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首页> 外文期刊>BMC Genomics >Transcriptome analysis reveals differential immune related genes expression in Ruditapes philippinarum under hypoxia stress: potential HIF and NF-κB crosstalk in immune responses in clam
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Transcriptome analysis reveals differential immune related genes expression in Ruditapes philippinarum under hypoxia stress: potential HIF and NF-κB crosstalk in immune responses in clam

机译:转录组分析显示缺氧胁迫下Ruditapes菲律宾中的差异免疫相关基因表达:在蛤蜊中免疫应答的潜在HIF和NF-κB串扰

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Hypoxia is an important environmental stressor in aquatic ecosystems, with increasingly impacts on global biodiversity. Benthic communities are the most sensitive parts of the coastal ecosystem to eutrophication and resulting hypoxia. As a filter-feeding organism living in the seafloor sediment, Ruditapes philippinarum represents an excellent “sentinel” species to assess the quality of marine environment. In order to gain insight into the molecular response and acclimatization mechanisms to hypoxia stress in marine invertebrates, we examined hypoxia-induced changes in immune-related gene expression and gene pathways involved in hypoxia regulation of R. philippinarum. We investigated the response of the Manila clam R. philippinarum to hypoxia under experimental conditions and focused on the analysis of the differential expression patterns of specific genes associated with hypoxia response by RNA-seq and time course qPCR analysis. A total of 75 genes were captured significantly differentially expressed, and were categorized into antioxidant/oxidative stress response, chaperones/heat shock proteins, immune alteration, and cell proliferation/apoptosis. Fourteen hypoxia responsive genes were validated significantly up/down regulated at different time 0, 2, 5, and 8 d in gills of R. philippinarum in hypoxia challenged group. Functional enrichment analysis revealed the HIF signaling pathway and NF-κB signaling pathway play pivotal roles in hypoxia tolerance and resistance in R. philippinarum. The HIF signaling pathway and NF-κB signaling pathway play a critical role in hypoxia tolerance and resistance in Manila clam. The immune and defense related genes and pathways obtained here gain a fundamental understanding of the hypoxia stress in marine bivalves and provide important insights into the physiological acclimation, immune response and defense activity under hypoxia challenge. The reduced metabolism is a consequence of counterbalancing investments in immune defense against other physiological processes.
机译:缺氧是水生生态系统中的重要环境压力源,对全球生物多样性越来越受到影响。底栖社区是沿海生态系统的最敏感的部分,富营养化和缺氧。作为生活在海底沉积物中的过滤器的生物,Ruditapes Philippinarum代表了一种优秀的“哨兵”物种,以评估海洋环境的质量。为了深入了解海洋无脊椎动物中缺氧胁迫的分子反应和均匀化机制,我们研究了缺氧诱导的免疫相关基因表达和基因途径的缺氧调节缺氧调控。我们在实验条件下调查了马尼拉蛤蜊R.菲律宾对缺氧的反应,并专注于RNA-SEQ和时间过程QPCR分析对缺氧响应相关的特定基因的差异表达模式的分析。显着表达了总共75个基因,分为抗氧化/氧化应激响应,伴侣/热休克蛋白,免疫改变和细胞增殖/凋亡。在缺氧攻击群体的R.菲律宾鳃中的不同时间0,2,5和8 d中,在不同时间调节14次缺氧响应基因。功能性富集分析揭示了HIF信号通路和NF-κB信号通路在R. Philippinarum中的缺氧耐受性和抗性中发挥枢转作用。 HIF信号通路和NF-κB信号传导途径在马尼拉蛤的缺氧耐受性和抗性中起着关键作用。这里获得的免疫和防御相关基因和途径在缺氧症中获得了对缺氧胁迫的基础知识,并在缺氧挑战下对生理适应,免疫反应和防御活动提供重要见解。降低的代谢是对抗免疫防御对其他生理过程的影响的结果。

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