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首页> 外文期刊>Journal of applied microbiology >Synergetic effect of pH and biochemical components on bacterial diversity during mesophilic anaerobic fermentation of biomass-origin waste
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Synergetic effect of pH and biochemical components on bacterial diversity during mesophilic anaerobic fermentation of biomass-origin waste

机译:pH和生化成分对生物质原产垃圾中温厌氧发酵过程中细菌多样性的协同作用

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AIMS: To investigate the synergetic effect of pH and biochemical components on bacterial community structure during mesophilic anaerobic degradation of solid wastes with different origins, and under acidic or neutral conditions. METHODS AND RESULTS:The bacterial community in 16 samples of solid wastes with different biochemical compositions and origins was evaluated during mesophilic anaerobic degradation at acidic and neutral pH. Denaturing gradient gel electrophoresis (DGGE) and single-strand conformation polymorphism (SSCP) were used to compare the communities. Multivariate analysis of the DGGE and SSCP results revealed that most of the dominant microbes were dependent on the content of easily degradable carbohydrates in the samples. Furthermore, the dominant microbes were divided into two types, those that preferred an acid environment and those that preferred a neutral environment. A shift in pH was found to change their preference for medium substrates. Although most of the substrates withsimilar origin and biochemical composition had similar microbial diversity during fermentation, some microbes were found only in substrates with specific origins. For example, two microbes were only found in substrate that contained lignocellulose and animal protein without starch. These microbes were related to micro-organisms that are found in swine manure, as well as in other intestinal or oral niches. In addition, the distribution of fermentation products was less sensitive to the changes in pH andbiochemical components than the microbial community. CONCLUSIONS: Bacterial diversity during anaerobic degradation of organic wastes was affected by both pH and biochemical components; however, pH exerted a greater effect. SIGNIFICANCE AND IMPACT OF THESTUDY: The results of this study reveal that control of pH may be an effective method to produce a stable bacterial community and relatively similar product distribution during anaerobic digestion of waste, regardless of variation in the waste feedstock
机译:目的:研究pH值和生化成分对不同来源的固体废物在酸性或中性条件下的中温厌氧降解过程中细菌群落结构的协同作用。方法和结果:在酸性和中性pH下中温厌氧降解过程中,对16种具有不同生化成分和来源的固体废物样品中的细菌群落进行了评估。变性梯度凝胶电泳(DGGE)和单链构象多态性(SSCP)用于比较社区。 DGGE和SSCP结果的多变量分析表明,大多数优势微生物均取决于样品中易降解碳水化合物的含量。此外,优势微生物被分为两种类型,优选酸性环境的微生物和优选中性环境的微生物。发现pH值的改变改变了它们对中等底物的偏好。尽管大多数具有相似来源和生化成分的底物在发酵过程中具有相似的微生物多样性,但仅在具有特定来源的底物中发现了一些微生物。例如,仅在含有木质纤维素和不含淀粉的动物蛋白的底物中发现了两种微生物。这些微生物与在猪粪肥以及其他肠道或口腔中发现的微生物有关。另外,与微生物群落相比,发酵产物的分布对pH和生化成分的变化不那么敏感。结论:有机废物厌氧降解过程中的细菌多样性受pH和生化成分的影响;但是,pH发挥了更大的作用。该研究的意义和影响:这项研究的结果表明,不管废物原料如何变化,控制pH值可能是在厌氧消化过程中产生稳定细菌群落和相对相似产物分布的有效方法。

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