The transition from oocyte to embryo marks the onset of development. This process requires complex regulation to link developmental signals with profound changes in mRNA translation, cell cycle control, and metabolism. This control is beginning to be understood for most organisms, and research in the fruit fly Drosophila melanogaster has generated new insights. Recent findings have increased our understanding of the roles played by hormone and Ca2+signaling events as well as metabolic remodeling crucial for this transition. Specialized features of the structure and assembly of the meiotic spindle have been identified. The changes in protein levels, mRNA translation, and polyadenylation that occur as the oocyte becomes an embryo have been id...
BACKGROUND: In many animals, the first few hours of life proceed with little or no transcription, an...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Germ cell development requires interplay between factors that control cell fate and division. Early ...
SummaryThe oocyte-to-embryo transition marks the onset of development. The initial phase of this pro...
At the oocyte-to-embryo transition the highly differentiated oocyte arrested in meiosis becomes a to...
At the transition from oocyte to embryo, a quiescent mature oocyte is transformed in a short span of...
Mature oocytes are held in a developmentally-quiescent, arrested state. For development to occur, th...
One of the most critical transitory periods during development occurs when an oocyte prepares to und...
tory dynamic between translation and protein turn- arrests and in the presence of transcriptional co...
An important hallmark in embryonic development is characterized by the maternal-to-zygotic transitio...
Egg activation is essential for the successful transition from a mature oocyte to a developmentally ...
The oocyte-to-embryo transition involves extensive changes in mRNA translation, regulated in Drosoph...
Because maturing oocytes and early embryos lack appreciable transcription, posttranscriptional regul...
mRNA localisation and translational control is a conserved, universal process involved in a number o...
A cell integrates mitogenic signals received at the plasma membrane with intracellular biochemical c...
BACKGROUND: In many animals, the first few hours of life proceed with little or no transcription, an...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Germ cell development requires interplay between factors that control cell fate and division. Early ...
SummaryThe oocyte-to-embryo transition marks the onset of development. The initial phase of this pro...
At the oocyte-to-embryo transition the highly differentiated oocyte arrested in meiosis becomes a to...
At the transition from oocyte to embryo, a quiescent mature oocyte is transformed in a short span of...
Mature oocytes are held in a developmentally-quiescent, arrested state. For development to occur, th...
One of the most critical transitory periods during development occurs when an oocyte prepares to und...
tory dynamic between translation and protein turn- arrests and in the presence of transcriptional co...
An important hallmark in embryonic development is characterized by the maternal-to-zygotic transitio...
Egg activation is essential for the successful transition from a mature oocyte to a developmentally ...
The oocyte-to-embryo transition involves extensive changes in mRNA translation, regulated in Drosoph...
Because maturing oocytes and early embryos lack appreciable transcription, posttranscriptional regul...
mRNA localisation and translational control is a conserved, universal process involved in a number o...
A cell integrates mitogenic signals received at the plasma membrane with intracellular biochemical c...
BACKGROUND: In many animals, the first few hours of life proceed with little or no transcription, an...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Germ cell development requires interplay between factors that control cell fate and division. Early ...