首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial selection pressure is not a prerequisite for granulation: Dynamic granulation and microbial community study in a complete mixing bioreactor
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Microbial selection pressure is not a prerequisite for granulation: Dynamic granulation and microbial community study in a complete mixing bioreactor

机译:微生物选择压力不是制粒的先决条件:在完全混合的生物反应器中进行动态制粒和微生物群落研究

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摘要

Microbial selection pressure is traditionally supposed as a prerequisite for aerobic granulation. This work gives a different insight on this issue. Fluorescent microspheres were used to label the flocculent biomass granulation for a period of 47 days in a continuous-flow bioreactor. Analysis of the distribution of fluorescent microspheres in granules revealed that the terminal phase of granulation is in a dynamic steady state, where bioflocs detach, collide and aggregate randomly. This revealed that the un-granulated biomass was the result of the dynamic aggregation and breakage, rather than the microbial species unable to be granulated. Furthermore, denaturing gradient gel electrophoresis (DGGE) profile and UPGMA dendrogram results showed similar microbial communities during the granulation. To sum up, microbial selection pressure was not a prerequisite for aerobic granulation from both of the dynamic granulation steps and molecular biology aspects.
机译:传统上,微生物选择压力被认为是好氧制粒的前提。这项工作对这个问题给出了不同的见解。荧光微球用于在连续流生物反应器中标记絮凝的生物质颗粒47天。对颗粒中荧光微球分布的分析表明,制粒的末期处于动态稳定状态,其中生物絮凝物会随机分离,碰撞和聚集。这表明,未颗粒化的生物质是动态聚集和破碎的结果,而不是微生物无法颗粒化的结果。此外,变性梯度凝胶电泳(DGGE)谱图和UPGMA树状图结果显示了制粒过程中相似的微生物群落。综上所述,从动态制粒步骤和分子生物学两个方面来看,微生物选择压力并不是好氧制粒的先决条件。

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