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Dynamic changes of the dominant functioning microbial community in the compost of a 90-m(3) aerobic solid state fermentor revealed by integrated meta-omics

机译:综合代谢组学揭示了90-m(3)有氧固态发酵罐堆肥中主要功能性微生物群落的动态变化

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The dynamic changes in the composition and function of both bacterial and fungal communities over time and at various depths in the compost of a 90-m(3) industrial-scale fermentor were explored using integrated meta-omics. The microbial communities in the middle layer (1.2 m) of the compost developed a stable and simple structure over time, which was mainly composed of Thermobifida, Bacillus, Thermomyces and Aspergillus. According to the metaproteomic results, the bacterial community was more focused on cellulose degradation, characterized by 44% of the cellulases that were secreted by Thermobifida, while the fungal community was more likely to degrade hemicellulose, mainly via Thermomyces and Aspergillus. The results revealed that, under artificial control of the temperature and oxygen concentration, the efficiency of organic waste degradation was greatly increased and the fermentation cycle was shortened to 11 days. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用集成的组学方法,研究了90-m(3)工业规模发酵罐堆肥中细菌和真菌群落的组成和功能随时间和深度变化的动态变化。随着时间的推移,堆肥中层(1.2 m)的微生物群落结构稳定,简单,主要由嗜热菌,芽孢杆菌,嗜热霉菌和曲霉组成。根据元蛋白质组学的结果,细菌群落更多地集中在纤维素降解上,其特征是嗜热双歧杆菌分泌的纤维素酶占44%,而真菌群落更可能降解半纤维素,主要是通过嗜热霉菌和曲霉。结果表明,在温度和氧气浓度的人工控制下,有机废物的降解效率大大提高,发酵周期缩短至11天。 (C)2015 Elsevier Ltd.保留所有权利。

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