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母体妊娠期饮食(添加或不添加蛋氨酸)对疫苗免疫应激后瘤牛血统肉牛肌肉转录组的影响。

Effects of maternal gestational diet, with or without methionine, on muscle transcriptome of Bos indicus-influenced beef calves following a vaccine-induced immunological challenge.

机构信息

IFAS-Range Cattle Research and Education Center, University of Florida, Ona, FL, United States of America.

Department of Animal and Dairy Sciences, University of Wisconsin, Madison, WI, United States of America.

出版信息

PLoS One. 2021 Jun 24;16(6):e0253810. doi: 10.1371/journal.pone.0253810. eCollection 2021.

Abstract

Maternal nutrition during gestation can cause epigenetic effects that translate to alterations in gene expression in offspring. This 2-year study employed RNA-sequencing technology to evaluate the pre- and post-vaccination muscle transcriptome of early-weaned Bos indicus-influenced beef calves born from dams offered different supplementation strategies from 57 ± 5 d prepartum until 17 ± 5 d postpartum. Seventy-two Brangus heifers (36 heifers/yr) were stratified by body weight and body condition score and assigned to bahiagrass pastures (3 heifers/pasture/yr). Treatments were randomly assigned to pastures and consisted of (i) no pre- or postpartum supplementation (NOSUP), (ii) pre- and postpartum supplementation of protein and energy using 7.2 kg of dry matter/heifer/wk of molasses + urea (MOL), or (iii) MOL fortified with 105 g/heifer/wk of methionine hydroxy analog (MOLMET). Calves were weaned on d 147 of the study. On d 154, 24 calves/yr (8 calves/treatment) were randomly selected and individually limit-fed a high-concentrate diet until d 201. Calves were vaccinated on d 160. Muscle biopsies were collected from the same calves (4 calves/treatment/day/yr) on d 154 (pre-vaccination) and 201 (post-vaccination) for gene expression analysis using RNA sequencing. Molasses maternal supplementation led to a downregulation of genes associated with muscle cell differentiation and development along with intracellular signaling pathways (e.g., Wnt and TGF-β signaling pathway) compared to no maternal supplementation. Maternal fortification with methionine altered functional gene-sets involved in amino acid transport and metabolism and the one-carbon cycle. In addition, muscle transcriptome was impacted by vaccination with a total of 2,396 differentially expressed genes (FDR ≤ 0.05) on d 201 vs. d 154. Genes involved in cell cycle progression, extracellular matrix, and collagen formation were upregulated after vaccination. This study demonstrated that maternal supplementation of energy and protein, with or without, methionine has long-term implications on the muscle transcriptome of offspring and potentially influence postnatal muscle development.

摘要

妊娠期间的母体营养会导致表观遗传效应,从而使后代的基因表达发生改变。这项为期两年的研究采用 RNA 测序技术,评估了从产前 57 ± 5 天至产后 17 ± 5 天接受不同补充策略的母牛所产的早期断奶的印度野牛影响的肉牛犊的疫苗接种前和疫苗接种后的肌肉转录组。72 头 Brangus 小母牛(每年 36 头)根据体重和身体状况评分进行分层,并分配到 bahiagrass 牧场上(每年 3 头/牧场)。处理方法随机分配到牧场上,包括(i)不进行产前或产后补充(NOSUP),(ii)使用 7.2 公斤干物质/小母牛/周的糖蜜+尿素(MOL)进行产前和产后的蛋白质和能量补充,或(iii)用 105 克/小母牛/周的蛋氨酸羟基类似物(MOLMET)强化 MOL。犊牛在研究的第 147 天断奶。在第 154 天,每年选择 24 头犊牛(每年 8 头),单独限制饲喂高浓缩饲料,直到第 201 天。犊牛在第 160 天接种疫苗。在第 154 天(疫苗接种前)和第 201 天(疫苗接种后),从相同的犊牛(每年 4 头/处理/天)中采集肌肉活检,用于使用 RNA 测序进行基因表达分析。与不进行母体补充相比,母体补充糖蜜导致与肌肉细胞分化和发育以及细胞内信号通路(如 Wnt 和 TGF-β 信号通路)相关的基因下调。母体用蛋氨酸强化改变了参与氨基酸运输和代谢以及一碳循环的功能基因集。此外,疫苗接种总共影响了 2396 个差异表达基因(FDR ≤ 0.05),在第 201 天与第 154 天相比。细胞周期进展、细胞外基质和胶原蛋白形成相关的基因上调。这项研究表明,能量和蛋白质的母体补充,无论是否添加蛋氨酸,对后代的肌肉转录组都有长期影响,并可能影响产后肌肉发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/521b/8224847/b800e40ae049/pone.0253810.g001.jpg

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