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Association of single nucleotide polymorphisms in the leptin gene with body weight and backfat growth curve parameters for beef cattle

机译:瘦素基因中单核苷酸多态性与肉牛体重和背脂生长曲线参数的关系

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Previous research has identified differences in carcass characteristics across SNP in the bovine leptin gene at slaughter, but before feedlot operators implement selection and sorting strategies, more information is needed to determine how carcass characteristics change over time. The objective of this study was to investigate the effect of 2 leptin SNP on growth curve parameters for BW and backfat. Two SNP (UASMS2 and R25C) were genotyped on 1,653 cross-bred steers and heifers in a commercial feedlot. Up to 4 serial measures of BW and ultrasound estimates of backfat thickness were taken for each animal from the time of placement on feed to slaughter. The measures were used to estimate growth models that describe changes in BW and backfat thickness as a function of days on feed. Data analysis was carried out by estimating nonlinear mixed models to determine the individual and joint effect of each SNP on growth curve parameters. Brody growth curves were fit to the BW data. Variations in the R25C SNP did not significantly affect growth parameters individually or in combination with the UASMS2 SNP. Variations in the UASMS2 SNP were significant in Brody growth curve parameters for BW growth (P < 0.001). The genotype UASMS2-CC was the heaviest at the beginning of the feeding period and exhibited the largest asymptotic mature BW, but UASMS2-TT cattle exhibited the fastest rate of BW growth. A modified power function was fit to the serial ultrasound backfat measures. Models that included the combined effect of the R25C and UASMS2 SNP provided the best fit to the data. Genotypes differed significantly in power function parameters for backfat growth (P < 0.001). The R25C-CC/UASMS2-TT cattle had the smallest backfat thickness at placement. The genotype R25C-CC/UASMS2-TT exhibited the fastest backfat growth rate, whereas backfat in R25C-CC/UASMS2-CC cattle grew at the slowest rate. The association between leptin genotype and growth in BW and backfat presents opportunities to identify genetically distinct cattle and to differentially optimize feeding times accordingly.
机译:先前的研究已经确定了屠宰时牛瘦素基因中SNP的car体特性差异,但是在育肥场操作者实施选择和分类策略之前,需要更多信息来确定to体特性如何随时间变化。本研究的目的是研究2种瘦素SNP对BW和背脂的生长曲线参数的影响。在商业饲养场的1653头杂交ste牛和小母牛上对两个SNP(UASMS2和R25C)进行基因分型。从饲喂到屠宰之间的时间,每只动物最多进行4次BW连续测量和背脂厚度的超声估计。这些措施用于估计生长模型,该模型描述了体重和背脂肪厚度随饲料天数的变化。通过估计非线性混合模型进行数据分析,以确定每个SNP对生长曲线参数的个体和联合作用。布罗迪生长曲线适合体重数据。 R25C SNP的变化单独或与UASMS2 SNP结合使用均不会显着影响生长参数。 UASMS2 SNP的变化在BW生长的Brody生长曲线参数中很显着(P <0.001)。基因型UASMS2-CC在饲喂期开始时最重,并且表现出最大的渐进成熟BW,但是UASMS2-TT牛表现出最快的BW生长速度。修改后的幂函数适合于串行超声后脂肪测量。包含R25C和UASMS2 SNP的组合效果的模型提供了最适合数据的模型。基因型在背脂生长的功效函数参数上有显着差异(P <0.001)。 R25C-CC / UASMS2-TT牛在放置时的背脂肪厚度最小。基因型R25C-CC / UASMS2-TT表现出最快的后脂肪生长速度,而R25C-CC / UASMS2-CC牛的后脂肪生长速度最慢。瘦素基因型与体重和背脂生长之间的关联为鉴定遗传上不同的牛并相应地优化饲喂时间提供了机会。

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