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不同养殖模式对黄鳝肌肉品质、肠道微生物群多样性及肝脏代谢的影响()。 (括号内容原文缺失)

Effects of Different Farming Models on Muscle Quality, Intestinal Microbiota Diversity, and Liver Metabolism of Rice Field Eel ().

作者信息

Zhao Yifan, Zhou Wenzong, Li Muyan, Zhang Yuning, Lv Weiwei, Huang Weiwei, Yang Hang, Yuan Quan, Li Mingyou

机构信息

Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources by the Ministry of Education, Shanghai Ocean University, Shanghai 201306, China.

Eco-Environmental Protection Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.

出版信息

Foods. 2025 Jul 5;14(13):2383. doi: 10.3390/foods14132383.

Abstract

As consumer demand for quality fish products continues to rise, quality has become a key factor in market competition. Ecological aquaculture research is exploring various farming methods to balance high-quality demand with environmental protection. This study compared three aquaculture models-cage culture (CG), recirculating aquaculture (RAG), and rice-fish co-culture (RG)-by analyzing muscle quality (AOAC, GC-MS), intestinal microbiota (16S rRNA), and liver metabolism (LC-MS) to assess their effects on . In terms of muscle quality, the RG group showed increased levels of EPA and DHA, reduced muscle moisture and crude lipid content, and enhanced crude protein accumulation. The crude protein content was significantly higher in the RAG group than in the CG group ( < 0.05). The RG group also had the highest levels of total, essential, and umami amino acids, followed by the RAG and CG groups. In terms of intestinal microbiota, the RG group had the highest microbial diversity and stability, with increased abundance of Firmicutes and Bacteroidetes and decreased levels of Proteobacteria. Compared to the CG, the RAG group also showed increased microbial diversity and a reduction in pathogenic genera. Liver metabolomics analysis demonstrated that the RG group had significant advantages over the CG group in amino acid, lipid, and energy metabolism. The RAG group exhibited upregulation of glycerophospholipid metabolism and a decrease in oxidative stress marker levels. Overall, the RG group enhanced muscle quality and optimized intestinal and liver metabolism in .

摘要

随着消费者对优质鱼类产品的需求持续上升,质量已成为市场竞争的关键因素。生态水产养殖研究正在探索各种养殖方法,以平衡高质量需求与环境保护。本研究通过分析肌肉质量(AOAC、GC-MS)、肠道微生物群(16S rRNA)和肝脏代谢(LC-MS),比较了三种水产养殖模式——网箱养殖(CG)、循环水养殖(RAG)和稻鱼共作(RG),以评估它们对……的影响。在肌肉质量方面,RG组的EPA和DHA水平升高,肌肉水分和粗脂肪含量降低,粗蛋白积累增加。RAG组的粗蛋白含量显著高于CG组(<0.05)。RG组的总氨基酸、必需氨基酸和鲜味氨基酸水平也最高,其次是RAG组和CG组。在肠道微生物群方面,RG组的微生物多样性和稳定性最高,厚壁菌门和拟杆菌门的丰度增加,变形菌门水平降低。与CG组相比,RAG组的微生物多样性也有所增加,致病属减少。肝脏代谢组学分析表明,RG组在氨基酸、脂质和能量代谢方面比CG组具有显著优势。RAG组甘油磷脂代谢上调,氧化应激标志物水平降低。总体而言,RG组提高了……的肌肉质量,并优化了肠道和肝脏代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f09/12248573/075c1c9670f1/foods-14-02383-g001.jpg

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