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首页> 外文期刊>Journal of Applied Phycology >Quantifying the competitive advantage of light green algal strains in batch culture
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Quantifying the competitive advantage of light green algal strains in batch culture

机译:定量浅绿色藻类菌株在分批培养中的竞争优势

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Microalgae with truncated light-harvesting antenna (TLA) represent a common strategy employed to enable better light penetration into microalgal culture through the reduction of absorption and consequent wasteful dissipation of excess sunlight. Such strains are often reported to possess enhanced photosynthetic activity on a per chlorophyll basis under high light intensity. By taking into account the light attenuation with culture depth and the difference in chlorophyll content between TLA mutants and wild type, this study attempts to evaluate how the advantage of TLA translates into total photosynthetic yield in a batch process. It was found that the higher photosynthetic rate per cell at low-range light intensities and the greater chlorophyll content seem to give cells with larger light antenna size comparative overall advantage. Growth comparison experiments of a pool of light green Chlamydomonas reinhardtii mutants and a pool of dark green mutants showed that the dark green mutants with larger light antennae size were able to grow faster under conditions of increased cell concentration or culture depth, where the average light intensity was lower. This has implications in low light environments such as large scale microalgal ponds.
机译:具有截短的光收集天线(TLA)的微藻代表了一种常见的策略,可通过减少对多余藻类的吸收并因此浪费浪费地使光更好地渗透到微藻培养物中。经常报道这样的菌株在高光强度下以每叶绿素为基础具有增强的光合作用活性。通过考虑光衰减随培养深度以及TLA突变体与野生型之间叶绿素含量的差异,本研究试图评估TLA的优势如何在分批过程中转化为总光合产量。发现在低范围光强度下每个细胞较高的光合作用速率和较高的叶绿素含量似乎给具有较大光天线尺寸的细胞提供了比较总体优势。一组浅绿色衣藻衣藻和深绿色突变株的生长比较实验表明,具有较大触角的深绿色突变株能够在细胞浓度或培养深度增加的条件下更快地生长,在该条件下,平均光强度较低。这在诸如大型微藻池的弱光环境中具有影响。

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