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过去十年中国猪营养领域的创新

Innovation in Swine Nutrition in China over the Past Decade.

作者信息

Ma Ning, Cai Kun, Liu Haoyu, He Lihang, Liu Chunchen, Ma Xi

机构信息

State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing, China.

College of Animal Science and Technology, Shihezi University, Shihezi, China.

出版信息

J Nutr. 2025 Jun 24. doi: 10.1016/j.tjnut.2025.06.009.

Abstract

Food security and environmental challenges have reached a critical point that demands transformative interventions. In this context, optimizing swine nutrition emerges as a pivotal area of research. As the largest pork producer globally, China has achieved initial large-scale swine farming through the modernization of its feed industry. In the past decade, Chinese swine feeding standards were established to conduct modern analyses of nutritional requirements. Meanwhile, quality control strategies and sustainable development plans were developed to form a low-carbon, efficient, and internationalized production model. This review systematically addresses significant challenges in the swine industry, such as protein feed shortages, declined meat quality, antibiotic overuse, excessive mycotoxin levels, and environmental threats linked to intensive farming. It emphasizes targeted strategies, including precision feeding, waste recycling in circular agriculture, mycotoxin degradation, and antibiotic alternatives, which are proposed to address these issues. Under the future trends of the modern smart livestock industry, advancements in synthetic biology, artificial intelligence, molecular technologies, and carbon reduction practices are anticipated to further refine swine nutrition, thereby improving feed efficiency, animal welfare, and sustainable practices in alignment with the global "One Health" initiative.

摘要

粮食安全和环境挑战已达到需要变革性干预的临界点。在此背景下,优化猪营养成为一个关键研究领域。作为全球最大的猪肉生产国,中国通过饲料行业现代化实现了初步的大规模养猪。在过去十年中,制定了中国猪饲养标准以对营养需求进行现代分析。同时,制定了质量控制策略和可持续发展计划,以形成低碳、高效和国际化的生产模式。本综述系统地阐述了养猪业面临的重大挑战,如蛋白质饲料短缺、肉品质量下降、抗生素过度使用、霉菌毒素水平过高以及与集约化养殖相关的环境威胁。它强调了针对性策略,包括精准饲喂、循环农业中的废物回收、霉菌毒素降解和抗生素替代品,旨在解决这些问题。在现代智能畜牧业的未来趋势下,合成生物学、人工智能、分子技术和碳减排实践的进步有望进一步优化猪营养,从而提高饲料效率、动物福利,并与全球“同一健康”倡议保持一致的可持续实践。

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