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Background: Antler is an important economic trait of sika deer (Cervus nippon), capable of rapid growth without signs of tumorigenesis. However, the molecular mechanisms underlying its unique growth pattern remain poorly understood. This study conducted a combined transc...

2026-04-01 | MTBLS12622 | MetaboLights
we used proteomic technology to disclose the difference of antler regeneration between red deer and sika deer. Through functional analysis, we obtained differentially expressed proteins and the pathway involved in antler regeneration between two groups
ORGANISM(S): Cervus elaphus elaphus Cervus nippon nippon 
2019-06-18 | PXD012090 | Pride
We used label-free proteomics approach to analyze the protein expression dynamics of the antler tip in 6 developmental periods (15, 25, 45, 65, 100 and 130 days after the previous antler cast) and costal cartilage. the stages special proteins and differentially expressed proteins (DEPs) in different...
ORGANISM(S): Cervus nippon hortulorum 
2021-09-10 | PXD024323 | Pride
Sika_genome
Studies of the gene expression profiles associated with the postnatal late growth, development and aging of skeletal muscle are lacking in sika deer. To understand the molecular mechanisms of the growth and development of sika deer skeletal muscle, we used de novo RNA-seq analyses to determine the d...
ORGANISM(S): Cervus nippon 
2020-01-11 | GSE142977 | GEO
Cervus nippon breed:Sika deer Genome
Studies of the miRNA expression profiles associated with the postnatal late growth, development and aging of skeletal muscle are lacking in sika deer. To understand the molecular mechanisms of the growth and development of sika deer skeletal muscle, we used de novo RNA-seq analyses to determine the ...
ORGANISM(S): Cervus nippon 
2020-01-11 | GSE142978 | GEO
Altered mRNA expression in sika deer skeletal muscle with age
Altered miRNA expression in sika deer skeletal muscle with age
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