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妊娠不同时期超营养有机硒补充对新生犊牛肌肉基因转录组的时间依赖性影响。

Supranutritional Maternal Organic Selenium Supplementation during Different Trimesters of Pregnancy Affects the Muscle Gene Transcriptome of Newborn Beef Calves in a Time-Dependent Manner.

机构信息

Department of Animal Sciences, Auburn University, Auburn, AL 36849, USA.

Department of Animal and Rangeland Sciences, College of Agricultural Sciences, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Genes (Basel). 2021 Nov 25;12(12):1884. doi: 10.3390/genes12121884.

Abstract

Selenium (Se) is an essential micronutrient for growth and immune function in beef cattle. We previously showed that supranutritional maternal organic Se supplementation during late pregnancy improves immune function in their newborn calves; however, the effects of maternal organic Se-supplementation on fetal programming during different pregnancy stages have yet to be elucidated. Herein, we investigated the effects of supranutritional maternal organic Se-supplementation in different pregnancy trimesters on their beef calf's genome-wide transcriptome profiles. Within 12 to 48 h of birth, whole blood and (LD) muscle biopsies were collected from calves born to 40 crossbred Angus cows that received, except for the control group (CTR), Se-yeast boluses (105 mg of Se/wk) during the first (TR1), second (TR2), or third (TR3) trimester of gestation. Whole-blood Se concentrations of newborn calves increased from CTR, TR1, TR2 to TR3, whereas muscle Se concentrations of newborn calves were only increased in TR3 group. We identified 3048 unique differentially expressed genes (DEGs) across all group comparisons (FDR ≤ 0.05 and |log2FC| ≥ 1.5). Furthermore, we predicted 237 unique transcription factors that putatively regulate the DEGs. Independent of supplementation trimester, supranutritional maternal organic Se supplementation downregulated genes involved in adaptive immunity in all trimesters. Dependent on supplementation trimester, genes involved in muscle development were upregulated by TR3 Se supplementation and downregulated by TR1 Se-supplementation, and genes involved in collagen formation were downregulated by TR2 Se-supplementation. Supranutritional maternal organic Se supplementation in the last trimester of pregnancy resulted in upregulation of myosin and actin filament associated genes, potentially allowing for optimal muscle function and contraction. Our findings suggest a beneficial effect of supranutritional maternal organic Se supplementation during late gestation on Se-status and muscle development and function of newborn calves.

摘要

硒(Se)是牛生长和免疫功能所必需的微量元素。我们之前的研究表明,妊娠后期补充超营养水平的有机硒可以改善新生牛犊的免疫功能;然而,母体有机硒补充对不同妊娠阶段胎儿编程的影响仍有待阐明。在此,我们研究了在不同妊娠阶段补充超营养水平的母体有机硒对其肉牛小牛全基因组转录组谱的影响。在出生后 12 至 48 小时内,从 40 头杂交安格斯牛所生的小牛中采集了全血和 (LD) 肌肉活检,这些牛除对照组(CTR)外,在妊娠第一(TR1)、第二(TR2)或第三(TR3) trimester 接受了硒酵母丸(每周 105 毫克硒)。新生小牛的全血 Se 浓度从 CTR、TR1、TR2 增加到 TR3,而新生小牛的肌肉 Se 浓度仅在 TR3 组中增加。我们在所有组比较中(FDR≤0.05 和 |log2FC|≥1.5)鉴定了 3048 个独特的差异表达基因(DEGs)。此外,我们预测了 237 个可能调节 DEGs 的独特转录因子。独立于补充 trimester,超营养水平的母体有机硒补充在所有 trimester 下调了适应性免疫相关基因。依赖于补充 trimester,TR3 硒补充上调了肌肉发育相关基因,TR1 硒补充下调了这些基因,TR2 硒补充下调了胶原蛋白形成相关基因。妊娠晚期超营养水平的母体有机硒补充导致肌球蛋白和肌动蛋白丝相关基因上调,可能使肌肉功能和收缩达到最佳状态。我们的研究结果表明,妊娠后期补充超营养水平的母体有机硒对新生小牛的 Se 状态、肌肉发育和功能有有益影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e25d/8701265/c5e13ce2c063/genes-12-01884-g001.jpg

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