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首页> 外文期刊>Functional & Integrative Genomics >Gene expression in bovine rumen epithelium during weaning identifies molecular regulators of rumen development and growth
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Gene expression in bovine rumen epithelium during weaning identifies molecular regulators of rumen development and growth

机译:断奶期间牛瘤胃上皮中的基因表达确定了瘤胃发育和生长的分子调控因子

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摘要

During weaning, epithelial cell function in the rumen transitions in response to conversion from a pre-ruminant to a true ruminant environment to ensure efficient nutrient absorption and metabolism. To identify gene networks affected by weaning in bovine rumen, Holstein bull calves were fed commercial milk replacer only (MRO) until 42 days of age, then were provided diets of either milk + orchardgrass hay (MH) or milk + grain-based calf starter (MG). Rumen epithelial RNA was extracted from calves sacrificed at four time points: day 14 (n = 3) and day 42 (n = 3) of age while fed the MRO diet and day 56 (n = 3/diet) and day 70 (n = 3/diet) while fed the MH and MG diets for transcript profiling by microarray hybridization. Five two-group comparisons were made using Permutation Analysis of Differential Expression® to identify differentially expressed genes over time and developmental stage between days 14 and 42 within the MRO diet, between day 42 on the MRO diet and day 56 on the MG or MH diets, and between the MG and MH diets at days 56 and 70. Ingenuity Pathway Analysis (IPA) of differentially expressed genes during weaning indicated the top 5 gene networks involving molecules participating in lipid metabolism, cell morphology and death, cellular growth and proliferation, molecular transport, and the cell cycle. Putative genes functioning in the establishment of the rumen microbial population and associated rumen epithelial inflammation during weaning were identified. Activation of transcription factor PPAR-α was identified by IPA software as an important regulator of molecular changes in rumen epithelium that function in papillary development and fatty acid oxidation during the transition from pre-rumination to rumination. Thus, molecular markers of rumen development and gene networks regulating differentiation and growth of rumen epithelium were identified for selecting targets and methods for improving and assessing rumen development and function, particularly in the growing calf.
机译:在断奶期间,瘤胃中的上皮细胞功能会响应从反刍动物前到真正反刍动物的转化而转变,以确保有效的营养吸收和代谢。为了鉴定受到牛瘤胃断奶影响的基因网络,仅对荷斯坦公牛犊喂饲商业性代乳品(MRO)直到42天龄,然后提供以牛奶+果园干草(MH)或以牛奶+谷物为基础的小牛起初日粮(MG)。从四个时间点处死的犊牛中提取瘤胃上皮RNA:在第14天(n = 3)和第42天(n = 3)喂养MRO日粮,第56天(n = 3 /饮食)和第70天(n = 3 /饮食),同时喂食MH和MG日粮以通过微阵列杂交进行转录谱分析。使用Perdifference Analysis of DifferentialExpression®进行了五组两组比较,以鉴定MRO饮食中第14天到第42天之间,MRO饮食中的第42天到MG或MH饮食中第56天之间随时间和发育阶段的差异表达基因。 ,以及在第56和70天时在MG和MH饮食之间。断奶期间差异表达基因的创造力途径分析(IPA)表明,前5个基因网络涉及参与脂质代谢,细胞形态和死亡,细胞生长与增殖,分子的分子运输和细胞周期。断奶期间,在瘤胃微生物群的建立和相关瘤胃上皮炎症中起作用的推定基因被鉴定。 IPA软件将转录因子PPAR-α的激活确定为瘤胃上皮分子变化的重要调节剂,该瘤胃上皮的分子变化在从前反刍向反刍过渡的过程中,对乳头发育和脂肪酸氧化起作用。因此,鉴定了瘤胃发育的分子标记和调节瘤胃上皮的分化和生长的基因网络,以选择靶标和方法来改善和评估瘤胃的发育和功能,特别是在小牛的生长中。

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