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首页> 外文期刊>BMC Genomics >Higher plane of nutrition pre-weaning enhances Holstein calf mammary gland development through alterations in the parenchyma and fat pad transcriptome
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Higher plane of nutrition pre-weaning enhances Holstein calf mammary gland development through alterations in the parenchyma and fat pad transcriptome

机译:更高的营养平面预防会通过实质和脂肪垫转录组的改变增强荷斯坦小牛乳腺发展

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To reduce costs of rearing replacement heifers, researchers have focused on decreasing age at breeding and first calving. To increase returns upon initiation of lactation the focus has been on increasing mammary development prior to onset of first lactation. Enhanced plane of nutrition pre-weaning may benefit the entire replacement heifer operation by promoting mammary gland development and greater future production. Twelve Holstein heifer calves (?1?week old) were reared on 1 of 2 dietary treatments (n?=?6/group) for 8?weeks: a control group fed a restricted milk replacer at 0.45?kg/d (R, 20% crude protein, 20% fat), or an accelerated group fed an enhanced milk replacer at 1.13?kg/d (EH, 28% crude protein, 25% fat). At weaning (8?weeks), calves were euthanized and sub-samples of mammary parenchyma (PAR) and mammary fat pad (MFP) were harvested upon removal from the body. Total RNA from both tissues was extracted and sequenced using the Illumina HiSeq2500 platform. The Dynamic Impact Approach (DIA) and Ingenuity Pathway Analysis (IPA) were used for pathway analysis and functions, gene networks, and cross-talk analyses of the two tissues. When comparing EH vs R 1561 genes (895 upregulated, 666 downregulated) and 970 genes (506 upregulated, 464 downregulated) were differentially expressed in PAR and MFP, respectively. DIA and IPA results highlight a greater proliferation and differentiation activity in both PAR and MFP, supported by an increased metabolic activity. When calves were fed EH, the PAR displayed transcriptional signs of greater overall organ development, with higher ductal growth and branching, together with a supportive blood vessel and nerve network. These activities were mediated by intracellular cascades, such as AKT, SHH, MAPK, and Wnt, probably activated by hormones, growth factors, and endogenous molecules. The analysis also revealed strong communication between MFP and PAR. The transcriptomics and bioinformatics approach highlighted key mechanisms that mediate the mammary gland response to a higher plane of nutrition in the pre-weaning period.
机译:为了降低饲养替换小母牛的成本,研究人员侧重于繁殖和首先产犊的年龄。在发起哺乳期后增加回报,重点是在第一次哺乳期开始之前提高乳房发育。通过促进乳腺开发和更大的未来生产,增强的营养飞程可能会使整个替代疏入母牛操作有益。十二个荷斯坦小牛犊(<?1?周大)饲养了2个膳食治疗(N?= 6 /组)8?周:一个对​​照组,在0.45?kg / d处喂食限制牛奶替代品(r ,20%粗蛋白,20%脂肪),或加速组,喂养增强的牛奶替代品,在1.13?kg / d(eh,28%粗蛋白,25%脂肪)。在断奶(8?周)中,对小腿进行了安乐死,并在从体中取出后收获乳房实质(PAR)和乳腺脂肪垫(MFP)的子样本。使用Illumina Hiseq2500平台提取和测序两种组织的总RNA。动态冲击方法(DIA)和智能化途径分析(IPA)用于途径分析和功能,基因网络和两种组织的串扰分析。当比较EH VS R 1561基因(上调,下调666个)和970个基因(506个上调,下调的464个)分别以PAR和MFP差异表达。 DIA和IPA结果突出了PAR和MFP中的更多增殖和分化活动,由增加的代谢活动提供支持。当犊牛喂食EH时,靶向整体器官发展的转录迹象,具有较高的导管生长和分支,以及一个支持性血管和神经网络。这些活性由细胞内级联介导,例如AKT,SHH,MAPK和WNT,可能由激素,生长因子和内源分子激活。分析还揭示了MFP与PAR之间的强大沟通。转录组织和生物信息学方法突出了介绍了在断奶前期营养较高营养平面的乳腺响应的关键机制。

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