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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Overproduction of recombinant E-coli malate synthase enhances Chlamydomonas reinhardtii biomass by upregulating heterotrophic metabolism
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Overproduction of recombinant E-coli malate synthase enhances Chlamydomonas reinhardtii biomass by upregulating heterotrophic metabolism

机译:通过上调异养代谢来增强重组e-Coli苹果酸盐合酶的过度生产增强了衣原体Reinhardtii生物量

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摘要

High uptake of malate and efficient distribution of intracellular malate to organelles contributed to biomass increase, reducing maintenance energy. In this study, transgenic Chlamydomonas reinhardtii was developed that stably expresses malate synthase in the chloroplast. The strains under glyoxylate treatment showed 19% more increase in microalgal biomass than wild-type. By RNA analysis, transcript levels of malate dehydrogenase (MDH4) and acetyl-CoA synthetase (ACS3), isocitrate lyase (ICL1) and malate synthase (MAS1), were significantly more expressed (17%, 42%, 24%, and 18% respectively), which was consistent with reported heterotrophic metabolism flux analysis with the objective function maximizing biomass. Photosynthetic F-v/F-m was slightly reduced. A more meticulous analysis is necessary, but, in the transgenic microalgae with malate synthase overexpression, the metabolism is likely to more rely on heterotrophic energy production via TCA cycle and glyoxylate shunt than on photosynthesis, resulting in the increase in microalgal biomass.
机译:高吸收苹果酸盐和有效分布的细胞内苹果酸酯对细胞器有助于生物质增加,降低维护能量。在该研究中,开发了转基因衣原体Reinhardtii,其稳定地表达叶绿体中的雄性合成酶。乙醛酸处理下的菌株显示出比野生型微藻生物质增加了19%。通过RNA分析,苹果酸脱氢酶(MDH4)和乙酰-COA合成酶(ACS3),异柠檬酸裂解酶(ICL1)和苹果酸盐合酶(MAS1)的转录物水平显着表达(17%,42%,24%和18%分别符合报告的异养代谢通量分析,其具有最大化生物质的目标函数。光合作用F-V / F-M略微减少。需要一种细致的分析,但是,在转基因微藻中具有雄性合酶过表达的,代谢可能更依赖于通过TCA循环和拟甲氧基化合物分流的异营养能量产生,从而导致微藻生物质的增加。

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