首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Overexpressing Ferredoxins in Chlamydomonas reinhardtii Increase Starch and Oil Yields and Enhance Electric Power Production in a Photo Microbial Fuel Cell
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Overexpressing Ferredoxins in Chlamydomonas reinhardtii Increase Starch and Oil Yields and Enhance Electric Power Production in a Photo Microbial Fuel Cell

机译:在莱茵衣藻中过表达铁氧还蛋白会增加光和微生物燃料电池中的淀粉和油的产量并增强电力生产

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摘要

Ferredoxins (FDX) are final electron carrier proteins in the plant photosynthetic pathway, and function as major electron donors in diverse redox-driven metabolic pathways. We previously showed that overexpression of a major constitutively expressed ferredoxin gene PETF in Chlamydomonas decreased the reactive oxygen species (ROS) level and enhanced tolerance to heat stress. In addition to PETF, an endogenous anaerobic induced FDX5 was overexpressed in transgenic Chlamydomonas lines here to address the possible functions of FDX5. All the independent FDX transgenic lines showed decreased cellular ROS levels and enhanced tolerance to heat and salt stresses. The transgenic Chlamydomonas lines accumulated more starch than the wild-type line and this effect increased almost three-fold in conditions of nitrogen depletion. Furthermore, the lipid content was higher in the transgenic lines than in the wild-type line, both with and without nitrogen depletion. Two FDX-overexpressing Chlamydomonas lines were assessed in a photo microbial fuel cell (PMFC); power density production by the transgenic lines was higher than that of the wild-type cells. These findings suggest that overexpression of either PETF or FDX5 can confer tolerance against heat and salt stresses, increase starch and oil production, and raise electric power density in a PMFC.
机译:铁氧还蛋白(FDX)是植物光合途径中的最终电子载体蛋白,并在各种氧化还原驱动的代谢途径中充当主要的电子供体。我们以前表明衣藻中主要组成型表达的铁氧还蛋白基因PETF的过表达降低了活性氧(ROS)水平并增强了对热应激的耐受性。除PETF外,内源厌氧诱导的FDX5在转基因衣藻体内也过表达,以解决FDX5的可能功能。所有独立的FDX转基因品系均显示出降低的细胞ROS水平并增强了对热和盐胁迫的耐受性。转基因衣藻品系比野生型品系积累更多的淀粉,在氮耗竭的情况下,这种作用增加了近三倍。此外,在有和没有氮消耗的情况下,转基因品系中的脂质含量均高于野生型品系。在光微生物燃料电池(PMFC)中评估了两个FDX过表达的衣藻。转基因品系产生的功率密度高于野生型细胞。这些发现表明,PETF或FDX5的过表达可以赋予耐热和耐盐性耐受性,增加淀粉和油脂的产量,并提高PMFC中的电功率密度。

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