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比较条斑紫菜(红藻门)在红光和蓝光培养下的转录组。

Comparison of transcriptome under red and blue light culture of Saccharina japonica (Phaeophyceae).

机构信息

Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, 266071, China.

出版信息

Planta. 2013 Apr;237(4):1123-33. doi: 10.1007/s00425-012-1831-7. Epub 2013 Jan 1.

Abstract

Saccharina japonica is one of the most important economic seaweeds. Several aspects such as photosynthesis in Saccharina lives are affected by blue light, the predominant light spectrum in the habitat. In this study, transcriptome profiling of S. japonica by next generation sequencing technology generated 55,102 qualified transcripts and 40.5 % transcripts were assigned to functional annotation. Expression of a large proportion of genes has been previously reported to be regulated by blue light, taking dark as control. However, by comparison among white, blue and red light, the significantly differentially expressed gene tags (DEGs) accounted for only 6.75 % of the identified sequences. It indicated that light-regulated gene expression in kelps is not a specific blue-light response. Unexpectedly, red light had more extensive effects on the transcriptomic activity than blue light did, since the most (68.4 %) DEGs were red light-regulated and only 17.5 % were specifically regulated by blue light. Some of the DEGs with the highest mRNA levels under blue light are not blue light-upregulated but red light-downregulated. The extensive regulation on gene expression under red light together with the abundant presence of phytochrome-like protein gene tags in S. japonica indicated their significant roles in the lives of brown algae. By highlighting the photosynthetic metabolism, blue light is more efficient than red light in triggering the pigment biosynthesis, light reaction and carbon fixation, revealing a molecular basis for rapid growth of kelps, since most of the time blue light is predominant in their habitat.

摘要

裙带菜是最重要的经济海藻之一。裙带菜的光合作用等多个方面都受到生境中优势光质——蓝光的影响。本研究利用下一代测序技术对裙带菜进行转录组测序,共获得 55,102 个高质量转录本,其中 40.5%的转录本被注释到功能分类。先前的研究表明,大部分基因的表达受蓝光调控,以黑暗作为对照。然而,与白光、蓝光和红光相比,仅有 6.75%的差异表达基因标签(DEGs)被鉴定出来。这表明在褐藻中,光调控基因表达并不是一个特定的蓝光反应。出乎意料的是,红光对转录组活性的影响比蓝光更广泛,因为 68.4%的 DEGs 是红光调控的,只有 17.5%是蓝光特异性调控的。在蓝光下表达水平最高的一些 DEGs 不是蓝光上调的,而是红光下调的。红光对基因表达的广泛调控以及裙带菜中大量存在的光敏色素样蛋白基因标签表明它们在褐藻生活中具有重要作用。通过强调光合作用代谢,蓝光在触发色素生物合成、光反应和碳固定方面比红光更有效,揭示了裙带菜快速生长的分子基础,因为在它们的生境中,大部分时间都是蓝光占主导地位。

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