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首页> 外文期刊>Acta Scientiarum. Technology >Phylogenetic characterization and quantification by Most Probable Number of the microbial communities of biomass from the Upflow Anaerobic Sludge Blanket Reactor under sulfidogenic conditions
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Phylogenetic characterization and quantification by Most Probable Number of the microbial communities of biomass from the Upflow Anaerobic Sludge Blanket Reactor under sulfidogenic conditions

机译:从亚致脉络条件下从上流厌氧污泥橡胶反应器的生物质数量的最大可能数量的系统发育表征和定量

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Granulated sludge from anaerobic reactors is constituted by the microbial consortia responsible for the degradation of different substrate present in wastewaters. This study characterized anaerobic microorganisms in a granular sludge from a Uasb reactor (Upflow Anaerobic Sludge Blanket) by Most Probable Number (MPN) technique and method of cloning and sequencing the 16S rDNA gene. The main objective of this study was to quantify and to identify the microorganisms in two different culture media containing sulfate (Posgate C 6.0 sodium lactate and 3.13 g L-1 sodium sulfate and Zinder 2.24 sodium lactate and 0.96 g L-1 sodium sulfate). Microorganisms quantified by Postgate C and Zinder media were: 9.30x1010 and 7.50x1011 MPN mL-1 for general anaerobic bacteria; 4.30x108 and 2.10x108 MPN mL-1 for sulfate reducing bacteria; and 1.20x108 and 1.5x108 MPN mL-1 for methane producing archaea, respectively. Bacteria identified by 16S rDNA gene sequencing from the MPN in both culture media were related to the phyla Firmicutes and Proteobacteria. The conditions of Postgate C culture medium favored the sulfate-reducing bacteria and the Zinder culture medium favored the general anaerobic bacteria.
机译:来自厌氧反应器的颗粒状污泥由负责废水中存在的不同基材的降解的微生物组成部分构成。该研究表征了来自UASB反应器(上流厌氧污泥毯)的粒状污泥的厌氧微生物通过大多数可能的数量(MPN)技术和克隆和测序16S rDNA基因的方法。本研究的主要目的是量化,并鉴定含有硫酸盐的两种不同培养基中的微生物(Posgate C 6.0乳酸钠和3.13g L-1硫酸钠和Zinder 2.24乳酸钠和0.96g L-1硫酸钠)。通过后催化和Zinder培养基量化的微生物是:9.30×1010和7.50x1011 ML-1,用于一般厌氧细菌; 4.30x108和2.10x108 ml-1用于硫酸盐还原细菌;为甲烷生产古痤疮的1.20x108和1.5x108 ml-1。从两种培养基中的MPN中鉴定的细菌鉴定在培养基中的MPN中涉及Phyla upmencutes和Proteobacteria。 Postgate C培养基的条件有利于硫酸盐还原细菌,抗抑菌培养基偏爱一般厌氧细菌。

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