首页> 美国卫生研究院文献>Frontiers in Microbiology >Trehalose promotes Rhodococcus sp. strain YYL colonization in activated sludge under tetrahydrofuran (THF) stress
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Trehalose promotes Rhodococcus sp. strain YYL colonization in activated sludge under tetrahydrofuran (THF) stress

机译:海藻糖促进红球菌属。四氢呋喃(THF)胁迫下YYL菌株在活性污泥中的定殖

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摘要

Few studies have focused on the role of compatible solutes in changing the microbial community structure in bioaugmentation systems. In this study, we investigated the influence of trehalose as a biostimulant on the microbial community in tetrahydrofuran (THF)-treated wastewater bioaugmentation systems with Rhodococcus sp. YYL. Functional gene profile changes were used to study the variation in the microbial community. Soluble di-iron monooxygenases (SDIMO), particularly group-5 SDIMOs (i.e., tetrahydrofuran and propane monooxygenases), play a significant role in the initiation of the ring cleavage of tetrahydrofuran. Group-5 SDIMOs genes are enriched upon trehalose addition, and exogenous tetrahydrofuran monooxygenase (thmA) genes can successfully colonize bioaugmentation systems. Cytochrome P450 monooxygenases (P450s) have a significant role in catalyzing the region- and stereospecific oxidation of non-activated hydrocarbons, and THF was reported to inhibit P450s in the environment. The CYP153 family was chosen as a representative P450 to study the inhibitory effects of THF. The results demonstrated that CYP153 family genes exhibited significant changes upon THF treatment and that trehalose helped maintain a rich diversity and high abundance of CYP153 family genes. Biostimulation with trehalose could alleviate the negative effects of THF stress on microbial diversity in bioaugmentation systems. Our results indicated that trehalose as a compatible solute plays a significant role for environmental strains under extreme conditions.
机译:很少有研究关注相容性溶质在改变生物强化系统中微生物群落结构方面的作用。在这项研究中,我们调查了海藻糖作为生物刺激剂对四氢呋喃(THF)处理的红球菌sp。生物强化系统中微生物群落的影响。 YYL。功能性基因谱变化用于研究微生物群落的变化。可溶性二铁单加氧酶(SDIMO),特别是第5组SDIMO(即四氢呋喃和丙烷单加氧酶)在引发四氢呋喃的环裂解中起重要作用。添加海藻糖后,第5组SDIMOs基因富集,外源四氢呋喃单加氧酶(thmA)基因可以成功地定居于生物强化系统中。细胞色素P450单加氧酶(P450s)在催化非活化烃的区域和立体特异性氧化中起重要作用,据报道,THF可抑制环境中的P450。选择CYP153家族作为代表性的P450,以研究THF的抑制作用。结果表明,CYP153家族基因在THF处理后显示出显着变化,海藻糖有助于维持CYP153家族基因的丰富多样性和高丰度。用海藻糖进行生物刺激可以减轻THF胁迫对生物强化系统中微生物多样性的负面影响。我们的结果表明,海藻糖作为相容性溶质在极端条件下对环境菌株起着重要作用。

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