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Analysis of thermophilic fungal populations during phase II of composting for the cultivation of Agaricus subrufescens

机译:姬松茸堆肥二期嗜热真菌种群分析

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The composition and genetic diversity of fungal populations during phase II of compost production for the cultivation of Agaricus subrufescens was determined using culture-dependent and -independent methods on days 3, 6, 10, 12, and 14 of phase II composting. The isolates were morphologically characterized and subsequently analyzed using repetitive extragenic palindromic sequences (rep-PCR), and the intergenic region was sequenced to genetically identify the isolates. Changes on in the filamentous fungi population were analyzed using denaturing gradient gel electrophoresis (DGGE), and the resulting bands were sequenced. The population did not significantly change from day 3 to 10 (2.55 x 10(5) -6 x 10(5) CFU g(-1)), and maximum counts on day 14 of phase II composting (6.92 log CFU g(-1)). In the morphological characterization, Scytalidium thermophilum, Thermomyces lanuginosus, and Thermomyces ibadanensis were the most abundant identified species. The 26 most abundant isolates identified by morphological analysis were characterized using rep-PCR. A significant amount of genetic diversity was detected among the isolates of all three studied species. Based on the DGGE analysis, the diversity of the fungi was reduced during phase II composting, and S. thermophilum was the predominant species identified throughout the entire process. Thus, this study presents the first report of the involvement of T. ibadanensis in the production of compost for Agaricus mushroom cultivation
机译:在II期堆肥的第3、6、10、12和14天,使用依赖于培养物的方法和不依赖培养的方法,确定了用于栽培姬松茸的II期堆肥生产过程中真菌种群的组成和遗传多样性。对分离物进行形态学表征,然后使用重复的基因外回文序列(rep-PCR)进行分析,并对基因间区域进行测序,以从基因上鉴定分离物。使用变性梯度凝胶电泳(DGGE)分析丝状真菌种群的变化,并对得到的条带进行测序。从第3天到第10天(2.55 x 10(5)-6 x 10(5)CFU g(-1))以及第II阶段堆肥第14天的最大计数(6.92 log CFU g(- 1))。在形态学表征中,嗜热滑膜镰刀菌,羊毛嗜热菌和伊巴丹嗜热菌是鉴定最多的物种。使用rep-PCR对通过形态分析鉴定出的26种最丰富的分离株进行了表征。在所有三个研究物种的分离物中检测到大量的遗传多样性。根据DGGE分析,在第二阶段堆肥过程中,真菌的多样性降低了,嗜热链球菌是整个过程中鉴定的主要物种。因此,本研究首次报道了伊巴丹螺旋体参与姬松茸栽培堆肥生产的报道。

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