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Microbial community structure and dynamics in thermophilic composting viewed through metagenomics and metatranscriptomics

机译:通过宏基因组学和元转录组学研究嗜热堆肥中的微生物群落结构和动力学

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摘要

Composting is a promising source of new organisms and thermostable enzymes that may be helpful in environmental management and industrial processes. Here we present results of metagenomic- and metatranscriptomic-based analyses of a large composting operation in the São Paulo Zoo Park. This composting exhibits a sustained thermophilic profile (50 °C to 75 °C), which seems to preclude fungal activity. The main novelty of our study is the combination of time-series sampling with shotgun DNA, 16S rRNA gene amplicon, and metatranscriptome high-throughput sequencing, enabling an unprecedented detailed view of microbial community structure, dynamics, and function in this ecosystem. The time-series data showed that the turning procedure has a strong impact on the compost microbiota, restoring to a certain extent the population profile seen at the beginning of the process; and that lignocellulosic biomass deconstruction occurs synergistically and sequentially, with hemicellulose being degraded preferentially to cellulose and lignin. Moreover, our sequencing data allowed near-complete genome reconstruction of five bacterial species previously found in biomass-degrading environments and of a novel biodegrading bacterial species, likely a new genus in the order Bacillales. The data and analyses provided are a rich source for additional investigations of thermophilic composting microbiology.
机译:堆肥是新生物和热稳定酶的一种有前途的来源,可能对环境管理和工业过程有帮助。在这里,我们介绍圣保罗动物园大型堆肥作业基于宏基因组和超转录组学的分析结果。这种堆肥表现出持续的嗜热特性(50°C至75°C),这似乎排除了真菌活性。我们研究的主要新颖之处在于将时间序列采样与shot弹枪DNA,16S rRNA基因扩增子以及超转录组高通量测序相结合,从而可以在此生态系统中以前所未有的方式详细了解微生物群落的结构,动力学和功能。时间序列数据显示,转弯过程对堆肥微生物群有很大影响,在一定程度上恢复了过程开始时所见的种群状况。木质纤维素生物质的解构协同并相继发生,其中半纤维素优先降解为纤维素和木质素。此外,我们的测序数据可以对以前在生物质降解环境中发现的五个细菌物种和一种新的生物降解细菌物种(很可能是芽孢杆菌属的一个新属)进行近乎完整的基因组重建。提供的数据和分析为嗜热堆肥微生物学的其他研究提供了丰富的资源。

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