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金藻昆布糖 1a 参与了三角褐指藻的光驯化。

Aureochrome 1a is involved in the photoacclimation of the diatom Phaeodactylum tricornutum.

机构信息

Institut für Biologie, Universität Leipzig, Leipzig, Germany.

出版信息

PLoS One. 2013 Sep 20;8(9):e74451. doi: 10.1371/journal.pone.0074451. eCollection 2013.

Abstract

Aureochromes constitute a family of blue light (BL) receptors which are found exclusively in heterokont algae such as diatoms (Bacillariophyceae) and yellow-green algae (Xanthophyceae). Previous studies on the diatom Phaeodactylum tricornutum indicate that the formation of a high light acclimated phenotype is mediated by the absorption of BL and that aureochromes might play an important role in this process. P. tricornutum possesses four genes encoding aureochromes. In this study we confirm the nuclear localisation of the PtAUREO1a, 1b and 2 proteins. Furthermore we studied the physiology of light quality acclimation in genetically transformed P. tricornutum cell lines with reduced expression of the aureochrome 1a gene. The results demonstrate that the AUREO1a protein has a distinct function in light acclimation. However, rather unexpectedly AUREO1a seems to repress high light acclimation which resulted in a state of 'hyper' high light acclimation in aureo1a silenced strains. This was indicated by characteristic changes of several photosynthetic parameters, including increased maximum photosynthesis rates, decreased chlorophyll a contents per cell and increased values of non-photochemical quenching in AUREO1a silenced strains compared to wild type cultures. Strikingly, AUREO1a silenced strains exhibited phenotypic differences compared to wild type cells during cultivation under BL as well as under red light (RL) conditions. Therefore, AUREO1a might influence the RL signalling process, suggesting an interaction of AUREO1a with RL perception pathways.

摘要

金藻素构成了一个家族的蓝光 (BL) 受体,这些受体只存在于异鞭毛藻中,如硅藻 (Bacillariophyceae) 和黄-绿藻 (Xanthophyceae)。以前对硅藻三角褐指藻的研究表明,高光驯化表型的形成是由 BL 的吸收介导的,金藻素可能在这个过程中发挥重要作用。三角褐指藻拥有四个编码金藻素的基因。在这项研究中,我们证实了 PtAUREO1a、1b 和 2 蛋白的核定位。此外,我们研究了具有降低的 aureochrome 1a 基因表达的遗传转化三角褐指藻细胞系中光质驯化的生理学。结果表明,AUREO1a 蛋白在光驯化中具有独特的功能。然而,出人意料的是,AUREO1a 似乎抑制高光驯化,导致 aureo1a 沉默菌株中出现“超”高光驯化状态。这表现在几个光合作用参数的特征变化上,包括增加最大光合作用速率、降低每个细胞的叶绿素 a 含量以及增加非光化学猝灭值。令人惊讶的是,与野生型培养物相比,AUREO1a 沉默菌株在 BL 以及红光 (RL) 条件下培养时表现出与野生型细胞不同的表型差异。因此,AUREO1a 可能影响 RL 信号转导过程,表明 AUREO1a 与 RL 感知途径的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/715c/3779222/075669a7706d/pone.0074451.g001.jpg

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