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首页> 外文期刊>The Science of the Total Environment >Adaptive evolution and carbon dioxide fixation of Chlorella sp. in simulated flue gas
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Adaptive evolution and carbon dioxide fixation of Chlorella sp. in simulated flue gas

机译:小球藻SP的自适应演化和二氧化碳固定。在模拟烟气中

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摘要

Carbon dioxide and other greenhouse gas emissions leads to global warming. Biological capture through microalgae is a potential approach for solving this environmental problem. It is still a technical challenge to enhance the tolerance of microalgae to flue gas if CO_2 is fixed from flue gas directly. A new strain, Chlorella sp. Cv was obtained through adaptive evolution (46 cycles) against simulated flue gas (10% CO_2,200 ppm NO_x and 100 ppm SO_x). It was confirmed that Chlorella sp. Cv could tolerate simulated flue gas conditions and the maximum CO_2 fixation rate was 1.2 g L~(-1) d~(-1). In a two-stage process, the biomass concentration was 2.7 g L~(-1) and the carbohydrate content was 68.4%. Comparative transcriptomic analysis was performed for Chlorella sp. Cv under simulated flue gas and control conditions (10% CO_2). These responses against simulated flue gas uncovered the significant difference between the evolved strain and the original strain. The metabolic responses to flue gas were explored with focus on various specific genes. Upregulation of several genes related to photosynthesis, ox-idative phosphorylation, CO_2 fixation, sulfur metabolism and nitrogen metabolism was beneficial for the evolved strain to tolerate the simulated flue gas. The upregulation of genes related to extracellular sulfur transport and nitrate reductase was essential to utilize the sulfate and nitrate from dissolved SO_x and NO_x. The results in this study are helpful to establish a new process for CO_2 capture directly from industrial flue gas.
机译:二氧化碳和其他温室气体排放导致全球变暖。通过微藻生物捕获是解决这种环境问题的潜在方法。如果CO_2直接从烟气固定,则增强微藻以烟气的耐受性仍然是一种技术挑战。新菌株,小球藻SP。通过针对模拟烟道气(10%CO_2,200ppm NO_X和100ppm SO_X)来通过适应性进化(46个循环)获得CV。它确认小球藻SP。 CV可耐受模拟烟气条件,最大CO_2固定率为1.2g L〜(-1)D〜(-1)。在两阶段的过程中,生物质浓度为2.7g l〜(-1),碳水化合物含量为68.4%。对小球藻SP进行比较转录组分析。模拟烟道气和控制条件下的CV(10%CO_2)。这些反对模拟烟气气体的反应揭示了进化菌株和原始菌株之间的显着差异。探索了对烟气的代谢反应,重点是各种特定基因。上调与光合作用的几种基因,对抗型磷酸化,CO_2固定,硫代谢和氮代谢是有益的,对耐受模拟烟道气的进化菌株有益。与细胞外硫传输和硝酸盐还原酶相关的基因的上调对于利用来自溶解的SO_x和NO_X的硫酸盐和硝酸盐是必不可少的。本研究的结果有助于为直接从工业烟道气中建立CO_2捕获的新方法。

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  • 来源
    《The Science of the Total Environment》 |2019年第2期|2931-2938|共8页
  • 作者单位

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China University of Chinese Academy of Sciences 19 Yuquan Road Beijing 100049 China ShanghaiTech University 100 Haike Road Shanghai 201210 China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China School of Life Science Shanghai University 99 Shangda Road Shanghai 200444 China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China University of Chinese Academy of Sciences 19 Yuquan Road Beijing 100049 China ShanghaiTech University 100 Haike Road Shanghai 201210 China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China University of Chinese Academy of Sciences 19 Yuquan Road Beijing 100049 China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China ShanghaiTech University 100 Haike Road Shanghai 201210 China School of Pharmaceutical Science Nanjing Tech University 30 Puzhu South Road Nanjing China;

    Shanghai Advanced Research Institute Chinese Academy of Sciences 99 Haike Road Shanghai 201210 China ShanghaiTech University 100 Haike Road Shanghai 201210 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chlorella; Adaptive evolution; Simulated flue gas; CO_2 capture; Comparative transcriptomic analysis;

    机译:小球藻;自适应演化;模拟烟气;CO_2捕获;比较转录组分析;

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