China Dairy ›› 2026, Vol. 0 ›› Issue (3): 19-24.doi: 10.12377/1671-4393.26.03.03
• REPRODUCTION & BREEDING • Previous Articles Next Articles
YUAN Yang1, WEI jinxiao2, ZHAO Guangying3, ZHANG Wei1, WEI Guanghui1,*, GUO Liya1,*
| [1] 邢生炎,黄永震,吕世杰,等.生物育种技术及其在畜禽育种中的应用研究进展[J].中国畜牧杂志,2024,60(3):57-65. [2] 张萌萌,蒋颖,李宁.全球基因编辑技术产业化发展分析及其在农业动物育种中的应用[J].农业生物技术学报,2024,32(3):691-700. [3] 刘雯雯,董发明,毕延震.多基因编辑技术的发展及其在畜牧种质创新中的应用[J].畜牧兽医学报,2024,55(8):3267-3275. [4] Somavilla A L,Regitano L,Rosa G,et al.Genome-enabled prediction of breeding values for feedlot average daily weight gain in Nelore cattle[J]. Genes Genomes Genetics,2017,7(6): 1855-1859. [5] WANG Z.Genome engineering in cattle:Recent technological advancements[J]. Chromosome Research,2015,23(1):17-29. [6] 陈鹏,何曙光,包玲玲,等.肉牛遗传育种与繁殖技术发展趋势[J].畜牧兽医科技信息,2025(3):106-108. [7] 王佳美,李欣淼,高雪,等.精准基因编辑技术在家畜育种中的研究进展[J].中国畜禽种业,2025,21(1):13-19. [8] Su G,Christensen F O,Ostersen T,et al.Estimating additive and non-additive genetic variances and predicting genetic merits using genome-wide dense single nucleotide polymorphism markers.[J].PLoS ONE,2017,7(9):e45293. [9] Silva R M O,Fragomeni B O,Lourenco D A L,et al. Accuracies of genomic prediction of feed efficiency traits using different prediction and validation methods in an experimental Nelore cattle population[J]. Journal of Animal Science,2016,94(9):3613-3623. [10] 郭鹏,张建斌,曹晟.肉牛日增重全基因组选择比较研究[J].中国畜牧杂志,2023,59(1):143-148. [11] 张天留,葛菲,朱波,等.肉牛种业科技创新发展现状与趋势分析[J].中国畜禽种业,2022,18(10):5-16. [12] 袁泽湖,葛玲,李发弟,等. 整合生物学先验信息的全基因组选择方法及其在家畜育种中的应用进展[J]. 畜牧兽医学报,2021,52(12): 3323-3334. [13] Pacheco A H,Hernandez O R,Chen Y S,et al.Phenotyping strategies and genetic background of dairy cattle behavior in intensive production systems - from trait definition to genomic selection[J].Journal of dairy science,2024,108(1):6-32. [14] 张顺进,寇浩玮,丁晓婷,等. 全基因组选择技术在反刍动物遗传育种中的研究进展及其应用[J]. 农业生物技术学报,2021,29(3):571-578. [15] Strucken EM,Gudex B,Ferdosi MH,et al.Performance of different SNP panels for parentage testing in two East Asian cattle breeds[J]. Animal Genetics,2014,45(4):572-575. [16] Xu L,Gao N,Wang Z Z,et al.Incorporating genome annotation into genomic prediction for carcass traits in Chinese Simmental beef[J]. Frontiers in Genetics,2020,11:481. [17] 郑旭. 基于模拟技术的基因组选择和优化选配研究[D].北京:中国农业科学院,2023. [18] Liu J,Wang Z,Su X,et al.Comparative genomics provides insights into the biogeographic and biochemical diversity of meliaceous species[J]. Nature communications,2025,16(1):2603. [19] Wang A,Pokhrel B,Hernandez P G,et al.Regulation of the expression of casein alpha S1 and S2 genes in the bovine mammary epithelial cells by STAT5A.[J].Journal of dairy science,2024,107(12):11139-11148. [20] Duarte B S D V G,Castillo A J V,Souza K A,et al.Effects of CSN1S1 and CSN3 casein gene polymorphisms on milk protein composition,milk production,and curd yield of water buffaloes[J].International Dairy Journal,2024,149:105823. [21] Ünal Hamiye,Kopuzlu Sinan.The relationships between κ-casein (CSN3) gene polymorphism and some performance traits in Simmental cattle[J].Archives Animal Breeding,2022,65(1):129-134. [22] 赵孝凤,郭刚,曹杰,等.中国荷斯坦牛健康性状遗传参数估计[J].中国畜牧兽医,2024,51(6):2501-2507. [23] 家瑞科,陈傲,叶雯,等.牛奶主要成分合成的重要调控因子和通路研究进展[J].中国畜牧杂志,2025,61(1):1-8. [24] 王璐璐. 中国荷斯坦牛产奶性状基因的精细定位[D].杨凌:西北农林科技大学,2025. [25] 张梦帆,洛桑顿珠,喇永福,等.牦牛FABP4和FABP5基因克隆及生物信息和组织表达分析[J].西北农林科技大学学报(自然科学版),2025,53(7):9-17. [26] 冉世前. 脂质组学揭示饲喂ω-3多不饱和脂肪酸原料对山羊乳脂品质的影响[D].北京:中国农业科学院,2022. [27] K C M,M J S,F D K,et al.Modifiable management practices to improve udder health in dairy cattle during the dry period and early lactation:A scoping review.[J].Journal of dairy science,2021,104(9):10143-10157. [28] Chase E L,Fortina R .Environmental and economic responses to precision feed management in dairy cattle diets[J].Agriculture,2023,13(5):13051032. [29] 宋建,贺巾锋,郑伟杰,等.自主研发奶牛13K和40K液相SNP芯片的性能验证及在基因组选择中的应用[J].畜牧兽医学报,2025,56(11):5502-5511. [30] 许尚忠. 中国牛产业发展概况及展望[J].畜牧产业,2021(7):35-40. |
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