中国畜禽种业 ›› 2026, Vol. 22 ›› Issue (6): 53-59.doi: 10.19543/j.cnki.1673-4556.20260529.001cstr: 32418.14.j.cnki.1673-4556.20260529.001

• 遗传改良 • 上一篇    下一篇

四川省牛产业现状及高质量发展建议

陈晓云(), 方东辉, 易军, 付茂忠, 甘佳, 约达阿果, 石溢, 邓小东, 马晓琴, 陈莹, 曹瑞娟, 王巍()   

  1. 四川省畜牧科学研究院,四川 成都 610066
  • 收稿日期:2026-02-12 出版日期:2026-06-26 发布日期:2026-07-06
  • 通讯作者: 王巍 E-mail:863550136@qq.com;582181328@qq.com
  • 作者简介:陈晓云(1990—),女,四川成都人,研究方向:动物遗传育种与疫病防控,E-mail:863550136@qq.com
  • 基金资助:
    国家现代农业产业技术体系四川肉牛创新团队项目(SCCXTD-2026-13);四川省财政运行专项(SASA2026CZYX003);四川省省级科研院所基本科研业务费(SASA202505)

Current situation and high-quality development suggestions of the cattle industry in Sichuan province

Xiaoyun Chen(), Donghui Fang, Jun Yi, Maozhong Fu, Jia Gan, Aguo Yueda, Yi Shi, Xiaodong Deng, Xiaoqin Ma, Ying Chen, Ruijuan Cao, Wei Wang()   

  1. Sichuan Academy of Animal Science, Chengdu, 610066, Sichuan
  • Received:2026-02-12 Online:2026-06-26 Published:2026-07-06
  • Contact: Wei Wang E-mail:863550136@qq.com;582181328@qq.com

摘要:

四川省作为全国重要畜牧业基地,牛产业是其农业农村经济的支柱产业,在保障国家肉奶供给安全、促进农牧民增收致富、推动乡村全面振兴中发挥着不可替代的核心作用。2025年全省牛存栏784.5万头,位列全国第三;牛肉产量39万t,生鲜乳产量64.7万t,产业整体正由传统数量型向现代质量效益型加速转型。本文采用文献研究法、统计分析法、实地调研法和比较分析法,系统梳理了四川牛产业的发展现状,深入剖析了制约产业高质量发展的深层次问题。研究发现,四川拥有全国最丰富的牛种遗传资源之一,自主培育出“蜀宣花牛”等优良品种,规模化养殖比重稳步提升,全产业链框架初步形成,绿色种养循环模式逐步推广,科技创新多点突破。但对标畜牧业强省与国际先进水平,产业仍面临种业自主创新能力弱、优质饲草料供给短缺、屠宰加工精深程度低、基层防疫和科技服务体系有短板、市场品牌竞争力不足等结构性矛盾。基于此,本文从种业振兴、饲草保障、全产业链升级、疫病净化、绿色循环发展、政策金融支持六大维度提出系统性对策建议,以期为四川建设“牛业强省”提供科学依据和决策参考,推动其实现由牛业大省向牛业强省的历史性跨越,为建设新时代更高水平的“天府粮仓”贡献力量。

关键词: 四川牛产业, 种业振兴, 全产业链, 高质量发展

Abstract:

As a pivotal national base for animal husbandry in China, Sichuan Province boasts a cattle industry that serves as a pillar of its agricultural and rural economy. The industry plays an irreplaceable role in ensuring the national supply security of meat and milk, increasing farmers' and herders' incomes, and promoting comprehensive rural revitalization. In 2025, the province's cattle inventory reached 7.845 million head, ranking third nationwide; beef production stood at 390,000 tons; and milk output reached 647,000 tons. The industry as a whole is accelerating its transformation from a traditional quantity-driven model to a modern quality- and efficiency-oriented one. Drawing on literature review, statistical analysis, field investigations, and comparative analysis, this paper systematically reviews the current development status of Sichuan's cattle industry and delves into the deep-seated problems constraining its high-quality development. The findings indicate that Sichuan possesses some of the richest cattle genetic resources in China and has independently developed superior varieties such as the Shuxuan Cattle; the proportion of large-scale farming has steadily increased; a framework for the entire industrial chain has taken initial shape; the green crop-livestock circular model has been gradually promoted; and innovative breakthroughs in science and technology have emerged on multiple fronts. Nevertheless, when benchmarked against leading animal husbandry provinces and advanced international standards, the industry still faces structural challenges, including weak independent innovation capacity in the seed industry, insufficient supply of high-quality forage, low levels of intensive and deep processing in the slaughtering sector, deficiencies in grassroots epidemic prevention and technical service systems, and inadequate market brand competitiveness. In response, this paper proposes systematic countermeasures across six dimensions: seed industry revitalization, forage supply security, whole-industrial-chain upgrading, disease purification, green circular development, and policy and financial support. The aim is to provide a scientific evidence base and decision-making references for building Sichuan into a powerhouse in the cattle industry, thereby facilitating the province’s historic leap from a major cattle-producing province to a strong one and contributing to the construction of a higher-level “Tianfu Granary” in the new era.

Key words: Sichuan cattle industry, Seed industry vitalization, Whole industrial chain, High-quality development

中图分类号: 

  • S823
[1] 李强, 朱砺, 何志平. 四川省畜禽遗传资源志[M]. 北京: 中国农业出版社, 2024.
LI Q, ZHU L, HE Z P. Livestock and poultry genetic resources of Sichuan province[M]. Beijing: China Agriculture Press, 2024.
[2] 陈晓云, 王巍, 甘佳, 等. 蜀宣花牛新品种培育及产业化开发[J]. 中国畜禽种业, 2024, 20(12): 38-44.
CHEN X Y, WANG W, GAN J, et al. Cultivation and industrialization development of new varieties of Shuxuan cattle[J]. The Chinese Livestock and Poultry Breeding, 2024, 20(12): 38-44.
[3] 刘晓霞, 周凡莉, 杨壮, 等. 麦洼牦牛遗传资源保存方法及阿坝州内保存现状分析[J]. 畜牧业环境, 2024(9): 11-12.
LIU X X, ZHOU F L, YANG Z, et al. Preservation methods of genetic resources of Maiwa yak and analysis of preservation status in Aba Prefecture[J]. Animal Industry and Environment, 2024(9): 11-12.
[4] 高慧纯, 王莉娟, 刘园, 等. 四川省畜禽遗传资源的保护与利用[J]. 四川畜牧兽医, 2025, 52(11): 1-3.
GAO H C, WANG L J, LIU Y, et al. Protection and utilization of livestock and poultry genetic resources in Sichuan province[J]. Sichuan Animal & Veterinary Sciences, 2025, 52(11): 1-3.
[5] 韩磊, 刁虹月, 何馨怡. 中国肉牛产业高质量发展的现实困境与政策路径[J]. 中国畜牧杂志, 2026, 62(4): 410-415.
HAN L, DIAO H Y, HE X Y. Realistic dilemma and policy path of high-quality development of beef cattle industry in China[J]. Chinese Journal of Animal Science, 2026, 62(4): 410-415.
[6] 王雷, 周苏高, 孙平谕, 等. 中国肉牛与奶牛产业生产形势分析与发展建议[J]. 中国牛业科学, 2026, 52(1): 1-5, 14.
WANG L, ZHOU S G, SUN P Y, et al. Analysis of production situation and development recommendations for beef and dairy cattle in China[J]. China Cattle Science, 2026, 52(1): 1-5, 14.
[7] 杨清容, 戴隆江, 覃志贵, 等. 肉牛高效养殖技术集成与推广[J]. 现代畜牧科技, 2023(8): 70-72.
YANG Q R, DAI L J, QIN Z G, et al. Integration and popularization of efficient breeding technology for beef cattle[J]. Modern Animal Husbandry Science & Technology, 2023(8): 70-72.
[8] 唐玮琦, 程明军, 伍文丹, 等. 对四川农区肉牛产业高质量发展的思考[J]. 四川畜牧兽医, 2024, 51(8): 5-7.
TANG W Q, CHENG M J, WU W D, et al. Thoughts on high-quality development of beef cattle industry in agricultural areas of Sichuan Province[J]. Sichuan Animal & Veterinary Sciences, 2024, 51(8): 5-7.
[9] 金录国, 周奎良. 基于 “物联网+人工智能” 的肉牛养殖园区技术推广探究[J]. 中国牛业科学, 2024, 50(4): 73-76.
JIN L G, ZHOU K L. Exploration of the promotion of beef cattle breeding park technology based on 'Internet of Things+Artificial intelligence'[J]. China Cattle Science, 2024, 50(4): 73-76.
[10] 魏萌, 张丽, 张一敏, 等. 我国肉牛屠宰加工产业发展现状及对策研究[J]. 吉林农业大学学报, 2023, 45(4): 429-436.
WEI M, ZHANG L, ZHANG Y M, et al. Development status and countermeasures of beef cattle slaughtering and processing industry in China[J]. Journal of Jilin Agricultural University, 2023, 45(4): 429-436.
[11] 冯晓敏. 四川牛产业发展报告[N]. 乳业时报,2025-08-01(4).
FENG X M. Development report on cattle industry in Sichuan province[N]. Dairy Times, 2025-08-01(4).
[12] 陈秋吉. 育种有芯 产业发展更有牛劲[N]. 四川日报, 2025-09-17(8).
CHEN Q J. Core breeding empowers robust development of cattle industry[N]. Sichuan Daily, 2025-09-17(8).
[13] 吴佳琦, 刘殿鹏, 王梓. 多种组学分析技术在牛羊生产中的应用[J]. 畜牧产业, 2025(8): 114-120.
WU J Q, LIU D P, WANG Z. Application of various omics analysis techniques in cattle and sheep production[J]. Animal Agriculture, 2025(8): 114-120.
[14] 田程晨, 杨惠. 四川省畜禽粪污治理由 “治” 向 “用” 转变[N]. 农民日报,2025-11-12 (6).
Tian C C, Yang H. Livestock manure treatment in Sichuan province: transition from disposal to utilization [N]. Farmers' Daily, 2025‑11‑12(6).
[15] 王德贵, 董永梅, 冉强, 等. 四川饲用燕麦研究进展[J]. 草学, 2025(3): 1-5, 13.
WANG D G, DONG Y M, RAN Q, et al. Research progress of forage oat in Sichuan[J]. Journal of Grassland and Forage Science, 2025(3): 1-5, 13.
[16] 古再丽努尔·艾麦提, 庹勇, 张妤, 等. 燕麦草在反刍动物生产中的应用研究进展[J]. 饲料研究, 2025, 48(17): 155-159.
GUZAILINUER A, TUO Y, ZHANG Y,et al. Research progress on application of oat grass in ruminant production[J]. Feed Research, 2025, 48(17): 155-159.
[17] 马勇俊, 斯兹伟, 胡生富, 等. 推进攀枝花市牛羊产业高质量发展的对策与措施[J]. 四川畜牧兽医, 2024, 51(7): 13-16.
MA Y J, SI C W, HU S F, et al. Countermeasures and measures to promote the high-quality development of cattle and sheep industry in Panzhihua city[J]. Sichuan Animal & Veterinary Sciences, 2024, 51(7): 13-16.
[18] 阿果约达, 王巍, 甘佳, 等. 四川肉牛产业发展报告[J]. 中国牛业科学, 2025, 51(4): 15-19.
A G Y D, WANG W, GAN J, et al. Report on the development of the beef cattle industry in Sichuan Province[J]. China Cattle Science, 2025, 51(4): 15-19.
[19] 吴桂莹, 王妍, 黄焮榆, 等. 我国饲草产业发展现状、未来趋势及高质量发展对策[J/OL]. 中国饲料, 2026: 1-6. (2026-04-08). .
WU G Y, WANG Y, HUANG X Y, et al. Development status, future trend and high quality development countermeasures of forage industry in China[J/OL]. China Feed, 2026: 1-6. (2026-04-08). .
[20] 王凯, 张能飞, 李嘉杰, 等. 四川低温奶的现状分析及前景展望[J]. 畜禽业, 2023, 34(12): 37-39.
WANG K, ZHANG N F, LI J J, et al. Present situation analysis and prospect of low-temperature milk in Sichuan[J]. Livestock and Poultry Industry, 2023, 34(12): 37-39.
[21] 田永刚. 牛病监测与养殖场疫病防控措施解析[J]. 吉林畜牧兽医, 2026, 47(3): 121-123.
TIAN Y G. Analysis of cattle disease monitoring and prevention and control measures of farm epidemic disease[J]. Jilin Animal Husbandry and Veterinary Medicine, 2026, 47(3): 121-123.
[22] 何吉成, 刘梦丹. 我国畜禽粪污无害化处理与资源化利用的现状与思考[J]. 畜牧业环境, 2026(7): 29-32.
HE J C, LIU M D. Present situation and thinking of harmless treatment and resource utilization of livestock manure in China[J]. Animal Industry and Environment, 2026(7): 29-32.
[23] 陈沛, 何宇, 张勃. 肉牛品种改良对产业效益提升的影响[J]. 畜牧业环境, 2026(7): 10-11.
CHEN P, HE Y, ZHANG B. Influence of beef cattle breed improvement on industrial benefit improvement[J]. Animal Industry and Environment, 2026(7): 10-11.
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