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Transcriptomic Responses to Darkness and the Survival Strategy of the Kelp Saccharina latissima in the Early Polar Night

机译:在早期极性夜之前对黑暗的反应响应黑暗和海藻Saccharina Latissima的生存策略

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Kelps in the Arctic region are facing challenging natural conditions. They experience over 120 days of darkness during the polar night surviving on storage compounds without conducting photosynthesis. Furthermore, the Arctic is experiencing continuous warming as a consequence of climate change. Such temperature increase may enhance the metabolic activity of kelps, using up storage compounds faster. As the survival strategy of kelps during darkness in the warming Arctic is poorly understood, we studied the physiological and transcriptomic responses of Saccharina latissima, one of the most common kelp species in the Arctic, after a two-week dark exposure at two temperatures (0 and 4°C) versus the same temperatures under low light conditions. Growth rates were decreased in darkness but remained stable at two temperatures. Pigments had higher values in darkness and at 4°C. Darkness had a greater impact on the transcriptomic performance of S. latissima than increased temperature according to the high numbers of differentially expressed genes between dark and light treatments. Darkness repressed the expression of genes coding for glycolysis and metabolite biosynthesis, as well as some energy-demanding processes, such as synthesis of photosynthetic components and transporters. Moreover, increased temperature enhanced these repressions, while the expression of some genes encoding components of the lipid catabolism, glyoxylate cycle and signalling were enhanced in darkness. Our study helps to understand the survival strategy of kelp in the early polar night and its potential resilience to the warming Arctic.
机译:北极地区的Kelps正面临着具有挑战性的自然条件。在极性夜间在没有进行光合作用的情况下在储存化合物上存活超过120天的黑暗经历。此外,由于气候变化,北极正在经历连续变暖。这种温度升高可以增强Kelps的代谢活性,使用储存化合物更快。随着在变暖北极的黑暗期间Kelps的存活策略很难理解,我们研究了北极地区最常见的海藻种类之一的Saccharina Latissima的生理和转录组反应,在两个温度下为期两周的黑暗曝光后(0和4°C)与低光条件下的相同温度相比。在黑暗中减少生长率,但在两个温度下保持稳定。颜料在黑暗中具有较高的值和4℃。黑暗对S. Latissima的转录组性能产生了更大的影响,而不是根据暗和光处理之间的差异表达基因的高差异的温度增加。黑暗压抑了编码糖酵解和代谢物生物合成的基因的表达,以及一些能量要求的过程,例如光合成分和转运蛋白的合成。此外,随着这些抑制的增加,增强的温度增强,而在黑暗中提高了编码脂质分解代谢的组分的一些基因的表达,并在黑暗中提高了甘油酯循环和信号传导。我们的研究有助于了解早期极性夜晚海藻的生存策略及其对变暖北极的潜在弹性。

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