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Effect of sodium bentonite and vegetable oil blend supplementation on growth, carcass quality and intramuscular fatty acid composition of lambs

机译:膨润土钠和植物油的混合添加对羔羊生长,car体品质和肌内脂肪酸组成的影响

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The effect of dietary sodium bentonite and a blend of sunflower and linseed oils at 1:2 (v/v) on growth, carcass and meat quality and fatty acid (FA) composition of longissimus dorsi muscle of lambs was studied. Thirty-two Merino Branco lambs with initial live weights (LW) of 16.2 +/- 2.93 kg were divided according to a completely randomized experimental design within a 2 x 2 factorial arrangement of treatments in order to evaluate effects of the vegetable oil blend supplementation (0 g/kg versus 60 g/kg DM) and sodium bentonite inclusion in diets (0 g/kg versus 20 g/kg DM). The basal diet consisted of pellets with 750 g dehydrated lucerne/kg DM and 250 g manioc/kg DM. The experimental period was 6 weeks. Bentonite affected neither daily LW gain, dry matter (DM) intake, nor carcass composition. However, bentonite decreased the a* meat colour parameter (redness; P=0.004). Oil supplementation affected neither daily LW gain, nor DM intake. However, it increased fat proportion in chump and shoulder cuts (P<0.001), as well as kidney and knob channel fat (P<0.001) while it decreased muscle proportion in the dissected cuts (P<0.001). Oil supplementation increased intramuscular fat (P<0.001) and most meat FA. Polyunsaturated FA (PUFA) increased 23% with oil supplementation (P=0.007), mostly by increasing proportions of n-3 PUFA and biohydrogenation derived PUFA. Oil supplementation decreased n-6 long chain PUFA (P<0.001). The proportion of n-3 long chain PUFA was not affected by oil supplementation, so the increase in n-3 PUFA from 1.99 g/100 g of total FA to 4.23 g/100g of total FA (P<0.001) was mainly due to the increase of a-linolenic acid (P<0.001). However, when expressed in mg/100 g of meat, oil supplementation increased n-3 long chain PUFA concentration from 20 to 31 mg (P<0.001). All biohydrogenation intermediates (BI) increased with oil supplementation, except for cis-11 18:1 which decreased, and cis-13 18:1 and trans-8, cis-10 18:2 which were unchanged. Conjugated linoleic acid increased with oil supplementation from 0.50 to 1.72 g/100 g of total FA (P<0.001). Bentonite did not affect most meat FA, although effects occurred on some BI. Bentonite increased trans-11 18:1, but prevented the increase of trans-10 18:1 in meat from oil supplemented lambs (P<0.001). Trans-11, cis-15 18:2, cis-9, cis-15 18:2 and cis-9, trans-11, cis-15 18:3 increased with dietary bentonite inclusion. (C) 2010 Elsevier B.V. All rights reserved.
机译:研究了日粮钠膨润土和1:2(v / v)的葵花籽油和亚麻籽油的混合物对羔羊背最长肌肌肉生长,and体和肉品质以及脂肪酸(FA)组成的影响。根据完全随机的实验设计,在2 x 2因子处理中,将32头初始活体重(LW)为16.2 +/- 2.93千克的美利奴布朗科羔羊分为两部分,以评估添加植物油混合物的效果(日粮中添加0 g / kg相对于60 g / kg DM)和包含膨润土钠(0 g / kg相对于20 g / kg DM)。基础日粮由含750 g脱水卢塞恩/ kg DM和250 g manioc / kg DM的小丸组成。实验期为6周。膨润土既不影响每天的体重增加,干物质(DM)摄入量,也不影响car体组成。但是,膨润土降低了a *肉的颜色参数(发红; P = 0.004)。补充油既不影响每日LW增重,也不影响DM摄入。然而,它增加了臀部和肩部切口的脂肪比例(P <0.001),以及肾脏和肘部通道脂肪(P <0.001),同时降低了解剖切口的肌肉比例(P <0.001)。补充油会增加肌内脂肪(P <0.001)和大多数肉类FA。补充油后,多不饱和FA(PUFA)增加了23%(P = 0.007),这主要是由于增加了n-3 PUFA和生物氢化衍生的PUFA的比例。补油降低了n-6长链PUFA(P <0.001)。 n-3长链PUFA的比例不受补油的影响,因此n-3 PUFA从1.99 g / 100 g总FA增至4.23 g / 100g总FA(P <0.001)的主要原因是α-亚麻酸的增加(P <0.001)。然而,当以毫克/ 100克肉表示时,补油将n-3长链PUFA浓度从20毫克增加至31毫克(P <0.001)。所有生物加氢中间体(BI)均随补油量的增加而增加,除了顺式11 18:1降低,顺式13 18:1和反式8,顺式10 18:2不变。随着油的添加,共轭亚油酸从0.50增至1.72 g / 100 g的总FA(P <0.001)。膨润土不影响大多数肉类FA,尽管对某些BI有影响。膨润土增加了trans-11 18:1的含量,但阻止了补充油的羔羊肉中trans-10 18:1的含量增加(P <0.001)。饮食中添加膨润土后,反式11,顺式15 18:2,顺式9,顺式15 18:2和顺式9,反式11,顺式15 18:3增加。 (C)2010 Elsevier B.V.保留所有权利。

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