The Drosophila dysfusion basic-helix-loop-helix-PAS transcription factor gene is expressed in specialized fusion cells that reside at the tips of migrating tracheal branches. dysfusion mutants were isolated, and genetic analysis of live embryos revealed that mutant tracheal branches migrate to close proximity but fail to recognize and adhere to each other. Misexpression of dysfusion throughout the trachea further indicated that dysfusion has the ability to both inhibit cell migration and promote ectopic tracheal fusion. Nineteen genes whose expression either increases or decreases in fusion cells during development were analyzed in dysfusion mutant embryos. dysfusion upregulates the levels of four genes, including the shotgun cell adhesion ...
Development of the Tracheal System in Drosophila melanog-sterThe development of the tracheal system ...
AbstractBackground: Branching morphogenesis transforms an epithelial sheet into a tubular network wi...
動物の発生において形と機能を調和させる仕組みを発見 --形の変化が細胞分化を方向づける--. 京都大学プレスリリース. 2019-08-28.During organogenesis, inducti...
The Drosophila dysfusion basic-helix-loop-helix-PAS transcription factor gene is expressed in specia...
The Drosophila dysfusion basic-helix-loop-helix–PAS transcription factor gene is expressed in specia...
The Drosophila Dysfusion basic-helix-loop-helix-PAS (bHLH-PAS) protein controls the transcription of...
The development of the mature insect trachea requires a complex series of cellular events, including...
Drosophila tracheal fusion cells play multiple important roles in guiding and facilitating tracheal ...
The Drosophila larval tracheal system consists of a highly branched tubular organ that becomes inter...
AbstractThe Drosophila larval tracheal system consists of a highly branched tubular organ that becom...
A stereotyped tubular epithelial network forms many of our bodies’ organs and, defects in the format...
AbstractThe tracheal system of Drosophila embryos achieves its archetypal branching pattern through ...
SummaryThe development of the complex network of epithelial tubes that ultimately forms the Drosophi...
We identified a Drosophila gene, pruned, that regulates formation of the terminal branches of the tr...
AbstractWhile studying the developmental functions of the Drosophila dopamine synthesis pathway gene...
Development of the Tracheal System in Drosophila melanog-sterThe development of the tracheal system ...
AbstractBackground: Branching morphogenesis transforms an epithelial sheet into a tubular network wi...
動物の発生において形と機能を調和させる仕組みを発見 --形の変化が細胞分化を方向づける--. 京都大学プレスリリース. 2019-08-28.During organogenesis, inducti...
The Drosophila dysfusion basic-helix-loop-helix-PAS transcription factor gene is expressed in specia...
The Drosophila dysfusion basic-helix-loop-helix–PAS transcription factor gene is expressed in specia...
The Drosophila Dysfusion basic-helix-loop-helix-PAS (bHLH-PAS) protein controls the transcription of...
The development of the mature insect trachea requires a complex series of cellular events, including...
Drosophila tracheal fusion cells play multiple important roles in guiding and facilitating tracheal ...
The Drosophila larval tracheal system consists of a highly branched tubular organ that becomes inter...
AbstractThe Drosophila larval tracheal system consists of a highly branched tubular organ that becom...
A stereotyped tubular epithelial network forms many of our bodies’ organs and, defects in the format...
AbstractThe tracheal system of Drosophila embryos achieves its archetypal branching pattern through ...
SummaryThe development of the complex network of epithelial tubes that ultimately forms the Drosophi...
We identified a Drosophila gene, pruned, that regulates formation of the terminal branches of the tr...
AbstractWhile studying the developmental functions of the Drosophila dopamine synthesis pathway gene...
Development of the Tracheal System in Drosophila melanog-sterThe development of the tracheal system ...
AbstractBackground: Branching morphogenesis transforms an epithelial sheet into a tubular network wi...
動物の発生において形と機能を調和させる仕組みを発見 --形の変化が細胞分化を方向づける--. 京都大学プレスリリース. 2019-08-28.During organogenesis, inducti...