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首页> 外文期刊>Journal of Experimental Botany >Genome-wide transcriptomic analysis of the effects of sub-ambient atmospheric oxygen and elevated atmospheric carbon dioxide levels on gametophytes of the moss, Physcomitrella patens
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Genome-wide transcriptomic analysis of the effects of sub-ambient atmospheric oxygen and elevated atmospheric carbon dioxide levels on gametophytes of the moss, Physcomitrella patens

机译:基因组宽转录组分析亚环境大气氧气效应和大气二氧化碳水平对苔藓的配子体,Physcomitrella patens

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摘要

It is widely accepted that atmospheric O-2 has played a key role in the development of life on Earth, as evident from the coincidence between the rise of atmospheric O-2 concentrations in the Precambrian and biological evolution. Additionally, it has also been suggested that low atmospheric O-2 is one of the major drivers for at least two of the five mass-extinction events in the Phanerozoic. At the molecular level, our understanding of the responses of plants to sub-ambient O-2 concentrations is largely confined to studies of the responses of underground organs, e.g. roots to hypoxic conditions. Oxygen deprivation often results in elevated CO2 levels, particularly under waterlogged conditions, due to slower gas diffusion in water compared to air. In this study, changes in the transcriptome of gametophytes of the moss Physcomitrella patens arising from exposure to sub-ambient O-2 of 13% (oxygen deprivation) and elevated CO2 (1500 ppmV) were examined to further our understanding of the responses of lower plants to changes in atmospheric gaseous composition. Microarray analyses revealed that the expression of a large number of genes was affected under elevated CO2 (814 genes) and sub-ambient O-2 conditions (576 genes). Intriguingly, the expression of comparatively fewer numbers of genes (411 genes) was affected under a combination of both sub-ambient O-2 and elevated CO2 condition (low O-2-high CO2). Overall, the results point towards the effects of atmospheric changes in CO2 and O-2 on transcriptional reprogramming, photosynthetic regulation, carbon metabolism, and stress responses.
机译:众所周知,大气o-2在地球上的生命的发展中发挥了关键作用,从普雷亚布里亚语和生物进化中的大气o-2浓度的兴起之间的巧合方面是明显的。另外,还提出了低气氛O-2是尖峰中的五个大量消失事件中的至少两个的主要驱动因素之一。在分子水平下,我们对植物对亚环境o-2浓度的影响主要限于地下器官的反应,例如,研究。根到缺氧条件。由于与空气相比,氧剥夺常见导致CO 2水平升高,特别是在涝渍条件下。在该研究中,研究了由暴露于13%(缺氧)和升高的CO 2(1500ppmV)的亚环境O-2产生的苔藓Physcomatrella的转录组的变化,以进一步了解较低的回应植物变化大气气态组合物。微阵列分析显示,在升高的CO 2(814个基因)和亚环境O-2条件下,大量基因的表达受到影响(576个基因)。有趣的是,在亚环境O-2和升高的CO 2条件(低O-2高CO 2)的组合中,对相对较少数量的基因(411基因)的表达受到影响。总体而言,结果指出了CO2和O-2对转录重编程,光合调控和应激反应的影响的影响。

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