首页> 外文会议>Photosynthesis research for food, fuel and future >Improving the Photosynthetic Productivity and Light Utilization in Algal Biofuel Systems:Metabolic and Physiological Characterization of a Potentially Advantageous Mutant of Chlamydomonas Reinhardtii
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Improving the Photosynthetic Productivity and Light Utilization in Algal Biofuel Systems:Metabolic and Physiological Characterization of a Potentially Advantageous Mutant of Chlamydomonas Reinhardtii

机译:改善藻类生物燃料系统中的光合生产力和光利用:衣藻的潜在优势突变体的代谢和生理特性

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摘要

In this study, we report initial biophysical and biochemical characterization of a spontaneous 'mutant' (referred to as 'IM') of the green alga Chlamydomonas reinhardtii with several unique attributes that has potential for improving photosynthetic productivity, light utilization efficiency, and, perhaps, even protection against environmental stress. Growth rate experiments showed that under low light intensity (10 μmol photons m-2 s-1), IM showed 36% higher cell density and 25% higher dry cell weight than the wild type cells (WT), while at higher light intensity (640 μnol photons m-2 s-1), the IM did not show any advantage. Chlorophyll a fluorescence transient measurements and subsequent analysis indicated that IM cells grown at a light intensity of 20 μmol photons m-2 s-1 had a higher light utilization efficiency in comparison to the WT cells. Interestingly, metabolite profiling analysis showed that during the exponential growth phase with both low and high light intensities (10 and 640 μmol photons m-2 s-1), the IM cells had higher concentrations than WT cells for several important metabolites that have been previously shown to help protect against environmental stress.
机译:在这项研究中,我们报告了绿藻衣藻(Chlamydomonas reinhardtii)的自发“突变体”(称为“ IM”)的初步生物物理和生化特征,其具有几个独特的属性,这些属性可能会提高光合生产力,光利用效率,甚至,甚至可以抵御环境压力。生长速率实验表明,在低光照强度(10μmol光子m-2 s-1)下,IM显示出比野生型细胞(WT)高36%的细胞密度和25%干细胞重量,而在高光照强度下( 640μnol光子m-2 s-1),IM没有显示任何优势。叶绿素a荧光瞬态测量和随后的分析表明,与WT细胞相比,以20μmol光子m-2 s-1的光强度生长的IM细胞具有更高的光利用效率。有趣的是,代谢物谱分析表明,在具有低光强度和高光强度(10和640μmol光子m-2 s-1)的指数生长期中,IM细胞的浓度要比WT细胞高,这是以前重要的几种代谢物被证明有助于防止环境压力。

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