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肌肉内脂肪沉积与鸡肉品质的研究进展:遗传学与营养

Research advances in intramuscular fat deposition and chicken meat quality: genetics and nutrition.

作者信息

Song Jianlou, Lv Zengpeng, Guo Yuming

机构信息

State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing, 100193, PR China.

出版信息

J Anim Sci Biotechnol. 2025 Jul 16;16(1):100. doi: 10.1186/s40104-025-01234-5.

Abstract

Chicken meat quality directly influences consumer acceptability and is crucial for the economic success of the poultry industry. Genetics and nutrition are key determinants of the meat quality traits in broilers. This review summarizes the research advances in this field, with a focus on the genetic and nutritional foundations that regulate intramuscular fat (IMF) deposition and meat quality in chickens over the past decade. The effects of embryonic nutrition, both maternal nutrition and in ovo feeding (IOF), on skeletal muscle development, the IMF content, and meat quality traits in broilers are also discussed. In genetics, single-cell RNA sequencing revealed that de novo lipogenesis predominantly occurs in myocytes, which is key to the formation of IMF in chicken muscle tissue. Fatty acid synthase (FASN) is the key enzyme involved in this process. This discovery has reshaped the traditional understanding of intramuscular lipid metabolism in poultry. Key genes, proteins, and pathways, such as FASN, FABP4, PPARG, C/EBPα, SLC27A1; LPL, APOA1, COL1A1; PPAR and ECM-receptor interactions signaling, have been identified to regulate IMF content and distribution by modulating fatty acid metabolism and adipogenesis. LncHLFF was innovatively found to promote ectopic IMF deposition in chickens via exosome-mediated mechanisms without affecting abdominal fat deposition. MiR-27b-3p and miR-128-3p were found to inhibit adipogenic differentiation by targeting PPARG, thereby affecting IMF formation. In nutrition, nutrigenomics research has shown that fructose enhances IMF deposition by activating ChREBP, providing new targets for nutritional interventions. Adjusting dietary components, including energy, protein, amino acids, fatty acids, and phytochemicals (e.g., rutin), has been shown to significantly improve meat quality in broilers. Maternal nutrition (e.g., intake of energy, amino acids, vitamins, and trace elements) and IOF (e.g., N-carbamylglutamate) have also been confirmed to significantly impact offspring meat quality, opening new avenues for improving embryonic nutrition. Based on these significant advancements, this review proposes strategies that integrate genetic and nutritional approaches. These strategies aim to modulate the differentiation fate of paraxial mesenchymal stem cells toward myogenic or adipogenic lineages and the interaction between muscle and adipose tissues. These insights would help to improve meat quality while ensuring the growth performance of broiler chickens.

摘要

鸡肉品质直接影响消费者的接受度,对家禽业的经济成功至关重要。遗传和营养是肉鸡肌肉品质性状的关键决定因素。本综述总结了该领域的研究进展,重点关注过去十年中调节鸡肌肉内脂肪(IMF)沉积和肉质的遗传和营养基础。还讨论了胚胎营养,包括母体营养和胚内注射营养(IOF)对肉鸡骨骼肌发育、IMF含量和肉质性状的影响。在遗传学方面,单细胞RNA测序显示,从头脂肪生成主要发生在肌细胞中,这是鸡肌肉组织中IMF形成的关键。脂肪酸合酶(FASN)是参与这一过程的关键酶。这一发现重塑了对家禽肌肉内脂质代谢的传统认识。已确定关键基因、蛋白质和信号通路,如FASN、FABP4、PPARG、C/EBPα、SLC27A1;LPL、APOA1、COL1A1;PPAR和细胞外基质受体相互作用信号通路,通过调节脂肪酸代谢和脂肪生成来调节IMF含量和分布。创新性地发现长链非编码RNA LncHLFF通过外泌体介导的机制促进鸡异位IMF沉积,而不影响腹部脂肪沉积。发现miR-27b-3p和miR-128-3p通过靶向PPARG抑制脂肪生成分化,从而影响IMF形成。在营养方面,营养基因组学研究表明,果糖通过激活ChREBP增强IMF沉积,为营养干预提供了新靶点。调整日粮成分,包括能量、蛋白质、氨基酸、脂肪酸和植物化学物质(如芦丁),已被证明可显著改善肉鸡的肉质。母体营养(如能量、氨基酸、维生素和微量元素的摄入量)和IOF(如N-氨甲酰谷氨酸)也已被证实对后代肉质有显著影响,为改善胚胎营养开辟了新途径。基于这些重大进展,本综述提出了整合遗传和营养方法的策略。这些策略旨在调节轴旁间充质干细胞向肌源性或脂肪源性谱系的分化命运以及肌肉与脂肪组织之间的相互作用。这些见解将有助于改善肉质,同时确保肉鸡的生长性能。

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