Influence of epinephrine reactivity to stress on meat quality in goats.

IF 1.3 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE Translational Animal Science Pub Date : 2024-05-28 eCollection Date: 2024-01-01 DOI:10.1093/tas/txae078
Arshad Shaik, Phaneendra Batchu, Aditya Naldurtiker, Priyanka Gurrapu, Brou Kouakou, Thomas H Terrill, Govind Kannan
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Abstract

The magnitude of physiological responses to a stressor can vary among individual goats within a herd; however, whether these differences can differentially affect meat quality is not known. This study was conducted to determine the influence of the magnitude of epinephrine response (ER) to acute stress on muscle metabolome and meat quality in goats. Male Spanish goats (6 mo old) were transported for 180 min. (N = 75 goats; 25 goats/d) to impose stress. Blood samples were obtained after transport for analysis of physiological responses. Goats were slaughtered using humane procedures and samples were collected for muscle metabolomics and meat quality analyses. The data obtained from blood and muscle/meat analysis were then categorized based on epinephrine concentrations into low (LE), medium (ME), and high (HE) ER groups (n = 12/ER group). The physiological and meat quality variables were analyzed as a Completely Randomized Design in SAS, and metabolomics data were analyzed using R software. Plasma glucose concentrations were significantly high in the HE group, low in the LE group, and intermediate in the ME group (P < 0.05). However, leukocyte counts and cortisol, norepinephrine, blood urea nitrogen, and creatine concentrations were not different among the ER groups. Muscle (Longissimus dorsi) glycogen concentrations (15 min postmortem) were significantly higher (P < 0.05) in the ME and LE groups than in the HE group. However, postmortem Longissimus muscle pH and temperature (15 min and 24 h), 24 h calpastatin and desmin levels, and rib chop color (L*, a*, and b*), cooking loss, and Warner-Bratzler shear force values were unaffected by ER. Targeted metabolomics analysis of Longissimus muscle (15 min) revealed that diacyl phosphatidylcholines (C38:0; 40:6) and sphingomyelin (C20:2) were significantly different (P < 0.05) among the ER groups, with the concentrations of these metabolites being consistently high in the LE group. These differential muscle metabolite concentrations suggest that ER can influence biochemical pathways associated with cell membrane integrity and signaling. ER had a significant effect on dopamine concentrations, with the levels increasing with increasing levels of ER. The results indicate that differences in epinephrine reactivity can influence selected physiological responses and muscle metabolites; however, it does not significantly influence meat quality attributes.

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肾上腺素应激反应对山羊肉质的影响
在一个山羊群中,不同山羊个体对应激的生理反应程度会有所不同,但这些差异是否会对肉质产生不同的影响尚不清楚。本研究旨在确定肾上腺素对急性应激反应(ER)的程度对山羊肌肉代谢组和肉质的影响。将雄性西班牙山羊(6 月龄)运输 180 分钟(N = 75 只山羊;25 只/天)以施加应激。运输后采集血液样本以分析生理反应。采用人道程序屠宰山羊,收集样本用于肌肉代谢组学和肉质分析。然后根据血液和肌肉/肉类分析获得的数据,将肾上腺素浓度分为低(LE)、中(ME)和高(HE)ER 组(n = 12/ER 组)。生理和肉质变量在 SAS 中进行完全随机设计分析,代谢组学数据用 R 软件进行分析。HE 组血浆葡萄糖浓度明显较高,LE 组较低,ME 组居中(P P 长肌(15 分钟)显示二酰磷脂酰胆碱(C38:0;40:6)和鞘磷脂(C20:2)明显不同(P
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来源期刊
Translational Animal Science
Translational Animal Science Veterinary-Veterinary (all)
CiteScore
2.80
自引率
15.40%
发文量
149
审稿时长
8 weeks
期刊介绍: Translational Animal Science (TAS) is the first open access-open review animal science journal, encompassing a broad scope of research topics in animal science. TAS focuses on translating basic science to innovation, and validation of these innovations by various segments of the allied animal industry. Readers of TAS will typically represent education, industry, and government, including research, teaching, administration, extension, management, quality assurance, product development, and technical services. Those interested in TAS typically include animal breeders, economists, embryologists, engineers, food scientists, geneticists, microbiologists, nutritionists, veterinarians, physiologists, processors, public health professionals, and others with an interest in animal production and applied aspects of animal sciences.
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