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Differences in milk production, glucose metabolism, and carcass composition of 2 Charolais × Holstein F2 families derived from reciprocal paternal and maternal grandsire crosses

机译:牛奶生产,葡萄糖代谢和胴体组成的差异2夏洛拉×荷斯坦F2家族衍生自互惠父母和国产孙子交叉口

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摘要

Two F(2) Charolais x German Holstein families comprising full and half sibs share identical but reciprocal paternal and maternal Charolais grandfathers differ in milk production. We hypothesized that differences in milk production were related to differences in nutritional partitioning revealed by glucose metabolism and carcass composition. In 18F(2) cows originating from mating Charolais bulls to German Holstein cows and a following intercross of the F(1) individuals (n=9 each for family Ab and Ba; capital letters indicate the paternal and lowercase letter the maternal grandsire), glucose tolerance tests were performed at 10 d before calving and 30 and 93 d in milk (DIM) during second lactation. Glucose half-time as well as areas under the concentration curve for plasma glucose and insulin were calculated. At 94 DIM cows were infused intravenously with 18.3 micromol of d-[U-(13)C(6)]glucose/kg(0.75) of BW, and blood samples were taken to measure rate of glucose appearance and glucose oxidation as well as plasma concentrations of metabolites and hormones. Cows were slaughtered at 100 DIM and carcass size and composition was evaluated. Liver samples were taken to measure glycogen and fat content, gene expression levels, and enzyme activities of pyruvate carboxylase, phosphoenolpyruvate carboxykinase, and glucose 6-phosphatase as well as gene expression of glucose transporter 2. Milk yield was higher and milk protein content at 30 DIM was lower in Ba than in Ab cows. Glucose half-life was higher but insulin secretion after glucose challenge was lower in Ba than in Ab cows. Cows of Ab showed higher glucose oxidation, and plasma concentrations at 94 DIM were lower for glucose and insulin, whereas beta-hydroxybutyrate was higher in Ba cows. Hepatic gene expression of pyruvate carboxylase, glucose 6-phosphatase, and glucose transporter 2 were higher whereas phosphoenolpyruvate carboxykinase activities were lower in Ba than in Ab cows. Carcass weight as well as fat content of the carcass were higher in Ab than in Ba cows, whereas mammary gland mass was lower in Ab than in Ba cows. Fat classification indicated leaner carcass composition in Ba than in Ab cows. In conclusion, the 2 families showed remarkable differences in milk production that were accompanied by changes in glucose metabolism and body composition, indicating capacity for milk production as main metabolic driving force. Sex chromosomal effects provide an important regulatory mechanism for milk performance and nutrient partitioning that requires further investigation.
机译:两个F(2)夏洛来X包含完全和半同胞德国荷斯坦家人分享相同的,但是相互父系和母系夏洛来祖父牛奶产量是不同的。我们假设,牛奶产量差异有关营养划分的差异揭示的糖代谢和胴体组成。在18F从交配夏洛来牛至德语荷斯坦奶牛(2)牛始发和F(1)的个体的下列相互交叉(N = 9各自家庭的Ab和Ba;大写字母表示父本和小写字母产妇祖父),葡萄糖耐受性试验,第二哺乳期间产犊和30和93在牛奶(DIM)d之前在10 d进行。葡萄糖半时间以及用于血浆葡萄糖和胰岛素浓度曲线下面积计算。在94头DIM母牛用18.3微摩尔D- [U-(13)C(6)]葡萄糖/ kg体重的(0.75),和血液样品的静脉内输注被带到葡萄糖出现的测量速率和葡萄糖氧化以及代谢物和激素的血浆浓度。母牛在100 DIM屠宰和胴体大小和组成进行评价。取肝脏样品以测量糖原和脂肪含量,基因表达水平,和丙酮酸羧化酶的酶活性,磷酸烯醇丙酮酸羧,和葡萄糖-6-磷酸酶以及葡萄糖转运的基因表达2。牛奶产量较高和乳蛋白含量在30 DIM在巴比抗体奶牛低。葡萄糖半衰期为高,但葡萄糖刺激后胰岛素分泌的巴低于在抗体奶牛。 Ab的母牛显示出更高的葡萄糖氧化,并在94 DIM血浆浓度对葡萄糖和胰岛素降低,而β-羟基丁酸在巴奶牛更高。丙酮酸羧化酶的肝基因表达,葡萄糖-6-磷酸酶,和葡萄糖转运蛋白2含量较高,而磷酸烯醇丙酮酸羧活动巴均低于在抗体奶牛。胴体重以及所述胎体的脂肪含量在抗体均高于钡牛,而乳腺肿块中的Ab比巴奶牛低。脂肪分类指示在巴稀胴体组成比抗体奶牛。总之,2个科表明伴随着在葡萄糖代谢和身体成分的变化,在牛奶产量的显着差异,表明牛奶产量作为主要代谢驱动力的能力。性染色体效应提供牛奶的性能和营养分配,需要进一步研究的重要监管机制。

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