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超量锌和盐酸莱克多巴胺对死后牛肉肌肉蛋白质组和代谢组的早期变化影响。

Early postmortem beef muscle proteome and metabolome variations due to supranutritional zinc and ractopamine hydrochloride supplementation.

机构信息

Department of Animal Science, Iowa State University, Ames, Iowa 50011, USA.

出版信息

J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae272.

Abstract

It was hypothesized that the longissimus thoracis (LT) muscle proteome, phosphoproteome, and metabolome could explain postmortem metabolism and tenderness differences in muscle from cattle supplemented zinc (Zn) and/or ractopamine hydrochloride (RH). High percentage Angus steers (N = 20) were fed in a 2 × 2 factorial assigned to Zn and RH treatments: control (CON; n = 10; analyzed 36 mg Zn/kg dry matter [DM]) or supranutritional Zn supplementation (SUPZN; n = 10; control diet + 60 mg Zn/kg DM [from ZnSO4] + 60 mg Zn/kg DM [from Zn-amino acid complex]) for the entire 89-d trial. During the 28 d before harvest, steers were blocked by body weight within Zn treatments to RH treatments of 0 (NO; n = 10) or 300 mg (RAC; n = 10) per steer per day. Steers were harvested at the Iowa State Meat Laboratory, where pH decline (1, 3, 6, and 24 h postmortem) was measured. At 24 h postmortem, LT muscle sections were removed from carcasses, and steaks were analyzed for Warner-Bratzler shear force (WBSF) values at 1, 3, 7, and 14 d postmortem. Muscle samples were taken at 1 h, 1, 3, 7, and 14 d postmortem for the following analysis: troponin-T degradation (1, 3, 7, and 14 d postmortem), myosin heavy chain analysis (1 h postmortem), sarcoplasmic proteome analysis through tandem mass tagging analysis (1 h and 1 d postmortem), metabolome analysis (1 h and 1 d postmortem), and phosphoproteome analysis (1 h postmortem). SUPZN-NO tended to have a lower (P = 0.06) pH at 6 h postmortem and a lower WBSF value (P = 0.06) at 1 d postmortem. CON-RAC had a higher (P = 0.04) pH at 6 h postmortem and WBSF value (P < 0.01) at 1 d postmortem. A lower pH at 6 h postmortem and lower WBSF value at 1 d postmortem in the SUPZN-NO treatment was accompanied by more sorbitol and fructose at 1 d postmortem, and less myosin regulatory light chain 2 at 1 h postmortem, and less adenosine monophosphate deaminase 1 (AMPD1) at 1 d postmortem than all other treatments. A higher pH at 6 h postmortem and higher WBSF value at 1 d postmortem in CON-RAC and SUPZN-RAC was accompanied by more soluble structural proteins (troponin-T and myosin-7) at 1 h postmortem than CON-NO. At 1 h postmortem, CON-RAC had more glyceraldehyde-3-phosphate dehydrogenase than CON-NO or SUPZN-RAC. Differences in energy metabolism enzymes, metabolites, and structural proteins may affect ATP production, rigor development, and lactate buildup which may explain the differences in postmortem metabolism and tenderness development at 1 d postmortem.

摘要

据推测,补充锌 (Zn) 和/或盐酸莱克多巴胺 (RH) 的牛背最长肌 (LT) 肌肉蛋白质组、磷酸化蛋白质组和代谢组可以解释肌肉死后代谢和嫩度的差异。高比例安格斯育肥牛 (N=20) 以 2×2 因子分配进行锌和 RH 处理:对照 (CON; n=10; 分析 36mg Zn/kg 干物质 [DM]) 或超营养锌补充 (SUPZN; n=10; 对照饮食+60mg Zn/kg DM [来自 ZnSO4]+60mg Zn/kg DM [来自 Zn-氨基酸复合物]) 整个 89 天试验。在收获前 28 天内,根据 Zn 处理内的体重将育肥牛分为 RH 处理:0(RH; n=10) 或 300mg (RAC; n=10) 每天每头。育肥牛在爱荷华州立肉类实验室进行屠宰,测量死后 1、3、6 和 24 小时的 pH 值下降。在 24 小时死后,从胴体中取出 LT 肌肉切片,在死后 1、3、7 和 14 天分析牛肉的 Warner-Bratzler 剪切力 (WBSF) 值。在死后 1 小时、1、3、7 和 14 天进行以下分析时,采集肌肉样本:肌钙蛋白-T 降解 (死后 1、3、7 和 14 天)、肌球蛋白重链分析 (死后 1 小时)、肌浆蛋白组分析通过串联质量标记分析 (死后 1 小时和 1 天)、代谢组分析 (死后 1 小时和 1 天) 和磷酸化蛋白质组分析 (死后 1 小时)。SUPZN-NO 死后 6 小时的 pH 值有较低的趋势 (P=0.06),1 天后的 WBSF 值 (P=0.06) 较低。CON-RAC 死后 6 小时的 pH 值较高 (P=0.04),1 天后的 WBSF 值较低 (P<0.01)。SUPZN-NO 处理在 6 小时死后的 pH 值较低,1 天后的 WBSF 值较低,伴随着更多的山梨醇和果糖在 1 天后,以及更少的肌球蛋白调节轻链 2 在 1 小时后,和死后 1 天的 AMPD1 较少 (腺苷单磷酸脱氨酶 1) 比所有其他处理。CON-RAC 和 SUPZN-RAC 在 6 小时死后的 pH 值较高,1 天后的 WBSF 值较高,伴随着更多的可溶性结构蛋白 (肌钙蛋白-T 和肌球蛋白-7) 在死后 1 小时比 CON-NO。在死后 1 小时,CON-RAC 的甘油醛-3-磷酸脱氢酶比 CON-NO 或 SUPZN-RAC 多。能量代谢酶、代谢物和结构蛋白的差异可能会影响 ATP 生成、僵硬发展和乳酸堆积,这可能解释了死后 1 天代谢和嫩度发育的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9571/11491740/16c829855461/skae272_fig1.jpg

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