早期断奶处理下印度母牛胸最长肌DNA印迹及差异表达基因。

IF 2.5 Q3 GENETICS & HEREDITY
Gustavo Tinoco, Gustavo Russo, Rogério Curi, Marcelo Vicari, Paloma Melo, Isabella Souza, Juliana Torrecilhas, Philipe Moriel, Welder Baldassini, Luis Chardulo, Otávio Neto, Guilherme Pereira
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引用次数: 0

摘要

背景/目的:早期断奶管理后补充能量可导致犊牛代谢改变,对动物的健康和生产性能产生长期影响。据信,这些代谢适应的主要分子基础是表观遗传机制,这些机制在不同发育阶段和/或对不同环境刺激的反应中调节、激活或沉默基因。然而,我们对牛的产后代谢规划知之甚少。因此,本研究旨在比较Nellore动物在常规断奶和早期断奶时的DNA甲基化谱,并将这一发现与波斯牛胸最长肌骨骼肌基因差异表达联系起来。方法:为此,我们使用还原亚硫酸氢盐测序(RRBS)和rna测序技术来寻找差异甲基化基因(dmg)。结果:共鉴定出481个差异甲基化区域,其中52%(250个)高甲基化,48%(231个)低甲基化。对53个差异甲基化和差异表达基因进行了功能富集分析。主要富集项和途径与3'-5'-环腺苷单磷酸(cAMP)信号相关,该信号表达了腺苷酸环化酶3 (ADCY3)基因的上调,并在启动子区域显著低甲基化。cAMP信号的改变涉及许多过程,其中许多与脂质代谢有关。该通路关键基因的相对差异表达证明了cAMP信号与新生脂肪形成之间的关系。结论:这些发现表明,通过DNA甲基化机制,产后代谢程序在决定牛肉脂肪沉积中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA Imprinting and Differentially Expressed Genes in Longissimus thoracis Muscle of Bos indicus Submitted to Early Weaning Management.

Background/Objectives: Early weaning management followed by energy supplementation can lead to metabolic alterations in the calf that exert long-term effects on the animal's health and performance. It is believed that the main molecular basis underlying these metabolic adaptations are epigenetic mechanisms that regulate, activate, or silence genes at different stages of development and/or in response to different environmental stimuli. However, little is known about postnatal metabolic programming in Bos indicus. Therefore, this study aimed to compare the DNA methylation profile of Nellore animals submitted to conventional and early weaning and to correlate the findings with genes differentially expressed in the Longissimus thoracis skeletal muscle of Bos indicus cattle. Methods: For this, we used Reduced Representation Bisulfite Sequencing (RRBS) and RNA-Sequencing techniques to prospect differentially methylated genes (DMGs). Results: A total of 481 differentially methylated regions were identified, with 52% (250) being hypermethylated and 48% (231) hypomethylated. Functional enrichment analysis of 53 differentially methylated and differentially expressed genes was performed. The main enriched terms and pathways were associated with 3'-5'-cyclic adenosine monophosphate (cAMP) signaling, which presents the upregulated adenylate cyclase 3 (ADCY3) gene and significatively hypomethylated in the promoter region. Alterations in cAMP signaling are involved in numerous processes, many of them related to lipid metabolism. The relative differential expression of key genes of this pathway demonstrates the relationship between cAMP signaling and de novo lipogenesis. Conclusions: These findings suggest an important role of postnatal metabolic programming through DNA methylation mechanisms in determining fat deposition in beef.

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来源期刊
Epigenomes
Epigenomes GENETICS & HEREDITY-
CiteScore
3.80
自引率
0.00%
发文量
38
审稿时长
11 weeks
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