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451 Identification and characterization of euchromatic regions associated with gene expression and intramuscular fat in Nelore cattle.

机译:451内罗尔牛中与基因表达和肌内脂肪相关的常染色体区域的鉴定和表征。

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摘要

In eukaryotes, DNA is organized along with histones in nucleoprotein complexes known as chromatin, which has nucleosomes as their fundamental unit. Chromatin exists in two forms: euchromatin, corresponding to a lightly condensed structure and an easily transcribed region, and heterochromatin, a highly condensed and transcriptionally silent region. Therefore, the chromatin compaction degree interferes with regulation of gene expression, and nucleosomes act as gene silencers. In this context, using Assay for Transposase-Accessible Chromatin technique (ATAC-seq), the aims of the present study were to identify, map and characterize euchromatin regions in Longissimus dorsi muscle of Nellore cattle to understand if these regions are associated with gene expression and intramuscular fat content. Different transposase-treated nuclei concentrations were tested: 50 thousand, 75 thousand and 100 thousand, and their nucleosomal periodicity was analyzed to check the efficiency of ATAC-seq enzymatic activity. From these, 6,811, 11,121, and 11,473 euchromatin peaks were respectively found by using Model-based Analysis of ChIP-Seq (MACS2). A total of 6,212 open chromatin regions were coincident among the three nuclei concentrations, and this data was used in subsequent analyzes. Enrichment analysis performed using package RegioneR in R, considering significance of p < 0.05, revealed over-representation of peaks in 1) transcription start sites of genes expressed in skeletal muscle; 2) differentially expressed genes (GDE) associated with intramuscular fat content; 3) expression quantitative trait loci (eQTL) identified in skeletal muscle tissue. Our results indicate that skeletal muscle regulatory regions identified by ATAC-seq are involved in the control of gene expression and intramuscular fat content in cattle.
机译:在真核生物中,DNA与组蛋白一起被组织在核蛋白复合物染色质中,染色质以核小体为基本单位。染色质以两种形式存在:常染色质,对应于一个轻度压缩的结构和一个易于转录的区域;异染色质,对应于一个高度浓缩的和转录沉默的区域。因此,染色质紧实度干扰基因表达的调节,而核小体充当基因沉默剂。在这种情况下,使用转座酶可及染色质测定技术(ATAC-seq),本研究的目的是鉴定,定位和表征内罗尔牛背最长肌中的常染色质区域,以了解这些区域是否与基因表达相关和肌内脂肪含量。测试了不同转座酶处理的细胞核浓度:5万,75,000和10万,并分析了它们的核小体周期性,以检查ATAC-seq酶活性的效率。通过使用基于模型的ChIP-Seq分析(MACS2),分别找到了6,811、11,121和11,473个常染色质峰。三个核浓度之间共有6,212个开放染色质区域重合,该数据用于后续分析。考虑到p <0.05的显着性,使用R中的RegioneR软件包进行的富集分析表明,峰的过度代表是:1)骨骼肌表达基因的转录起始位点; 2)与肌内脂肪含量相关的差异表达基因(GDE); 3)在骨骼肌组织中鉴定出的表达数量性状基因座(eQTL)。我们的结果表明,通过ATAC-seq鉴定的骨骼肌调节区参与了牛的基因表达和肌内脂肪含量的控制。

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