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慢性产前和产后热应激对猪的肉质特性及相关肌肉代谢变化的影响。

Pork quality traits and associated muscle metabolic changes in pigs under chronic prenatal and postnatal heat stress.

机构信息

PEGASE, INRAE, Institut Agro, 35590 Saint-Gilles, France.

出版信息

J Anim Sci. 2023 Jan 3;101. doi: 10.1093/jas/skad305.

Abstract

Chronic heat stress (HS) is a major concern affecting pig growth performance and metabolism, with potential consequences on carcass and meat quality traits. The objective of this study was to assess the influence of prenatal (PE) and growing (GE) thermal environments, and their combination, on muscle metabolism, carcass characteristics, and pork quality. From 6 to 109 d of gestation, 12 sows (1 per block) were kept under thermoneutral (TN) conditions (cyclic 18 to 24 °C; PTN) and 12 sows under chronic HS (cyclic 28 to 34 °C; PHS). Two female offspring per sow were selected based on body weight at weaning, for a total of 48 female pigs (12 blocks of 2 sisters from each PE), and one sister was placed in each GE. Gilts were housed from 82 to 140 d of age under cyclic GTN (18 to 24 °C; n = 24) or GHS (28 to 34 °C; n = 24) environments. Data were analyzed using a mixed model including PE, GE, and PE × GE interaction as main effects, and sire, sow within PE, pen within PE × GE, and slaughter day (for plasma, muscle, and meat traits) as random effects. No significant PE × GE interaction was found on any trait under study (P ≥ 0.05). Prenatal HS did not affect growth performance and carcass traits (P ≥ 0.05). Compared with GTN, GHS pigs had lower average daily feed intake, average daily gain, and hot carcass weight (P < 0.01), but similar carcass lean meat content (P ≥ 0.05). Prenatal HS had scarce effects on pork quality, with only higher a* and C* values (P < 0.05) in the Gluteus superficialis. Growing HS led to a higher pH 24 h (P < 0.05) in the Longissimus thoracis et lumborum (LTL) and ham muscles, and higher meat quality index in the ham muscles. In contrast, quality traits of the Semispinalis capitis (SC) were not affected by either PE or GE (P > 0.05). Except a tendency for a higher citrate synthase activity in the SC (P = 0.065), PHS did not affect muscle metabolism. Growing HS induced muscle-specific metabolic responses, with reduced glycolytic potential (P < 0.01) and metabolic enzyme activities (P < 0.05) in the glycolytic LTL, but not in the oxidative SC (P > 0.05). Plasma glucose content at slaughter was lower in the GHS compared with GTN pigs (P = 0.002), indicating an altered energy metabolism in pigs under GHS. Altogether, growing HS altered growth without affecting carcass traits, but improved technological quality of loin and ham. Prenatal HS, alone or combined with GHS, had limited or even no effect on carcass and pork quality.

摘要

慢性热应激(HS)是影响猪生长性能和代谢的主要问题,对胴体和肉质特性有潜在影响。本研究旨在评估产前(PE)和生长(GE)热环境及其组合对肌肉代谢、胴体特征和猪肉质量的影响。在妊娠第 6 天至 109 天期间,将 12 头母猪(每块 1 头)分别置于热中性(TN)条件(循环 18 至 24°C;PTN)和慢性 HS(循环 28 至 34°C;PHS)下。根据断奶时的体重,每头母猪选择 2 头后备母猪,共 48 头母猪(每头母猪 12 个块,每个块有 2 个来自每个 PE 的姐妹),每个 GE 中放置 1 个姐妹。82 至 140 日龄时,后备母猪在循环 GTN(18 至 24°C;n = 24)或 GHS(28 至 34°C;n = 24)环境中饲养。使用混合模型分析数据,包括 PE、GE 和 PE×GE 相互作用作为主要效应,以及 sire、PE 内的母猪、PE×GE 内的猪圈和屠宰日(用于血浆、肌肉和肉质特性)作为随机效应。研究的任何性状均未发现 PE×GE 相互作用(P≥0.05)。产前 HS 对生长性能和胴体性状没有影响(P≥0.05)。与 GTN 相比,GHS 猪的平均日采食量、平均日增重和热胴体重较低(P<0.01),但胴体瘦肉含量相似(P≥0.05)。产前 HS 对猪肉质量的影响不大,只有 Gluteus superficialis 的 a和 C值较高(P<0.05)。生长 HS 导致 Longissimus thoracis et lumborum(LTL)和 ham 肌肉的 24 小时 pH 值升高(P<0.05),以及 ham 肌肉的肉质指数升高。相反,Semispinalis capitis(SC)的肉质性状不受 PE 或 GE 的影响(P>0.05)。除了 SC 中的柠檬酸合酶活性有升高的趋势(P = 0.065)外,PHS 对肌肉代谢没有影响。生长 HS 引起肌肉特异性代谢反应,降低了糖酵解 LTL 的潜在糖酵解能力(P<0.01)和代谢酶活性(P<0.05),但对氧化 SC 没有影响(P>0.05)。与 GTN 猪相比,GHS 猪的屠宰时血浆葡萄糖含量较低(P = 0.002),表明 GHS 下猪的能量代谢发生了改变。总的来说,生长 HS 改变了生长性能而不影响胴体性状,但改善了腰肉和火腿的技术质量。产前 HS 单独或与 GHS 结合使用对胴体和猪肉质量的影响有限甚至没有。

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