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Depth-specific fluctuations of gene expression and protein abundance modulate the photophysiology in the seagrass Posidonia oceanica

机译:基因表达和蛋白质丰度的深度特异性波动调节海草波塞冬菌的光生理

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摘要

Here we present the results of a multiple organizational level analysis conceived to identify acclimative/adaptive strategies exhibited by the seagrass Posidonia oceanica to the daily fluctuations in the light environment, at contrasting depths. We assessed changes in photophysiological parameters, leaf respiration, pigments, and protein and mRNA expression levels. The results show that the diel oscillations of P. oceanica photophysiological and respiratory responses were related to transcripts and proteins expression of the genes involved in those processes and that there was a response asynchrony between shallow and deep plants probably caused by the strong differences in the light environment. The photochemical pathway of energy use was more effective in shallow plants due to higher light availability, but these plants needed more investment in photoprotection and photorepair, requiring higher translation and protein synthesis than deep plants. The genetic differentiation between deep and shallow stands suggests the existence of locally adapted genotypes to contrasting light environments. The depth-specific diel rhythms of photosynthetic and respiratory processes, from molecular to physiological levels, must be considered in the management and conservation of these key coastal ecosystems.
机译:在这里,我们介绍了旨在识别海草波塞冬大洋洲在不同深度下在光照环境下日常波动所表现出的适应/适应策略的多重组织水平分析的结果。我们评估了光生理参数,叶片呼吸,色素以及蛋白质和mRNA表达水平的变化。结果表明,海洋光生理和呼吸反应的diel振荡与这些过程中相关基因的转录本和蛋白质表达有关,浅层植物与深层植物之间的响应不同步可能是由于光的强烈差异引起的。环境。由于光能利用率较高,在浅层植物中能源利用的光化学途径更有效,但这些植物在光保护和光修复方面需要更多的投资,比深植物需要更高的翻译和蛋白质合成。浅林和浅林之间的遗传分化表明存在与逆光环境形成对比的局部适应基因型。在管理和保护这些关键的沿海生态系统时,必须考虑从分子水平到生理水平的光合作用和呼吸过程的特定深度迪尔节律。

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