk injection to evaluate effects on embryonic development and posthatch parameters.
Main Results:
- Maternal hyperthyroidism or yolk TH injection increased embryonic TH content, while hypothyroidism decreased it, altering embryonic gene expression.
- Knockdown of MCT8 in chicken embryos reduced local TH availability in the CNS, disrupting gene expression and leading to persistent structural defects.
- Early embryonic TH manipulation influenced various posthatch performance and fitness parameters in both precocial and altricial birds.
Conclusions:
- Maternal thyroid hormones are indispensable for normal avian embryonic development, particularly for the central nervous system.
- The availability and regulation of THs during embryogenesis significantly influence both immediate developmental outcomes and long-term fitness.
- Further research is needed to elucidate the precise mechanisms linking maternal TH influence on embryonic processes to posthatch fitness.
Abstract:
During avian embryonic development, thyroid hormones (THs) coordinate the expression of a multitude of genes thereby ensuring that the correct sequence of cell proliferation, differentiation and maturation is followed in each tissue and organ. Although THs are needed from the start of development, the embryonic thyroid gland only matures around mid-incubation in precocial birds and around hatching in altricial species. Therefore, maternal THs deposited in the egg yolk play an essential role in embryonic development. They are taken up by the embryo throughout its development, from the first day till hatching, and expression of TH regulators such as distributor proteins, transporters, and deiodinases in the yolk sac membrane provide the tools for selective metabolism and transport starting from this level. TH receptors and regulators of local TH availability are expressed in avian embryos in a dynamic and tissue/cell-specific pattern from the first stages studied, as shown in detail in chicken. Maternal hyperthyroidism via TH supplementation as well as injection of THs into the egg yolk increase TH content in embryonic tissues while induction of maternal hypothyroidism by goitrogen treatment results in a decrease. Both increase and decrease of maternal TH availability were shown to alter gene expression in early chicken embryos. Knockdown of the specific TH transporter monocarboxylate transporter 8 at early stages in chicken cerebellum, optic tectum, or retina allowed to reduce local TH availability, interfering with gene expression and confirming that development of the central nervous system (CNS) is highly dependent on maternal THs. While some of the effects on cell proliferation, migration and differentiation seem to be transient, others result in persistent defects in CNS structure. In addition, a number of studies in both precocial and altricial birds showed that injection of THs into the yolk at the start of incubation influences a number of parameters in posthatch performance and fitness. In conclusion, the data presently available clearly indicate that maternal THs play an important role in avian embryonic development, but how exactly their influence on cellular and molecular processes in the embryo is linked to posthatch fitness needs to be further explored.
Related Concept Videos
Functions of Thyroid Hormones
TH is indispensable for the normal development and maturation of the skeletal, muscular, and nervous systems during fetal and childhood growth. It facilitates bone mineral turnover and regulates protein synthesis in developing tissues, contributing significantly to overall growth and...
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The...
Plant Hormones
Types of Hormones
Types of Hormones
Steroids and eicosanoids fall under the category of lipid-soluble hormones. Steroids are derived from cholesterol and feature four interconnected carbon rings with variable side chains. Notable examples include estradiol from ovaries and testosterone from testes, exemplifying the critical roles of these lipid-soluble hormones in reproductive physiology. Eicosanoids, derived...
Hormonal Regulation

