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Transcriptome analysis reveals immune-related gene expression changes with age in giant panda (Ailuropoda melanoleuca) blood

机译:转录组分析显示大熊猫(Ailuropoda melanoleuca)血液中与免疫相关的基因表达随年龄的变化

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摘要

The giant panda (Ailuropoda melanoleuca), an endangered species endemic to western China, has long been threatened with extinction that is exacerbated by highly contagious and fatal diseases. Aging is the most well-defined risk factor for diseases and is associated with a decline in immune function leading to increased susceptibility to infection and reduced response to vaccination. Therefore, this study aimed to determine which genes and pathways show differential expression with age in blood tissues. We obtained 210 differentially expressed genes by RNA-seq, including 146 up-regulated and 64 down-regulated genes in old pandas (18-21yrs) compared to young pandas (2-6yrs). We identified ISG15, STAT1, IRF7 and DDX58 as the hub genes in the protein-protein interaction network. All of these genes were up-regulated with age and played important roles in response to pathogen invasion. Functional enrichment analysis indicated that up-regulated genes were mainly involved in innate immune response, while the down-regulated genes were mainly related to B cell activation. These may suggest that the innate immunity is relatively well preserved to compensate for the decline in the adaptive immune function. In conclusion, our findings will provide a foundation for future studies on the molecular mechanisms underlying immune changes associated with ageing.
机译:大熊猫(大熊猫)是中国西部特有的濒危物种,长期以来受到灭绝的威胁,高度传染性和致命性疾病加剧了灭绝。衰老是最明确的疾病风险因素,与免疫功能下降有关,导致感染敏感性增加和对疫苗接种的反应降低。因此,本研究旨在确定哪些基因和途径在血液组织中显示随年龄的差异表达。我们通过RNA序列获得了210个差异表达基因,其中与大熊猫(2-6岁)相比,大熊猫(18-21岁)中有146个上调基因和64个下调基因。我们将ISG15,STAT1,IRF7和DDX58确定为蛋白质-蛋白质相互作用网络中的中枢基因。所有这些基因都随着年龄的增长而上调,并在响应病原体入侵方面发挥重要作用。功能富集分析表明,上调的基因主要与先天免疫应答有关,而下调的基因主要与B细胞活化有关。这些可能表明先天免疫力相对较好地被保存以补偿适应性免疫功能的下降。总之,我们的发现将为未来研究与衰老相关的免疫变化的分子机制提供基础。

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