Area of research
Small Animals · Animal Science and Zoology
Research interest
Research interests include Biology, Gene, Genetics, Animal science, Medicine, and Single-nucleotide polymorphism.
Unraveling the molecular basis of aggression in pigs through integrated transcriptomic and metabolomic analyses
A Functional Single Nucleotide Polymorphism in the 3′ Untranslated Region of the Porcine JARID2 Gene Is Associated with Aggressive Behavior of Weaned Pigs after Mixing
Genome-Wide Detection of Copy Number Variations and Evaluation of Candidate Copy Number Polymorphism Genes Associated With Complex Traits of Pigs
Comprehensive Transcriptome Analysis of Follicles from Two Stages of the Estrus Cycle of Two Breeds Reveals the Roles of Long Intergenic Non-Coding RNAs in Gilts
Pigs' skin lesions at weaning are primarily caused by standoff and being bullied instead of unilateral active attack at the individual level
Functionally Antagonistic Transcription Factors IRF1 and IRF2 Regulate the Transcription of the Dopamine Receptor D2 Gene Associated with Aggressive Behavior of Weaned Pigs
A Single-Nucleotide Polymorphism in the Promoter of Porcine ARHGAP24 Gene Regulates Aggressive Behavior of Weaned Pigs After Mixing by Affecting the Binding of Transcription Factor p53
Identification of functional single nucleotide polymorphisms in the porcine <i>SLC6A4</i> gene associated with aggressive behavior in weaned pigs after mixing
MiR-31 targets HSD17B14 and FSHR, and miR-20b targets HSD17B14 to affect apoptosis and steroid hormone metabolism of porcine ovarian granulosa cells
Identifying blood-based biomarkers associated with aggression in weaned pigs after mixing
Reestablishment of Social Hierarchies in Weaned Pigs after Mixing
Effects of tail docking and/or teeth clipping on behavior, lesions, and physiological indicators of sows and their piglets
Identification of Single Nucleotide Polymorphisms in Porcine MAOA Gene Associated with Aggressive Behavior of Weaned Pigs after Group Mixing
Teeth clipping, tail docking and toy enrichment affect physiological indicators, behaviour and lesions of weaned pigs after re-location and mixing
IncRNA <i>AK017368</i> promotes proliferation and suppresses differentiation of myoblasts in skeletal muscle development by attenuating the function of miR‐30c
Genome-wide differential mRNA expression profiles in follicles of two breeds and at two stages of estrus cycle of gilts
Stocking density affects welfare indicators of growing pigs of different group sizes after regrouping
MicroRNA-128 targets myostatin at coding domain sequence to regulate myoblasts in skeletal muscle development
Effects of tail docking and teeth clipping on the physiological responses, wounds, behavior, growth, and backfat depth of pigs1