中国畜禽种业 ›› 2026, Vol. 22 ›› Issue (8): 42-47.doi: 10.19543/j.cnki.1673-4556.20260717.001cstr: 32418.14.j.cnki.1673-4556.20260717.001

• 遗传改良 • 上一篇    下一篇

吉林省肉牛遗传改良研究进展

鲍迪, 孙铭, 秦立红   

  1. 吉林省农业科学院(中国农业科技东北创新中心),吉林 长春 130033
  • 收稿日期:2026-03-03 出版日期:2026-08-26 发布日期:2026-07-31
  • 作者简介:
    鲍迪(1994—),男,吉林省双辽人,博士,吉林省农业科学院,牛育种与技术创新团队科研助理,研究方向:肉牛遗传育种。E-mail:
    秦立红(1980—),女,吉林长春人,博士,研究员,硕士生导师,吉林省农业科学院牛育种与技术创新研究团队首席专家。吉林省高层次人才(D类),新英格兰大学动物遗传育种访问学者。研究方向:肉牛遗传育种,E-mail:
  • 基金资助:
    国家肉牛牦牛产业技术体系项目(CARS-37); 吉林省现代农业产业技术体系建设示范项目(JLARS-2026-070206); 吉林省农业科学院创新工程项目(CXGC2025ZD007); 吉林省农业科学院创新工程项目(CXGC2025YY003)

Research on the progress of genetic improvement of beef cattle in Jilin Province

Di Bao, Ming Sun, Lihong Qin   

  1. Jilin Academy of Agricultural Sciences (China Agricultural Science and Technology Northeast Innovation Center), Changchun, 130033, Jilin
  • Received:2026-03-03 Online:2026-08-26 Published:2026-07-31

摘要:

吉林省作为东北肉牛带核心区域与农业大省,依托丰富的粮食和秸秆资源,构建了多元化肉牛品种格局与全国领先的制种供种体系,在肉牛遗传改良领域取得显著成效。本文系统梳理吉林省肉牛遗传改良的发展基础、关键技术进展、现存问题及未来规划。目前,吉林省已形成“东黄(吉林省优秀地方品种-延边黄牛)、西红(白城地区的育成品种-草原红牛)、中改良(以西门塔尔为主的改良牛)”的产业布局。吉林省特色地方品种得到了提质增效,建立了常规育种与分子育种相结合的技术体系,全基因组选择、胚胎工程等技术的应用显著提升了育种效率;但仍面临种群选育保护不足、繁育体系运行欠佳、联合育种机制不完善等问题。未来需通过完善育种体系、强化技术创新、优化政策支撑、提升品牌影响力等措施,进一步提高优秀种源自给率,推动产业高质量发展,为我国肉牛种业自主可控提供产业样板。

关键词: 吉林省, 肉牛, 遗传改良, 育种

Abstract:

Jilin Province, as a core area of the Northeast beef cattle belt and a major agricultural province, has built a diversified beef cattle breed structure and a leading seed production and supply system nationwide, relying on its abundant grain and straw resources, achieving remarkable results in the field of beef cattle genetic improvement. This article systematically reviews the development foundation, key technological progress, existing problems, and future plans of beef cattle genetic improvement in Jilin Province. Currently, Jilin Province has formed an industrial layout of "Eastern Yellow (Yanbian Yellow Cattle), Western Red (China Steppe Red cattle), and Central Improved (improced cattle, mainly Simmental)," The quality and efficiency of Jilin Province's distinctive local breeds have been improved, and a technical system combining conventional breeding and molecular breeding has been established. The application of technologies such as whole-genome selection and embryo engineering has significantly improved breeding efficiency; however, problems still exist, such as insufficient population selection and protection, poor operation of the breeding system, and an imperfect joint breeding mechanism. In the future, it is necessary to further improve the self-sufficiency rate of core breeds and promote high-quality development of the industry by improving the breeding system, strengthening technological innovation, optimizing policy support, and enhancing brand influence.

Key words: Jilin Province, Beef cattle, Genetic improvement, Breeding

中图分类号: 

  • S823
[1]
杜莲英, 王秀芬. 基于县域的吉林省粮食生产及作物结构变化分析[J]. 中国农业资源与区划, 2016, 37(3): 31-37.
DU L Y, WANG X F. Study on the change of grain production and the crop structure of Jilin Province at county level[J]. Chinese Journal of Agricultural Resources and Regional Planning, 2016, 37(3): 31-37.
[2]
张留哲, 赵佳男, 张丽琼, 等. 基于CRISPR-Cas12i技术构建XIST基因敲除的华西牛成纤维细胞系[J]. 畜牧兽医学报, 2025, 56(11): 5464-5474.
ZHANG L Z, ZHAO J N, ZHANG L Q, et al. Construction of XIST gene knockout fibroblast cell line from Huaxi cattle using CRISPR-Cas12i technology[J]. Acta Veterinaria et Zootechnica Sinica, 2025, 56(11): 5464-5474.
[3]
刘笑笑. 延边黄牛不同部位牛肉品质的比较研究[D]. 延吉: 延边大学, 2011.
LIU X X. A comparative study on the quality of beef from different cuts of Yanbian Yellow Cattle[D]. Yanji: Yanbian University, 2011.
[4]
文力正, 赵玉民, 张国梁, 等. 草原红牛H-FABP基因单核苷酸多态性及其对肉质的影响[J]. 中国农学通报, 2008, 24(5): 17-21.
WEN L Z, ZHAO Y M, ZHANG G L, et al. Single nucleltide polymorphism of H-FABP gene and effect with meat quality in red steppe[J]. Chinese Agricultural Science Bulletin, 2008, 24(5): 17-21.
[5]
胡成华, 张国梁, 赵玉民, 等. 草原红牛及其导入利木赞血牛产肉性能对比试验[J]. 吉林农业科学, 2004, 29(5): 39-42.
HU C H, ZHANG G L, ZHAO Y M, et al. Experiment on comparing beef production efficiency of red cattle with that of cattle transferred with limuzan blood[J]. Journal of Jilin Agricultural Sciences, 2004, 29(5): 39-42.
[6]
赵福堂, 李世凤, 刘彦甫, 等. 肉牛冻配改良点标准化建设实践与示范[J]. 畜牧兽医杂志, 2026, 45(1): 40-42.
ZHAO F T, LI S F, LIU Y F, et al. Standardized construction practice and demonstration of beef cattle frozen semen breeding improvement sites[J]. Journal of Animal Science and Veterinary Medicine, 2026, 45(1): 40-42.
[7]
徐华, 车瑞香, 朱捷. 牛OPU-IVF技术发展现状和趋势[J]. 中国奶牛, 2023(2): 19-24.
XU H, CHE R X, ZHU J. Development status and trend of OPU-IVF technology in cattle[J]. China Dairy Cattle, 2023(2): 19-24.
[8]
杨成文, 张保海, 孔伟, 等. 西门塔尔肉牛冻胚和鲜胚移植效果调查分析[J]. 中国牛业科学, 2025, 51(6): 67-70.
YANG C W, ZHANG B H, KONG W, et al. Investigation and analysis on the transplantation effects of frozen and fresh embryos in Simmental beef cattle[J]. China Cattle Science, 2025, 51(6): 67-70.
[9]
金贞爱, 姚雪瑞, 高青山, 等. 延边黄牛胚胎移植技术研究[J]. 河南科技学院学报(自然科学版), 2016, 44(6): 38-41.
JIN Z A, YAO X R, GAO Q S, et al. Study on embryo transfer technology of Yanbian yellow cattle[J]. Journal of Henan Institute of Science and Technology (Natural Sciences Edition), 2016, 44(6): 38-41.
[10]
国长河, 魏景龙. 白城市加快发展现代肉牛产业[J]. 中国畜牧业, 2025(4): 26-27.
GUO C H, WEI J L. Accelerating development of modern beef cattle industry in Baicheng city[J]. China Animal Industry, 2025(4): 26-27.
[11]
朱波, 李俊雅. 我国肉用西门塔尔牛群体生长发育性状遗传参数估计及其遗传进展[J]. 中国畜牧兽医, 2020, 47(8): 2345-2354.
ZHU B, LI J Y. Estimation of genetic parameters of growth and development traits in Simmental beef cattle in my country and its genetic progress [J]. Chinese Journal of Animal Husbandry and Veterinary Medicine, 2020, 47(8): 2345-2354.
[12]
宁夏回族自治区科学技术厅. 肉牛全日粮分段高效精准养殖关键技术研究与示范[R]. 2023.
Science and Technology Department of Ningxia Hui Autonomous Region. Research and demonstration of key technologies for segmented, efficient, and precision beef cattle feeding[R]. 2023.
[13]
毛文智, 张书瑞, 李子香, 等. 安格斯牛杂交改良本地西门塔尔牛效果研究[J]. 吉林畜牧兽医, 2025, 46(3): 1-3.
MAO W Z, ZHANG S R, LI Z X, et al. Study on the effect of Angus cattle crossbreeding on improving local Simmental cattle[J]. Jilin Animal Husbandry and Veterinary Medicine, 2025, 46(3): 1-3.
[14]
杨松, 李慧, 孙芳, 等. 荷斯坦牛及其与安格斯牛杂交后代屠宰性能和肉品质的比较[J]. 中国畜牧兽医, 2025, 52(3): 1211-1221.
YANG S, LI H, SUN F, et al. Comparison of slaughter performance and meat quality between Holstein and Angus-Holstein F1 cattle[J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(3): 1211-1221.
[15]
李向阳, 张嘉保, 赵玉民, 等. 草原红牛微卫星DNA多态性的研究[J]. 中国草食动物, 2004, 24(3): 3-5.
LI X Y, ZHANG J B, ZHAO Y M, et al. Study on polymorphisms of red steppe cattle by microsatellites[J]. China Herbivores, 2004, 24(3): 3-5.
[16]
张凤, 孙志文, 上官爱哨, 等. 肉牛ACOX1基因多态性及与生长育肥性状的关联分析[J]. 中国畜牧杂志, 2025, 61(10): 191-198, 205.
ZHANG F, SUN Z W, SHANGGUAN A S, et al. Polymorphism of ACOX1 gene in beef cattle and its association with growth and fattening traits[J]. Chinese Journal of Animal Science, 2025, 61(10): 191-198, 205.
[17]
史良玉, 陈洪波, 程蕾, 等. 肉牛的SNP位点组合、筛选方法、基因芯片及其应用: CN202410701237.6[P]. 2024-12-10.
SHI L Y, CHEN H B, CHENG L, et al. SNP locus combinations, screening methods, gene chips and their applications in beef cattle: CN202410701237.6[P]. 2024-12-10.
[18]
张莹, 吴兆海, 卜登攀. 育肥期华西牛蛋白质与能量需要量研究[J]. 动物营养学报, 2022, 34(12): 7886-7894.
ZHANG Y, WU Z H, BU D P. A study on protein and energy requirements of Huaxi cattle during fattening period[J]. Chinese Journal of Animal Nutrition, 2022, 34(12): 7886-7894.
[19]
李昊. 43年建成华西牛核心种源基地: 内蒙古锡林郭勒盟撑起我国肉牛供种一片天[J]. 农产品市场, 2023(24): 30-31.
LI H. In 43 years, the core provenance base of West China Cattle was built-Xilin Gol League in Inner Mongolia propped up the supply of beef cattle in China[J]. Agricultural Products Market, 2023(24): 30-31.
[20]
胡艳明, 祖晶, 孙焕林, 等. FSH和LH对延边黄牛卵母细胞体外成熟及重组胚发育的影响[J]. 中国畜牧杂志, 2009, 45(11): 18-22.
HU Y M, ZU J, SUN H L, et al. Effects of FSH and LH on in vitro maturation of oocytes and development of recombinant embryos in Yanbian yellow cattle[J]. Chinese Journal of Animal Science, 2009, 45(11): 18-22.
[21]
张国梁, 秦立红, 李旭, 等. 红安格斯牛改良草原红牛性状分析[C]. //中国畜牧兽医学会养牛学分会第八届全国会员代表大会暨2015年学术研讨会论文集. 北京, 2015: 678-681.
ZHANG G L, QIN L H, LI X, et al. Traits analysis of red Angus cattle improved grassland red cattle[C]. //Proceedings of the 8th National Members' Congress and 2015 Academic Symposium of Cattle Society of Chinese Society of Animal Husbandry and Veterinary Medicine. Beijing, 2015: 678-681.
[22]
王元清, 王泽昭, 朱波, 等. 不同芯片密度对华西牛重要经济性状基因组评估准确性的影响[J]. 畜牧兽医学报, 2025, 56(2): 591-602.
WANG Y Q, WANG Z Z, ZHU B, et al. Comparison of prediction accuracy of genomic selection for economically important traits in Huaxi cattle based on different chip densities[J]. Acta Veterinaria et Zootechnica Sinica, 2025, 56(2): 591-602.
[23]
中国农业科学院北京畜牧兽医研究所. 华西牛推广成果发布会在内蒙古乌拉盖召开[J]. 畜牧业环境, 2025(16): 3.
Institute of Animal Science of CAAS. The conference of Huaxi cattle promotion results was held in Wulagai, Inner Mongolia[J]. Animal Industry and Environment, 2025(16): 3.
[1] 昝林森. 国际肉牛育种进展对我国地方黄牛遗传改良的启示[J]. 中国畜禽种业, 2026, 22(8): 10-18.
[2] 曹晓瑶, 李姣, 王亭, 熊兰玲, 蔡向庭, 冯思远, 王泽昭, 郑彩宏, 陈燕, 张路培, 高雪, 高会江, 朱波, 李俊雅. 中国肉牛遗传改良研究进展与未来展望:从“追赶”到“创新”的种业振兴之路[J]. 中国畜禽种业, 2026, 22(8): 19-31.
[3] 喇永富, 梁春年. 牦牛繁育关键技术创新应用、挑战及对策[J]. 中国畜禽种业, 2026, 22(8): 32-41.
[4] 王宏浩, 刘彦杰, 张元庆. 山西肉牛育种:聚焦“太行云牛”的遗传改良实践[J]. 中国畜禽种业, 2026, 22(8): 48-53.
[5] 彭朋, 刘廷玉, 赵慧峰, 赵博伟, 李素霞, 徐华, 李树静, 王昆. 河北省肉牛遗传改良现状、存在的问题及发展建议[J]. 中国畜禽种业, 2026, 22(8): 54-60.
[6] 冯豆, 邓红雨, 王利宁, 姚嘉伦, 贺磊, 全清华, 贺倩倩, 张震. 河南省肉牛发展现状及策略研究[J]. 中国畜禽种业, 2026, 22(8): 61-67.
[7] 杨武才, 杨本顺, 刘文杰, 周正海, 谭建兵, 孔贤亚, 昝林森. 中国黄牛保种、选育及产业化利用现状与发展建议[J]. 中国畜禽种业, 2026, 22(8): 79-89.
[8] 肖成朋, 李成林, 雷艳茹, 蔡钊, 谢伯斐, 王克君, 郭玉洁, 宫玉杰, 李东华, 金炜炜, 孙桂荣, 罗艳, 顾兴健, 陆明洲, 康相涛, 李文婷. GBNP-2026:面向畜禽遗传、育种、营养与生产的大语言模型专业问答能力评测基准[J]. 中国畜禽种业, 2026, 22(7): 17-27.
[9] 范津玮, 钟梓奇, 潘德优, 苏之青, 刘思宇, 杨政, 侯冠彧, 肖倩. 多组学技术在家禽遗传育种中的应用进展[J]. 中国畜禽种业, 2026, 22(7): 45-52.
[10] 程万里, 杨明宇, 席磊, 李转见, 郭玉洁. 畜禽重要表型智能测定技术研究进展与展望[J]. 中国畜禽种业, 2026, 22(7): 7-16.
[11] 何云梅, 田壮, 赵鸿雁, 乌兰其其格, 王晓燕, 乌日古玛拉, 吉日嘎郎图, 苗雄, 刘斌. 阿尔巴斯型绒山羊育种进展与产业发展[J]. 中国畜禽种业, 2026, 22(7): 83-91.
[12] 陈伟生, 李立望, 彭华. 我国肉牛业发展现状、历史演进与未来发展路径研究[J]. 中国畜禽种业, 2026, 22(6): 10-17.
[13] 缪立生, 汪聪勇, 曹阳, 赵玉民. 肉牛种业发展及遗传改良路径[J]. 中国畜禽种业, 2026, 22(6): 25-30.
[14] 张聪聪, 刘洪亮, 王珺, 任清丹, 罗晓彤, 李轩宇, 李春宇, 刘基伟, 朱永超, 吴健. 吉林省肉牛遗传改良举措及共性问题的思考与建议[J]. 中国畜禽种业, 2026, 22(6): 31-37.
[15] 王海, 余道宁, 张纯, 褚倩倩, 赵军均, 张岱阳, 汪聪勇. 华西牛育种技术创新与产业化推广研究[J]. 中国畜禽种业, 2026, 22(6): 38-44.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!