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编码氧化亚氮还原酶的nosZ基因的定量检测以及土壤中16S rRNA、narG、nirK和nosZ基因丰度的比较。

Quantitative detection of the nosZ gene, encoding nitrous oxide reductase, and comparison of the abundances of 16S rRNA, narG, nirK, and nosZ genes in soils.

作者信息

Henry S, Bru D, Stres B, Hallet S, Philippot L

机构信息

INRA-University of Burgundy, Microbiology and Soil Geochemistry, CMSE, 17 rue Sully, B.P. 86510, 21065 Dijon Cedex, France.

出版信息

Appl Environ Microbiol. 2006 Aug;72(8):5181-9. doi: 10.1128/AEM.00231-06.

DOI:10.1128/AEM.00231-06
PMID:16885263
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1538733/
Abstract

Nitrous oxide (N2O) is an important greenhouse gas in the troposphere controlling ozone concentration in the stratosphere through nitric oxide production. In order to quantify bacteria capable of N2O reduction, we developed a SYBR green quantitative real-time PCR assay targeting the nosZ gene encoding the catalytic subunit of the nitrous oxide reductase. Two independent sets of nosZ primers flanking the nosZ fragment previously used in diversity studies were designed and tested (K. Kloos, A. Mergel, C. Rösch, and H. Bothe, Aust. J. Plant Physiol. 28:991-998, 2001). The utility of these real-time PCR assays was demonstrated by quantifying the nosZ gene present in six different soils. Detection limits were between 10(1) and 10(2) target molecules per reaction for all assays. Sequence analysis of 128 cloned quantitative PCR products confirmed the specificity of the designed primers. The abundance of nosZ genes ranged from 10(5) to 10(7) target copies g(-1) of dry soil, whereas genes for 16S rRNA were found at 10(8) to 10(9) target copies g(-1) of dry soil. The abundance of narG and nirK genes was within the upper and lower limits of the 16S rRNA and nosZ gene copy numbers. The two sets of nosZ primers gave similar gene copy numbers for all tested soils. The maximum abundance of nosZ and nirK relative to 16S rRNA was 5 to 6%, confirming the low proportion of denitrifiers to total bacteria in soils.

摘要

一氧化二氮(N₂O)是对流层中一种重要的温室气体,它通过产生一氧化氮来控制平流层中的臭氧浓度。为了量化能够还原N₂O的细菌,我们开发了一种基于SYBR Green的定量实时PCR检测方法,该方法靶向编码一氧化二氮还原酶催化亚基的nosZ基因。设计并测试了两组独立的nosZ引物,它们位于先前用于多样性研究的nosZ片段两侧(K. Kloos、A. Mergel、C. Rösch和H. Bothe,《澳大利亚植物生理学杂志》28:991 - 998,2001年)。通过对六种不同土壤中存在的nosZ基因进行定量,证明了这些实时PCR检测方法的实用性。所有检测方法的检测限为每个反应10¹至10²个靶分子。对128个克隆的定量PCR产物进行序列分析,证实了所设计引物的特异性。nosZ基因的丰度范围为每克干土10⁵至10⁷个靶拷贝,而16S rRNA基因在每克干土中为10⁸至10⁹个靶拷贝。narG和nirK基因的丰度在16S rRNA和nosZ基因拷贝数的上限和下限范围内。两组nosZ引物对所有测试土壤给出了相似的基因拷贝数。相对于16S rRNA,nosZ和nirK的最大丰度为5%至6%,证实了土壤中反硝化细菌占总细菌的比例较低。

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本文引用的文献

1
Evaluation of quantitative polymerase chain reaction-based approaches for determining gene copy and gene transcript numbers in environmental samples.基于定量聚合酶链反应的方法在环境样品中测定基因拷贝数和基因转录本数量的评估。
Environ Microbiol. 2006 May;8(5):804-15. doi: 10.1111/j.1462-2920.2005.00963.x.
2
Influence of Two Plant Species (Flax and Tomato) on the Distribution of Nitrogen Dissimilative Abilities within Fluorescent Pseudomonas spp.两种植物(亚麻和番茄)对荧光假单胞菌属中氮异化能力分布的影响
Appl Environ Microbiol. 1995 May;61(5):1745-9. doi: 10.1128/aem.61.5.1745-1749.1995.
3
Nitrous oxide reductase genes (nosZ) of denitrifying microbial populations in soil and the earthworm gut are phylogenetically similar.土壤和蚯蚓肠道中反硝化微生物种群的一氧化二氮还原酶基因(nosZ)在系统发育上相似。
Appl Environ Microbiol. 2006 Feb;72(2):1019-26. doi: 10.1128/AEM.72.2.1019-1026.2006.
4
Use of functional genes to quantify denitrifiers in the environment.利用功能基因对环境中的反硝化菌进行定量分析。
Biochem Soc Trans. 2006 Feb;34(Pt 1):101-3. doi: 10.1042/BST0340101.
5
Finding the missing link between diversity and activity using denitrifying bacteria as a model functional community.以反硝化细菌作为模型功能群落,寻找多样性与活性之间缺失的联系。
Curr Opin Microbiol. 2005 Jun;8(3):234-9. doi: 10.1016/j.mib.2005.04.003.
6
Quantification of denitrifying bacteria in soils by nirK gene targeted real-time PCR.通过靶向nirK基因的实时荧光定量PCR对土壤中反硝化细菌进行定量分析。
J Microbiol Methods. 2004 Dec;59(3):327-35. doi: 10.1016/j.mimet.2004.07.002.
7
Denitrifying bacteria in bulk and maize-rhizospheric soil: diversity and N2O-reducing abilities.土壤团聚体和玉米根际土壤中的反硝化细菌:多样性及N2O还原能力
Can J Microbiol. 2004 Jul;50(7):469-74. doi: 10.1139/w04-037.
8
Detection and quantification of copper-denitrifying bacteria by quantitative competitive PCR.通过定量竞争PCR检测和定量反硝化铜细菌
J Microbiol Methods. 2004 Nov;59(2):199-210. doi: 10.1016/j.mimet.2004.07.008.
9
The unprecedented nos gene cluster of Wolinella succinogenes encodes a novel respiratory electron transfer pathway to cytochrome c nitrous oxide reductase.琥珀酸沃林氏菌前所未有的nos基因簇编码了一条通向细胞色素c一氧化二氮还原酶的新型呼吸电子传递途径。
FEBS Lett. 2004 Jul 2;569(1-3):7-12. doi: 10.1016/j.febslet.2004.05.060.
10
Distinguishing sources of N2O in European grasslands by stable isotope analysis.通过稳定同位素分析区分欧洲草原中一氧化二氮的来源
Rapid Commun Mass Spectrom. 2004;18(11):1201-7. doi: 10.1002/rcm.1461.