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木质纤维素废物堆肥过程中细菌微生物群落的动态变化:结构、功能和生物多样性研究。

Dynamics of bacterial microbiota during lignocellulosic waste composting: Studies upon its structure, functionality and biodiversity.

机构信息

Unit of Microbiology, Department of Biology and Geology, University of Almería, Agrifood Campus of International Excellence ceiA3, 04120 Almería, Spain.

Unit of Microbiology, Department of Biology and Geology, University of Almería, Agrifood Campus of International Excellence ceiA3, 04120 Almería, Spain.

出版信息

Bioresour Technol. 2015 Jan;175:406-16. doi: 10.1016/j.biortech.2014.10.123. Epub 2014 Oct 31.

Abstract

An intensive isolation program carried out in three replicated composting piles allowed the identification of the resident and transient components of the composting microbiome. More than 4000 bacterial strains were isolated, enzymatically characterized and identified by partial sequencing of their 16S rRNA gene. While microorganisms isolated under mesophilic conditions were prominent throughout the process, thermophilic stages gathered the highest total counts and spore-forming bacteria prevailed at the bio-oxidative phase of composting. Enzymatic capabilities related to the degradation of polymeric materials were exhibited by most of the isolates and as a result of these activities, more soluble compounds could be made available to the entire composting microbiota. A high proportion of isolates showed to be thermotolerant as they were detected at mesophilic and thermophilic phases. Isolated strains belonged to 187 bacterial species. Biodiversity was greater at the central stages of composting and mesophilic, thermophilic and cooling phases shared 50% of species.

摘要

采用三重堆肥的强化隔离方案,可鉴定堆肥微生物组的常驻和暂驻成分。我们分离出了 4000 多种细菌菌株,通过对其 16S rRNA 基因的部分测序对其进行酶促特征和鉴定。虽然中温条件下分离出的微生物在整个过程中都很突出,但高温阶段的总计数最高,且在堆肥的生物氧化阶段,产孢细菌占优势。大多数分离物表现出与聚合物材料降解相关的酶促能力,因此,更多的可溶性化合物可被整个堆肥微生物群利用。由于它们在中温和高温阶段都被检测到,因此,大量的分离物显示出耐热性。分离株属于 187 种细菌。在堆肥的中心阶段,生物多样性更大,中温、高温和冷却阶段共享 50%的物种。

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