Avian leukosis virus (ALVs), an oncogenic retrovirus, induces immunosuppression and various tumors in chickens, posing a severe global threat to poultry health and causing substantial economic losses. Natural resistance alleles, notably tvar2 and tvbr3, confer genetic resistance to specific ALV subgroups (ALV-A, -K, and ALV-B, -D, -E, respectively). This study aimed to exploit this resistance by creating resistant chicken lines via primordial germ cells (PGCs)-mediated chimera. We first genotyped the tvar2 and tvbr3 loci in Qingyuan Partridge Chickens (QYPCs) and Zhanjiang Yellow Chickens (ZJYCs). Through selective mating, we generated homozygous tvar2/r2 and tvbr3/r3 QYPC embryos as PGC donors, and homozygous susceptible tvas/s and tvbs/s ZJYC embryos as recipients. Donor PGCs harvested from QYPC embryos were successfully cultured in vitro, as confirmed by the expression of germ cell-specific markers (DDX4, c-Kit, PRDM14) and scanning electron microscopy revealing characteristic microvilli. These PGCs were microinjected into recipient embryos, producing viable chimeric chickens. Genotyping confirmed the successful integration of the resistant donor-derived PGCs. The germline transmission efficiency reached 35.7%. Our findings demonstrate that PGC-mediated germline transmission provides an efficient strategy for rapidly establishing ALV-resistant poultry flocks, offering a potential strategy for establishing ALV-resistant poultry flocks by introgressing resistance alleles.
山东省济南市章丘区文博路2号
齐鲁师范学院 genelibs生信实验室
山东省济南市高新区舜华路750号
大学科技园北区F座4单元2楼
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