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小 RNA 测序揭示了藏鸡低氧适应中重要的 miRNAs。

Small RNA sequencing reveals miRNAs important for hypoxic adaptation in the Tibetan chicken.

机构信息

Poultry Research Institute, Sichuan Animal Science Academy , Chengdu, Sichuan, China.

Poultry Research Institute, Animal Breeding and Genetics Key Laboratory of Sichuan Province , Chengdu, Sichuan, China.

出版信息

Br Poult Sci. 2020 Dec;61(6):632-639. doi: 10.1080/00071668.2020.1792835. Epub 2020 Jul 24.

Abstract
  1. The Tibetan chicken, which is an indigenous breed living on the Tibetan Plateau, exhibits hypoxic adaptations to its high-altitude environment. However, the molecular mechanism behind this hypoxic adaptation is still unclear. This study aimed to investigate differentially expressed miRNAs involved in hypoxic adaptation through high-throughput RNA sequencing. 2. Quantitative reverse transcription polymerase chain reaction (qRT-PCR) was used to verify the differentially expressed miRNAs and their target genes in chicken embryonic heart tissues and fibroblasts. Luciferase reporter assays were performed to confirm the relationship between miRNAs and target genes. 3. The study identified 37 differentially expressed miRNAs in Tibetan chicken embryonic heart tissues, including 20 up- and 17 down-regulated miRNAs, compared to those found in lowland chickens. Differentially expressed miRNAs were mainly involved in biological processes, such as cell cycle arrest, toll-like receptor signalling pathways, and I-kappa B kinase/NF-kappa B signalling. The data showed that gga-miR-34 c-5p was significantly upregulated in Tibetan chicken tissues and hypoxic fibroblasts, while , a target gene of gga-miR-34 c-5p, was downregulated. Moreover, gga-miR-34 c-5p dramatically decreased the luciferase activity of the wild , whereas no effect on the mutational was found. 4. This study identified miRNA expression profiles in the Tibetan chicken and suggested that miR-34 c-5p acts as a novel miRNA associated with hypoxic adaptation. This facilitates the understanding of molecular mechanisms that underlie long-term exposure to hypoxia.
摘要
  1. 藏鸡是一种生活在青藏高原的本土品种,对高海拔环境表现出低氧适应。然而,这种低氧适应的分子机制尚不清楚。本研究旨在通过高通量 RNA 测序研究参与低氧适应的差异表达 miRNA。

  2. 定量逆转录聚合酶链反应(qRT-PCR)用于验证鸡胚心脏组织和成纤维细胞中差异表达的 miRNA 及其靶基因。荧光素酶报告基因检测用于验证 miRNA 与靶基因的关系。

  3. 研究鉴定了藏鸡胚胎心脏组织中 37 个差异表达的 miRNA,其中 20 个上调,17 个下调,与低地鸡相比。差异表达的 miRNA 主要参与细胞周期阻滞、Toll 样受体信号通路和 I-kappa B 激酶/NF-kappa B 信号通路等生物学过程。研究数据表明,gga-miR-34c-5p 在藏鸡组织和低氧成纤维细胞中显著上调,而gga-miR-34c-5p 的靶基因则下调。此外,gga-miR-34c-5p 显著降低了野生型的荧光素酶活性,而对突变型则没有影响。

  4. 本研究鉴定了藏鸡中的 miRNA 表达谱,并提出 miR-34c-5p 作为一种与低氧适应相关的新型 miRNA。这有助于理解长期低氧暴露的分子机制。

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