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解析鸡胚胎期到出壳后时期的胸肌肉中的 miRNA 转录组。

Deciphering the miRNA transcriptome of breast muscle from the embryonic to post-hatching periods in chickens.

机构信息

Shandong Academy of Agricultural Sciences, Poultry Institute, Ji'nan, 250023, China.

Poultry Breeding Engineering Technology Center of Shandong Province, Ji'nan, 250023, China.

出版信息

BMC Genomics. 2021 Jan 19;22(1):64. doi: 10.1186/s12864-021-07374-y.

Abstract

BACKGROUND

miRNAs play critical roles in growth and development. Various studies of chicken muscle development have focused on identifying miRNAs that are important for embryo or adult muscle development. However, little is known about the role of miRNAs in the whole muscle development process from embryonic to post-hatching periods. Here, we present a comprehensive investigation of miRNA transcriptomes at 12-day embryo (E12), E17, and day 1 (D1), D14, D56 and D98 post-hatching stages.

RESULTS

We identified 337 differentially expressed miRNAs (DE-miRNAs) during muscle development. A Short Time-Series Expression Miner analysis identified two significantly different expression profiles. Profile 4 with downregulated pattern contained 106 DE-miRNAs, while profile 21 with upregulated pattern contained 44 DE-miRNAs. The DE-miRNAs with the upregulated pattern mainly played regulatory roles in cellular turnover, such as pyrimidine metabolism, DNA replication, and cell cycle, whereas DE-miRNAs with the downregulated pattern directly or indirectly contributed to protein turnover metabolism such as glycolysis/gluconeogenesis, pyruvate metabolism and biosynthesis of amino acids.

CONCLUSIONS

The main functional miRNAs during chicken muscle development differ between embryonic and post-hatching stages. miRNAs with an upregulated pattern were mainly involved in cellular turnover, while miRNAs with a downregulated pattern mainly played a regulatory role in protein turnover metabolism. These findings enrich information about the regulatory mechanisms involved in muscle development at the miRNA expression level, and provide several candidates for future studies concerning miRNA-target function in regulation of chicken muscle development.

摘要

背景

miRNAs 在生长和发育中发挥着关键作用。许多关于鸡肌肉发育的研究都集中在鉴定对胚胎或成年肌肉发育很重要的 miRNAs。然而,对于 miRNA 在胚胎到孵化后期间整个肌肉发育过程中的作用知之甚少。在这里,我们全面研究了 12 日龄胚胎(E12)、E17 和 1 日龄(D1)、D14、D56 和 D98 孵化后阶段的 miRNA 转录组。

结果

我们在肌肉发育过程中鉴定了 337 个差异表达的 miRNAs(DE-miRNAs)。短时间序列表达 Miner 分析确定了两个明显不同的表达模式。下调模式的 Profile 4 包含 106 个 DE-miRNAs,而上调模式的 Profile 21 包含 44 个 DE-miRNAs。上调模式的 DE-miRNAs 主要在细胞周转中发挥调节作用,如嘧啶代谢、DNA 复制和细胞周期,而下调模式的 DE-miRNAs 直接或间接地有助于蛋白质周转代谢,如糖酵解/糖异生、丙酮酸代谢和氨基酸生物合成。

结论

鸡肌肉发育过程中胚胎和孵化后阶段的主要功能 miRNAs 不同。上调模式的 miRNAs 主要参与细胞周转,而下调模式的 miRNAs 主要在蛋白质周转代谢中发挥调节作用。这些发现丰富了 miRNA 表达水平参与肌肉发育的调控机制信息,并为未来研究 miRNA-靶功能在鸡肌肉发育调控中的作用提供了几个候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9268/7816426/0247cf5d52e2/12864_2021_7374_Fig1_HTML.jpg

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