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首页> 外文期刊>Eukaryotic cell >Transcriptome for Photobiological Hydrogen Production Induced by Sulfur Deprivation in the Green Alga Chlamydomonas reinhardtii
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Transcriptome for Photobiological Hydrogen Production Induced by Sulfur Deprivation in the Green Alga Chlamydomonas reinhardtii

机译:绿藻莱茵衣藻中硫剥夺诱导的光生物氢生产的转录组。

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Photobiological hydrogen production using microalgae is being developed into a promising clean fuel stream for the future. In this study, microarray analyses were used to obtain global expression profiles of mRNA abundance in the green alga Chlamydomonas reinhardtii at different time points before the onset and during the course of sulfur-depleted hydrogen production. These studies were followed by real-time quantitative reverse transcription-PCR and protein analyses. The present work provides new insights into photosynthesis, sulfur acquisition strategies, and carbon metabolism-related gene expression during sulfur-induced hydrogen production. A general trend toward repression of transcripts encoding photosynthetic genes was observed. In contrast to all other LHCBM genes, the abundance of the LHCBM9 transcript (encoding a major light-harvesting polypeptide) and its protein was strongly elevated throughout the experiment. This suggests a major remodeling of the photosystem II light-harvesting complex as well as an important function of LHCBM9 under sulfur starvation and photobiological hydrogen production. This paper presents the first global transcriptional analysis of C. reinhardtii before, during, and after photobiological hydrogen production under sulfur deprivation.
机译:使用微藻生产光生物氢的能力正在发展成为一种有前途的清洁燃料流。在这项研究中,使用微阵列分析获得了在藻类开始枯萎之前和枯竭制氢过程中不同时间点,绿藻莱茵衣藻的mRNA丰度的整体表达谱。这些研究之后是实时定量逆转录PCR和蛋白质分析。本工作为硫诱导氢生产过程中的光合作用,硫的获取策略和碳代谢相关的基因表达提供了新的见解。观察到抑制编码光合作用基因的转录物的总体趋势。与所有其他 LHCBM 基因相反,在整个实验过程中, LHCBM9 转录本(编码主要的光捕获多肽)及其蛋白的含量都大大提高。这表明光系统II的光捕获复合物的重大改造,以及 LHCBM9 在硫饥饿和光生物产氢条件下的重要功能。本文介绍了 C的首次全局转录分析。在缺乏硫的情况下,在光生物产氢之前,过程中和之后生产reinhardtii

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