Molecular mechanisms underlying the impact of muscle fiber types on meat quality in livestock and poultry

牲畜 骨骼肌 纤维类型 生物 质量(理念) 心肌细胞 肌肉纤维 多核 生物技术 食品科学 细胞生物学 解剖 生态学 认识论 哲学
作者
Mingshen Mo,Zihao Zhang,Xiaotong Wang,Wenjin Shen,Li Zhang,Shudai Lin
出处
期刊:Frontiers in Veterinary Science [Frontiers Media]
卷期号:10 被引量:2
标识
DOI:10.3389/fvets.2023.1284551
摘要

In the past, the primary emphasis of livestock and poultry breeding was mainly on improving the growth rate, meat production efficiency and disease resistance. However, the improvement of meat quality has become a major industrial focus due to the ongoing advancements in livestock and poultry breeding. Skeletal muscles consist of multinucleated myofibers formed through the processes of myoblast proliferation, differentiation and fusion. Muscle fibers can be broadly classified into two main types: slow-twitch (Type I) and fast-twitch (Type II). Fast-twitch fibers can be further categorized into Type IIa, Type IIx, and Type IIb. The proportion of Type I and Type IIa muscle fibers is positively associated with meat quality, while the presence of Type IIb muscle fibers in skeletal muscle tissue is inversely related to meat quality. Consequently, muscle fiber composition directly influences meat quality. The distribution of these fiber types within skeletal muscle is governed by a complex network, which encompasses numerous pivotal regulators and intricate signaling pathways. This article aims to succinctly outline the parameters utilized for assessing meat quality, elucidate the relationship between muscle fiber composition and meat quality as well as elaborate on the relevant genetic factors and their molecular mechanisms that regulate muscle fiber types in livestock and poultry. This summary will enrich our comprehension of how to improve meat quality in livestock and poultry, providing valuable insights for future improvements.

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