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胚胎光合活性的调节影响拟南芥种子的适合度。

Adjustments of embryonic photosynthetic activity modulate seed fitness in Arabidopsis thaliana.

作者信息

Allorent Guillaume, Osorio Sonia, Vu Joseph Ly, Falconet Denis, Jouhet Juliette, Kuntz Marcel, Fernie Alisdair R, Lerbs-Mache Silva, Macherel David, Courtois Florence, Finazzi Giovanni

机构信息

Laboratoire de Physiologie Cellulaire & Végétale, Unité Mixte de Recherche 5168, Centre National de la Recherche Scientifique, F-38054, Grenoble, France; Université Grenoble-Alpes, F-38054, Grenoble, France; Commissariat à l'Energie Atomique et Energies Alternatives, Institut de Recherches en Technologies et Sciences pour le Vivant, F-38054, Grenoble, France; Unité Sous Contrat 1359, Institut National Recherche Agronomique, F-38054, Grenoble, France.

出版信息

New Phytol. 2015 Jan;205(2):707-19. doi: 10.1111/nph.13044. Epub 2014 Sep 25.

Abstract

In this work, we dissect the physiological role of the transient photosynthetic stage observed in developing seeds of Arabidopsis thaliana. By combining biochemical and biophysical approaches, we demonstrate that despite similar features of the photosynthetic apparatus, light absorption, chloroplast morphology and electron transport are modified in green developing seeds, as a possible response to the peculiar light environment experienced by them as a result of sunlight filtration by the pericarp. In particular, enhanced exposure to far-red light, which mainly excites photosystem I, largely enhances cyclic electron flow around this complex at the expenses of oxygen evolution. Using pharmacological, genetic and metabolic analyses, we show that both linear and cyclic electron flows are important during seed formation for proper germination timing. Linear flow provides specific metabolites related to oxygen and water stress responses. Cyclic electron flow possibly adjusts the ATP to NADPH ratio to cope with the specific energy demand of developing seeds. By providing a comprehensive scenario of the characteristics, function and consequences of embryonic photosynthesis on seed vigour, our data provide a rationale for the transient building up of a photosynthetic machinery in seeds.

摘要

在这项工作中,我们剖析了拟南芥发育种子中观察到的短暂光合阶段的生理作用。通过结合生化和生物物理方法,我们证明,尽管光合装置具有相似特征,但绿色发育种子中的光吸收、叶绿体形态和电子传递会发生改变,这可能是对它们因果皮过滤阳光而经历的特殊光照环境的一种反应。特别是,增强对主要激发光系统I的远红光的照射,在很大程度上会以氧气释放为代价增强围绕该复合体的循环电子流。通过药理学、遗传学和代谢分析,我们表明线性和循环电子流在种子形成过程中对于适当的萌发时间都很重要。线性电子流提供与氧气和水分胁迫反应相关的特定代谢物。循环电子流可能会调节ATP与NADPH的比例,以应对发育种子的特定能量需求。通过提供胚胎光合作用对种子活力的特征、功能和影响的全面情况,我们的数据为种子中光合机制的短暂建立提供了理论依据。

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