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探讨 miRNA 在鸡早期胚胎发育中的作用及其意义。

Exploring the role of miRNAs in early chicken embryonic development and their significance.

机构信息

Heyuan Branch, Guangdong Provincial Laboratory of Lingnan Modern Agricultural Science and Technology, College of Animal Science, South China Agricultural University, Guangzhou 510642, China; Guangdong Provincial Key Lab of Agro Animal Genomics and Molecular Breeding, College of Animal Science, South China Agricultural University, Guangzhou, China; South China Collaborative Innovation Center for Poultry Disease Control and Product Safety, Guangzhou 510642, China; Key Laboratory of Animal Health Aquaculture and Environmental Control, Guangzhou 510642, Guangdong, China.

Heyuan Branch, Guangdong Provincial Laboratory of Lingnan Modern Agricultural Science and Technology, College of Animal Science, South China Agricultural University, Guangzhou 510642, China; Guangdong Provincial Key Lab of Agro Animal Genomics and Molecular Breeding, College of Animal Science, South China Agricultural University, Guangzhou, China.

出版信息

Poult Sci. 2023 Dec;102(12):103105. doi: 10.1016/j.psj.2023.103105. Epub 2023 Sep 13.

Abstract

In the early stages of embryonic development, a precise and strictly controlled hierarchy of gene expression is essential to ensure proper development of all cell types and organs. To better understand this gene control process, we constructed a small RNA library from 1- to 5-day-old chick embryos, and identified 2,459 miRNAs including 827 existing, 695 known, and 937 novel miRNAs with bioinformatic analysis. There was absolute high expression of a number of miRNAs in each stage, including gga-miR-363-3p (Em1d), gga-miR-26a-5p (Em2d and Em3d), gga-miR-10a-5p (Em4d), and gga-miR-199-5p (Em5d). We evaluated enriched miRNA profiles, identifying VEGF, Insulin, ErbB, MAPK, Hedgehog, TLR and Hippo signaling pathways as primary regulatory mechanisms enabling complex morphogenetic transformations within tight temporal constraints. Pathway analysis revealed miRNAs as pivotal nodes of interaction, coordinating cascades of gene expression critical for cell fate determination, proliferation, migration, and differentiation across germ layers and developing organ systems. Weighted Gene Co-Expression Network Analysis (WGCNA) generated hub miRNAs whose modular connections spanned regulatory networks, including: gga-miR-181a-3p (blue module), coordinating immunegenesis and myogenesis; gga-miR-126-3p (brown module), regulating vasculogenesis and angiogenesis; gga-miR-302c-5p (turquoise module), enabling pluripotency and self-renew; and gga-miR-429-3p (yellow module), modulating neurogenesis and osteogenesis. The findings of this study extend the knowledge of miRNA expression in early embryonic development of chickens, providing insights into the intricate gene control process that helps ensure proper development.

摘要

在胚胎发育的早期阶段,精确且严格控制的基因表达层次对于确保所有细胞类型和器官的正常发育至关重要。为了更好地理解这个基因调控过程,我们构建了一个来自 1 到 5 日龄鸡胚的小 RNA 文库,并通过生物信息学分析鉴定了 2459 个 miRNA,包括 827 个现有 miRNA、695 个已知 miRNA 和 937 个新的 miRNA。在每个阶段都有许多 miRNA 表现出绝对高的表达水平,包括 gga-miR-363-3p(Em1d)、gga-miR-26a-5p(Em2d 和 Em3d)、gga-miR-10a-5p(Em4d)和 gga-miR-199-5p(Em5d)。我们评估了富集的 miRNA 图谱,确定了 VEGF、Insulin、ErbB、MAPK、Hedgehog、TLR 和 Hippo 信号通路作为主要的调节机制,使复杂的形态发生转化在严格的时间限制内发生。通路分析显示,miRNA 作为相互作用的关键节点,协调着对细胞命运决定、增殖、迁移和分化至关重要的基因表达级联反应,跨越了胚层和发育中的器官系统。加权基因共表达网络分析(WGCNA)生成了枢纽 miRNA,其模块化连接跨越了调节网络,包括:gga-miR-181a-3p(蓝色模块),协调免疫发生和肌发生;gga-miR-126-3p(棕色模块),调节血管发生和血管生成;gga-miR-302c-5p(绿松石模块),使多能性和自我更新成为可能;以及 gga-miR-429-3p(黄色模块),调节神经发生和骨发生。这项研究的结果扩展了鸡胚胎早期发育中 miRNA 表达的知识,深入了解了帮助确保正常发育的复杂基因调控过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/821f/10587638/f587620a8207/gr1.jpg

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