The Occurrence of Putative Nitric Oxide Dismutase (Nod) in an Alpine Wetland with a New Dominant Subcluster and the Potential Ability for a Methane Sink.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2018-11-08 eCollection Date: 2018-01-01 DOI:10.1155/2018/6201541
Yanfen Zhang, Anzhou Ma, Wenzong Liu, Zhihui Bai, Xuliang Zhuang, Guoqiang Zhuang
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引用次数: 12

Abstract

Recently, a new oxygenic pathway has been proposed based on the disproportionation of NO with putative NO dismutase (Nod). In addition to a new process in nitrogen cycling, this process provides ecological advantages for the degradation of substrates in anaerobic conditions, which is of great significance for wastewater treatment. However, the Nod distribution in aquatic environments is rarely investigated. In this study, we obtained the nod genes with an abundance of 2.38 ± 0.96 × 105 copies per gram of dry soil from the Zoige wetland and aligned the molecular characteristics in the corresponding Nod sequences. These Nod sequences were not only found existing in NC10 bacteria, but were also found forming some other clusters with Nod sequences from a WWTP reactor or contaminated aquifers. Moreover, a new subcluster in the aquifer-similar cluster was even dominant in the Zoige wetland and was named the Z-aquifer subcluster. Additionally, soils from the Zoige wetland showed a high potential rate (10.97 ± 1.42 nmol of CO2 per gram of dry soil per day) for nitrite-dependent anaerobic methane oxidation (N-DAMO) with low abundance of NC10 bacteria, which may suggest a potential activity of Nod in other clusters when considering the dominance of the Z-aquifer subcluster Nod. In conclusion, we verified the occurrence of Nod in an alpine wetland for the first time and found a new subcluster to be dominant in the Zoige wetland. Moreover, this new subcluster of Nod may even be active in the N-DAMO process in this alpine wetland, which needs further study to confirm.

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具有新的优势亚群的高寒湿地中假定的一氧化氮歧化酶(Nod)的存在及其潜在的甲烷汇能力
近年来,一种基于NO歧化酶(Nod)的歧化氧化途径被提出。该工艺不仅是氮循环的新工艺,而且为厌氧条件下底物降解提供了生态优势,对废水处理具有重要意义。然而,Nod在水生环境中的分布很少被研究。本研究从若尔格湿地中获得了丰度为2.38±0.96 × 105拷贝/ g干土的nod基因,并对相应的nod序列进行了分子特征比对。这些Nod序列不仅存在于NC10细菌中,而且还与污水处理反应器或污染含水层中的Nod序列形成了其他簇。在若尔盖湿地中,类似含水层的一个新亚簇甚至占据主导地位,被命名为z -含水层亚簇。此外,若尔盖湿地土壤亚硝酸盐依赖性厌氧甲烷氧化(N-DAMO)的潜在速率较高(10.97±1.42 nmol / g / g / d), NC10细菌丰度较低,考虑到z -含水层亚簇Nod的优势,这可能表明其他簇中也存在潜在的Nod活性。综上所述,我们首次验证了Nod在高寒湿地中的存在,并发现了一个新的亚群在若尔盖湿地中占主导地位。此外,这一新的Nod亚簇甚至可能在该高寒湿地的N-DAMO过程中具有活性,这需要进一步的研究来证实。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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