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Genes|February 25, 2022
Identification and Functional Analysis of the Regulatory Elements in the p<i>HSPA6</i> PromoterShuyu Jiao, Chunyan Bai, Chunyun Qi, et al.Frontiers in Immunology|June 26, 2024
Mechanism, structural and functional insights into nidovirus-induced double-membrane vesiclesXi Wang, Yiwu Chen, Chunyun Qi, et al.G3 (Bethesda, Md.)|March 23, 2018
Site-Specific Fat-1 Knock-In Enables Significant Decrease of n-6PUFAs/n-3PUFAs Ratio in PigsMengjing Li, Hongsheng Ouyang, Hongming Yuan, et al.Antiviral Research|December 22, 2019
Generation of pRSAD2 gene knock-in pig via CRISPR/Cas9 technologyZicong Xie, Huping Jiao, Haonan Xiao, et al.Scientific Reports|June 10, 2017
Optimization of a CRISPR/Cas9-mediated Knock-in Strategy at the Porcine Rosa26 Locus in Porcine Foetal FibroblastsZicong Xie, Daxin Pang, Kankan Wang, et al.Frontiers in Genetics|December 19, 2019
Identifying Common Genes, Cell Types and Brain Regions Between Diseases of the Nervous SystemMengling Qi, Shichao Fan, Zhi Wang, et al.Veterinary Immunology and Immunopathology|December 19, 2017
Characterization and comparative analysis of immunoglobulin lambda chain diversity in a neonatal porcine modelNannan Guo, Menghan Su, Zicong Xie, et al.Bone|May 26, 2020
A CRISPR-engineered swine model of COL2A1 deficiency recapitulates altered early skeletal developmental defects in humansBoyan Zhang, Chenyu Wang, Yue Zhang, et al.Viruses|January 23, 2024
Regulatory Non-Coding RNAs during Porcine Viral Infections: Potential Targets for Antiviral TherapyFeng Li, Hao Yu, Aosi Qi, et al.Iscience|October 24, 2022
Generation of PCBP1-deficient pigs using CRISPR/Cas9-mediated gene editingChunyun Qi, Daxin Pang, Kang Yang, et al.Pageof 3