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首页> 外文期刊>Environmental Science and Pollution Research >Assessing interactions, predicting function, and increasing degradation potential of a PAH-degrading bacterial consortium by effect of an inoculant strain
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Assessing interactions, predicting function, and increasing degradation potential of a PAH-degrading bacterial consortium by effect of an inoculant strain

机译:通过抗原菌株评估PAH降解细菌结核的相互作用,预测功能和增加降解潜力

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A natural phenanthrene-degrading consortium CON was inoculated with an exogenous strain Sphingobium sp. (ex Sp. paucimobilis) 20006FA yielding the consortium called I-CON, in order to study ecological interactions into the bacterial community. DGGE and proteomic profiles and analyses by HTS (High-Throughput Sequencing) technologies demonstrated inoculant establishment and changes on CON composition. Inoculation increased degradation efficiency in I-CON and prevented intermediate HNA accumulation. This could be explained not only by the inoculation, but also by enrichment in Achromobacter genus at expense of a decrease in Klebsiella genus. After inoculation, cooperation between Sphingobium and Achromobacter genera were improved, thereby, some competition could have been generated, and as a consequence, species in minor proportion (cheaters), as Inquilinus sp. and Luteibacter sp., were not detected. Sequences of Sphingobium (corresponding to the inoculated strain) did not vary. PICRUSt predicted a network with bacterial phylotypes connected with enzymes, showing functional redundancy in the phenanthrene pathway, with exception of the first enzymes biphenyl-2,3-diol 1,2-dioxygenase and protocatechuate 4,5-dioxygenase that were only encoded in Sphingobium sp. This is the first report where a natural consortium that has been characterized by HTS technologies is inoculated with an exogenous strain in order to study competitiveness and interactions.
机译:用外源性菌株Sphingobium SP接种天然菲降解联盟Con。 (ex sp.Paucimobilis)20006FA产生了Consortium称为I-Con,以研究生态相互作用进入细菌群落。通过HTS(高通量测序)技术的DGGE和蛋白质组学分析和分析证明了孕育的建立和变化对Con组成。接种提高I-CON中的降解效率并防止中间HNA积累。这不仅可以通过接种,还可以通过牺牲克利布拉属的降低来解释富含贲门杆菌属的富集。接种后,鞘豆和贲门杆菌之间的合作得到改善,因此,可能会产生一些竞争,因此,以次要比例(骗子)的种类,如仙女群。和虱子sp。未检测到。鞘鞘池(对应于接种应变)没有变化。 Picrust预测了一种具有与酶联的细菌来屏幕的网络,显示菲途径中的功能冗余,其中第一种酶联苯基-2,3-二醇1,2-二氧基酶和仅在鞘鞘中编码的4,5-二氧化根果酶。 sp。这是第一份报告,其中具有HTS技术的特征的自然联合会被外源性菌株接种,以研究竞争力和相互作用。

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