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Thermophilic bacterial communities in hot composts as revealed by most probable number counts and molecular (16S rDNA) methods

机译:最可能的数量计数和分子(16S rDNA)方法揭示了热堆肥中的嗜热细菌群落

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摘要

Thermogenic composts are known to host a variety of thermophilic micro-organisms that were recently investigated by cultural means and identified as Thermus thermophilus, Bacillus spp., and Hydrogenobacter spp. In this paper, we present a classical, cultural enumeration of thermophilic populations on the one hand, and a molecular investigation of the bacterial community by restriction enzyme analyses of a clone library of bacterial 16S rRNA genes on the other hand. Bacterial diversity, revealed by the clone analyses of four samples, was shown to undergo a dramatic change between the young (13-18-day) and the old (39-41-day) samples, possibly linked to the general decrease in temperature and the physicochemical evolution of organic matter during the composting process. Among the 200 clones investigated, 69 clones could be identified as Thermus thermophilus and thermophilic Bacillus spp. These results proved both taxa to be among the dominant bacterial populations at the highest temperatures reached by thermogenic composts
机译:已知产热堆肥可容纳各种嗜热微生物,最近已通过文化手段对其进行了调查,并将其鉴定为嗜热栖热菌,芽孢杆菌和氢细菌。在本文中,我们一方面提出了嗜热种群的经典文化列举,另一方面通过对细菌16S rRNA基因克隆文库的限制性酶切分析对细菌群落进行了分子研究。通过对四个样品的克隆分析揭示的细菌多样性显示,在年轻(13-18天)和老(39-41天)样品之间发生了巨大变化,这可能与温度和温度的总体下降有关。堆肥过程中有机物的物理化学演变。在所研究的200个克隆中,有69个可以鉴定为嗜热栖热菌和嗜热芽孢杆菌。这些结果证明,在产热堆肥达到的最高温度下,两个分类单元都是优势细菌种群之一。

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