首页> 外文期刊>Journal of Animal Science >Association of leptin genotype with growth performance, adipocyte cellularity, meat quality, and fatty acid profile in beef steers fed flaxseed or high-oleate sunflower seed diets with or without triticale dried distiller's grains
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Association of leptin genotype with growth performance, adipocyte cellularity, meat quality, and fatty acid profile in beef steers fed flaxseed or high-oleate sunflower seed diets with or without triticale dried distiller's grains

机译:Leptin基因型与生长性能,脂肪细胞细胞性,肉质和脂肪酸曲线和脂肪酸曲线喂养亚麻籽或高油e葵花籽饮食,有或没有小硝酸干燥的蒸馏器的谷物

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Leptin genotypes can be identified as homozygous normal (CC), homozygous mutant (TT), and heterozygous (CT) based on a single-nucleotide polymorphism in exon 2 of the leptin gene, which has been associated with feed intake and fat deposition in cattle. The experiment was designed as 2 x 2 x 2 factorial with three main factors: (1) genotype (CT or TT) and diets fed 2) with or without triticale dried distiller's grains with solubles (DDG), and 3) with either flaxseed (FS) or high-oleate sunflower seed (SS). Evaluations included growth performance, subcutaneous fat deposition, adipocyte cellularity, meat quality, and fatty acid (FA) profile of various depots. Beef steers (n = 40, 459 +/- 31 kg) of either CT or TT genotypes were housed in individual pens with ad libitum access to one of the four diets: 75% steam-rolled barley + 10% barley silage with 10% FS or SS (non-DDG diets, NDG) and 46.5% barley + 10% barley silage + 30% DDG, with 8.5% FS or SS, all on a dry matter basis. Growth performance, ultrasound subcutaneous fat thickness, rib eye area (REA), and plasma FA were measured prior to and during the finishing period. At slaughter, samples of subcutaneous fat, perirenal fat, and Longissimus thoracis (LT) muscle were collected for FA analysis and carcass and meat quality were measured. Compared with CT cattle, TT tended to have less (P = 0.06) C18:2-c9,t11 (rumenic acid) in plasma and subcutaneous fat and a greater proportion (P < 0.05) of C18:0 in subcutaneous, perirenal, and LT fat. Cattle with TT genotype also tended (P < 0.1) to have more total saturated and less unsaturated (USFA) and monounsaturated fats (MUFA) and had less (P = 0.04) linoleic acid in LT. Ultrasound fat thickness, REA, and average diameter of adipocytes in subcutaneous fat at 12 wk were not affected (P > 0.39) by genotype. Generally, carcass and meat quality were similar (P > 0.1) among diets, although adding FS tended to increase (P = 0.06) total USFA of subcutaneous fat including omega-3 FA (P < 0.001). For the high-fat diets evaluated, CT cattle would have more potential to produce beef with enhanced health benefits than would TT cattle.
机译:瘦素基因型可以鉴定为纯合正态(CC),纯合突变体(TT)和杂合(CT),基于瘦素基因的外显子2中的单核苷酸多态性,这与牛中的饲料摄入和脂肪沉积有关。实验设计为2 x 2 x 2因子,具有三个主要因素:(1)基因型(CT或TT)和饮食供给2),其中包含与亚麻籽(DDG)和3)具有溶质(DDG)和3)的基因型(CT或TT)和饮食( FS)或高油e葵花籽(SS)。评估包括各种仓库的生长性能,皮下脂肪沉积,脂肪脂肪沉积,脂肪酸(FA)轮廓。 CT或TT基因型的牛肉阉牛(n = 40,459 +/- 31 kg)被安置在单个钢笔中,并利用AD Libitum进入四种饮食中的一种:75%蒸汽卷大麦+ 10%大麦青贮饲料10% FS或SS(非DDG饮食,NDG)和46.5%大麦+ 10%大麦青贮+ 30%DDG,均为8.5%的FS或SS,均以干物质为基础。在整理期间和期间在和期间测量生长性能,超声波皮下脂肪厚度,肋眼区域(REA)和等离子体FA。在屠宰时,针对FA分析收集了皮下脂肪,脑脂肪和长生物胸部(LT)肌肉的样本,测量胎体和肉质。与CT牛相比,TT倾向于较少(p = 0.06)C18:2-C9,T11(官蜡酸),皮下脂肪和皮下,脑梗死和胰腺癌中的C18:0的比例更大(P <0.05)脂肪。具有TT基因型的牛也倾向于(P <0.1),以具有更多的总饱和和更少的不饱和(USFA)和单不饱和脂肪(MUFA),并且在LT中具有较少(p = 0.04)亚油酸。通过基因型在皮下脂肪脂肪细胞的超声脂肪厚度,Rea和平均直径不受影响(p> 0.39)。通常,胴体和肉质质量在饮食中相似(p> 0.1),尽管添加FS趋于增加(p = 0.06)皮下脂肪的总USFA,包括ω-3 fa(p <0.001)。对于评估的高脂肪饮食,CT牛会产生比TT牛的健康益处增强的牛肉更有潜力。

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