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首页> 外文期刊>BMC Genomics >Gene regulatory response to hyposalinity in the brown seaweed Fucus vesiculosus
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Gene regulatory response to hyposalinity in the brown seaweed Fucus vesiculosus

机译:对棕色海藻浮肿的基因监管响应褐藻内斑岩

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BACKGROUND:Rockweeds are among the most important foundation species of temperate rocky littoral shores. In the Baltic Sea, the rockweed Fucus vesiculosus is distributed along a decreasing salinity gradient from the North Atlantic entrance to the low-salinity regions in the north-eastern margins, thus, demonstrating a remarkable tolerance to hyposalinity. The underlying mechanisms for this tolerance are still poorly understood. Here, we exposed F. vesiculosus from two range-margin populations to the hyposaline (2.5 PSU - practical salinity unit) conditions that are projected to occur in the region by the end of this century as a result of climate change. We used transcriptome analysis (RNA-seq) to determine the gene expression patterns associated with hyposalinity acclimation, and examined the variation in these patterns between the sampled populations.RESULTS:Hyposalinity induced different responses in the two populations: in one, only 26 genes were differentially expressed between salinity treatments, while the other population demonstrated up- or downregulation in 3072 genes. In the latter population, the projected future hyposalinity induced an acute response in terms of antioxidant production. Genes associated with membrane composition and structure were also heavily involved, with the upregulation of fatty acid and actin production, and the downregulation of ion channels and alginate pathways. Changes in gene expression patterns clearly indicated an inhibition of the photosynthetic machinery, with a consequent downregulation of carbohydrate production. Simultaneously, energy consumption increased, as revealed by the upregulation of genes associated with respiration and ATP synthesis. Overall, the genes that demonstrated the largest increase in expression were ribosomal proteins involved in translation pathways. The fixation rate of SNP:s was higher within genes responding to hyposalinity than elsewhere in the transcriptome.CONCLUSIONS:The high fixation rate in the genes coding for salinity acclimation mechanisms implies strong selection for them. The among-population differentiation that we observed in the transcriptomic response to hyposalinity stress suggests that populations of F. vesiculosus may differ in their tolerance to future desalination, possibly as a result of local adaptation to salinity conditions within the Baltic Sea. These results emphasise the importance of considering interspecific genetic variation when evaluating the consequences of environmental change.
机译:背景:Rockweeds是温带岩石沿岸海岸最重要的基础。在波罗的海中,罗汉海洋浮肿沿着北大西洋进入东北边缘的低盐度区的盐度梯度降低,从而展示了对镰育的显着耐受性。这种耐受性的潜在机制仍然明白。在这里,我们将F. Vesiculos从两个范围边缘群中暴露于乳石(2.5psu - 实际盐度单位)条件下,由于气候变化,本世纪末发生在该地区发生。我们使用转录组分析(RNA-SEQ)来确定与血尿基度适应相关的基因表达模式,并检查了取样人群之间这些模式的变化。结果:HYPASINENTY诱导两种群体中的不同反应:在一个,只有26个基因在盐度处理之间差异表达,而其他人群在3072个基因中表现出上调或下调。在后一种人口中,预计未来的高估诱导抗氧化生产方面的急性反应。脂肪酸和肌动蛋白产生的上调和离子通道的下调和藻酸盐途径的上调,与膜组合物和结构相关的基因也大量涉及。基因表达模式的变化清楚地表明了光合作机的抑制作用,随后的碳水化合物生产下调。同时,能量消耗增加,如呼吸和ATP合成相关的基因的上调所揭示。总的来说,表现出最大的表达增加的基因是核糖体蛋白,参与翻译途径。 SNP的固定率:S在基因内较高,响应于转录组中的其他地方。结论:编码盐度适应机制的基因中的高固定率意味着它们的强烈选择。我们在转录组对肺部附近胁迫下观察到的人口分化表明,F. Vesiculos的群体可能与未来海水淡化的耐受性不同,可能由于局部适应波罗的海内的盐度条件。这些结果强调了在评估环境变化后果时考虑表述遗传变异的重要性。

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