Sort   by:  
 Page size 
Since Japanese quail and chicken belong to the same order Galliforms, DNA sequence of both species are highly conserved and proved to be applicable for various analyses each other. Quail are commonly used to address physiological questions for reasons of economy. To test whether chicken microarrays ...
ORGANISM(S): Coturnix japonica 
In this study, we used RNA-seq to identify differences in gene expression patterns in ovarian follicles of female Japanese quail (Coturnix coturnix japonica) that produce large versus small eggs relative to their body size. A high quality reference genome is currently under construction by the Quail...
ORGANISM(S): Coturnix japonica 
Various physiological processes and behaviours are controlled by changing daylength. To dissect genes involved in the photoperiodic changes in physiology and behaviour, global expression analysis was performed using quail kept under short and long day conditions. Experiment Overall Design: The medio...
ORGANISM(S): Coturnix japonica 
The molecular mechanism of photoperiodic time measurement remains unknown in animals. Japanese quail is an excellent model for studying these phenomena because of their rapid and dramatic response to photoperiod. When quail are transferred from short to long day conditions, increase in plasma gonado...
ORGANISM(S): Coturnix japonica 
Whole Genome Bisulfite Sequencing (WGBS) has been the gold standard DNA methylation mapping and quantification for over a decade. Oxford Nanopore Technologies (ONT) sequencing directly measures nucleotide modifications. In this study, we have compared DNA methylation levels (5-methylcytosine) at CpG...
ORGANISM(S): Coturnix japonica 
Avian beaks show extreme species-specific variability in morphology, though they develop from the same primordial structures. In both humans and birds, cranial neural crest cells are the primary source of mesenchyme for the frontonasal prominence; previous work has shown that these cells contain mol...
ORGANISM(S): Coturnix japonica 
Avian beaks show extreme species-specific variability in morphology, though they develop from the same primordial structures. In both humans and birds, cranial neural crest cells are the primary source of mesenchyme for the frontonasal prominence; previous work has shown that these cells contain mol...
ORGANISM(S): Anas platyrhynchos 
Japanese quail embryonic skin samples
Sort   by:  
 Page size