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Genomic retained heterosis effects on fertility and lifetime productivity in beef heifers

机译:基因组保留对牛仔母牛的生育和寿命生产率的影响

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This study evaluated the effects of three genomic indicators of heterosis on female fertility and lifetime productivity, and quantified changes over 11 production cycles in a crossbred cow herd. Pedigree-based breed composition (pBC) was determined and used to calculate retained heterozygosity for 412 replacement heifers born from 2004 to 2014 at the Lacombe Research and Development Centre (AB, Canada). Heifers were followed as cows over 1050 mating opportunities, 11 production cycles, and five parities. Heifers and their sires (51) were genotyped and these genotypes were used to predict each animal's genomic breed composition (gBC) and three genomic indicators of heterosis: (1) retained heterozygosity (RHETg), (2) heterozygous proportion (H), and (3) retained heterosis (RHg). Correlations between pedigree and genomic breed fractions for Angus, Hereford, and Charolais were high (r(p) = 0.74-0.94; P & 0.001). Genomic indicators of heterosis were highly related (r(p) = 0.61 for RHETg vs. H; 0.71 for RHg vs. H; 0.96 for RHETg vs. RHg; P & 0.001). Each 10% change in RHETg resulted in 51 +/- 20 d longer survival (P = 0.011) in the herd and 35.7 +/- 15.2 kg more (P = 0.019) calf wean weight per cow exposed to breeding when summed over five parities. These differences resulted in an extra $161 per heifer in a year. Optimizing heterosis using genomic tools can be very beneficial for the cow herd if applied correctly.
机译:该研究评估了三种基因组杂种杂种的影响对女性生育率和寿命的生产率,并在杂交牛群中的11个生产周期的量化变化。基于谱系的品种组合物(PBC)测定并用于在Lacomme研究和发展中心(AB,加拿大)在2004年至2014年出生的412个替换小母牛的保留杂合酶。小母牛遵循超过1050个交配机会的奶牛,11个生产周期和五个间隔。对小母牛和他们的胎儿(51)是基因分型,这些基因型用于预测每个动物的基因组产物组合物(GBC)和杂种优势的三种基因组指标:(1)保留的杂合子(RHET),(2)杂合子比例(H)和(3)保留杂种优势(RHG)。谱系与Angus,Hereford和Charolais的基因组品种分数之间的相关性高(R(p)= 0.74-0.94; p& 0.001)。杂种物的基因组指示剂具有高度相关的(R(P)= 0.61的RHETG与H; 0.71用于rhG与H; 0.96用于RHETG与rhg; P& LT; 0.001)。每牛的每牛和35.7 +/-15.2公斤的每牛和35.7 +/-15.2公斤的每次10%的变化导致51 +/-20d更长。这些差异导致每年额外额外的161美元。如果正确施用,使用基因组工具优化杂种优化可能对牛群非常有益。

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