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死后僵直时间延长和肌肉内位置对牛背最长肌和半腱肌牛排蛋白降解、肌纤维形态计量学和嫩度的影响。

Effects of extended postmortem aging and intramuscular location on protein degradation, muscle fiber morphometrics, and tenderness of beef longissimus lumborum and semitendinosus steaks.

机构信息

Department of Animal Sciences and Industry, Kansas State University, Manhattan, KS 66506, USA.

Department of Animal and Dairy Science, University of Georgia, Athens, GA 30602, USA.

出版信息

J Anim Sci. 2021 Oct 1;99(10). doi: 10.1093/jas/skab263.

Abstract

The objective of this study was to determine effects of extended aging and intramuscular location on Warner-Bratzler shear force (WBSF), muscle fiber cross-sectional area (CSA), and protein degradation of semitendinosus (ST) and longissimus lumborum (LL) steaks. Left ST and LL were removed from 40 carcasses at 6 d postmortem. The ST was fabricated into five locations (LOC), with LOC 1 being most proximal and LOC 5 being most distal. The posterior LL was fabricated into 3 LOC, with LOC 1 being most anterior. Vacuum sealed ST steaks were aged 7, 14, 28, 56, or 112 d postmortem, while LL steaks were aged 7, 28, or 112 d postmortem at 2 ± 1 °C. A steak from each LOC was assigned to WBSF or laboratory analyses. There were no Day of Aging (DOA) × LOC interactions for all dependent variables (P > 0.06). There were DOA effects for ST and LL WBSF values and degraded 38-kDa desmin (DES; P < 0.01). Day-7 ST-steak WBSF value was greater than all other days (P < 0.01) and day-14 steaks had greater WBSF value than remaining days (P < 0.05). Day-28 ST-steak WBSF values were greater than day 56 and 112 (P < 0.01), which did not differ (P = 0.53). In the LL, day-7 steaks had greater WBSF values than the other two timepoints (P < 0.01) and day-28 steaks had greater (P < 0.01) WBSF values than day-112 steaks. Degraded ST 38-kDa DES content was less on day 7 and 14 compared to all other days (P < 0.03), but did not differ (P = 0.79) from each other. Days 28 and 56 38-kDa DES content was less than day 112 (P < 0.01), but did not differ (P = 0.34) from each other. Degraded LL 38-kDa DES content was less on day 7 than day 28 and 112 (P < 0.02), which did not differ (P = 0.67). There were LOC effects for only ST WBSF and muscle fiber CSA (P < 0.05). Semitendinosus steak LOC 1 and 2 had greater WBSF values than all other locations (P < 0.01), but did not differ (P = 0.32) from each other. Semitendinosus steak LOC 3 and 5 had greater WBSF values than LOC 4 (P < 0.01), but did not differ (P = 0.85) from each other. The CSA of all ST fiber types were largest in LOC 1 compared to all other fiber types (P < 0.01). The CSA of all LOC 2 and 3 fiber types was greater than LOC 4 and 5 (P < 0.01), but were not different from each other (P > 0.81), and LOC 4 had greater CSA than LOC 5 (P < 0.01). Steak aging WBSF value improvements seemed proteolysis catalyzed, while the ST intramuscular tenderness gradient was more likely due to muscle fiber CSA.

摘要

本研究旨在确定延长老化和肌内位置对 Warner-Bratzler 剪切力 (WBSF)、肌纤维横截面积 (CSA) 和半腱肌 (ST) 和最长肌 (LL) 牛排蛋白质降解的影响。在死后 6 天,从 40 个胴体中取出左侧 ST 和 LL。ST 被制成 5 个位置 (LOC),LOC1 最靠近近端,LOC5 最靠近远端。后 LL 被制成 3 个 LOC,LOC1 最靠前。真空密封的 ST 牛排在死后 7、14、28、56 或 112 天老化,而 LL 牛排在 2 ± 1°C 下在死后 7、28 或 112 天老化。每个 LOC 的一块牛排被分配用于 WBSF 或实验室分析。所有依赖变量(P > 0.06)均无天数老化(DOA)×位置交互作用。ST 和 LL WBSF 值和降解的 38kDa 结蛋白 (DES; P < 0.01) 有 DOA 效应。ST 牛排第 7 天的 WBSF 值大于其他所有天数(P < 0.01),第 14 天的 WBSF 值大于其余天数(P < 0.05)。第 28 天的 ST 牛排 WBSF 值大于第 56 天和 112 天(P < 0.01),但没有差异(P = 0.53)。在 LL 中,第 7 天的牛排的 WBSF 值大于其他两个时间点(P < 0.01),第 28 天的牛排的 WBSF 值大于第 112 天的牛排(P < 0.01)。与其他所有天数相比,第 7 天和第 14 天的 ST 38kDa DES 含量减少(P < 0.03),但彼此之间没有差异(P = 0.79)。第 28 天和第 56 天的 38kDa DES 含量少于第 112 天(P < 0.01),但彼此之间没有差异(P = 0.34)。第 7 天的 LL 38kDa DES 含量少于第 28 天和第 112 天(P < 0.02),但彼此之间没有差异(P = 0.67)。只有 ST WBSF 和肌纤维 CSA 才有位置效应(P < 0.05)。半腱肌牛排 LOC1 和 2 的 WBSF 值大于其他所有位置(P < 0.01),但彼此之间没有差异(P = 0.32)。半腱肌牛排 LOC3 和 5 的 WBSF 值大于 LOC4(P < 0.01),但彼此之间没有差异(P = 0.85)。所有 ST 纤维类型的 CSA 在 LOC1 中最大,与所有其他纤维类型相比(P < 0.01)。所有 LOC2 和 3 纤维类型的 CSA 大于 LOC4 和 5(P < 0.01),但彼此之间没有差异(P > 0.81),LOC4 的 CSA 大于 LOC5(P < 0.01)。牛排老化的 WBSF 值改善似乎是蛋白水解催化的,而 ST 肌肉内嫩度梯度更可能是由于肌纤维 CSA 所致。

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