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Microbial community structure in anaerobic co-digestion of grass silage and cow manure in a laboratory continuously stirred tank reactor

机译:实验室连续搅拌釜反应器中草青贮饲料和牛粪厌氧消化过程中的微生物群落结构

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摘要

The impacts of feeding ratio and loading rate on the microbial community during co-digestion of grass silage with cow manure in an anaerobic laboratory continuously stirred tank reactor were investigated by 16S rRNA gene-based fingerprints. The microbial community remained stable when the reactor was fed with cow manure alone and with up to 20% of grass silage in feedstock at an organic loading rate (OLR) of 2 kg VS m(-3) day(-1). Large changes in the bacterial community were observed when the loading ratio of grass was increased to 40%, while there was little change in the archaeal community. During the increase in OLR from 2 to 4 kg VS m(-3) day(-1) the bacterial community structure showed few differences, whereas Archaea was undetectable. Sequencing of the major DGGE bands indicated that the phylum Bacteriodetes predominated in the bacterial community. Two unclassified bacteria with high abundance survived throughout the operation of the reactor.
机译:通过基于16S rRNA基因的指纹图谱研究了厌氧实验室连续搅拌槽反应器中草料青贮与牛粪共消化过程中进料比和上料速率对微生物群落的影响。当反应器仅饲喂牛粪肥并以2 kg V​​S m(-3)天(-1)的有机负荷率(OLR)饲喂原料中高达20%的草料青贮饲料时,微生物群落保持稳定。当草的负载率增加到40%时,细菌群落发生了很大的变化,而古细菌群落几乎没有变化。在OLR从2 kg V​​S m(-3)day(-1)增加到4 kg期间,细菌群落结构几乎没有差异,而古细菌则无法检测到。主要DGGE条带的测序表明,细菌门细菌在细菌群落中占主导地位。在整个反应器操作过程中,两种高丰度的未分类细菌得以幸存。

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