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Evaluation and optimization of PCR primers for selective and quantitative detection of marine ANME subclusters involved in sulfate-dependent anaerobic methane oxidation

机译:评估和优化PCR引物用于选择性和定量检测参与硫酸盐依赖性厌氧甲烷氧化的海洋ANME小类

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摘要

Since the discovery that anaerobic methanotrophic archaea (ANME) are involved in the anaerobic oxidation of methane coupled to sulfate reduction in marine sediments, different primers and probes specifically targeting the 16S rRNA gene of these archaea have been developed. Microbial investigation of the different ANME subtypes (ANME-1; ANME-2a, b, and c; and ANME-3) was mainly done in sediments where specific subtypes of ANME were highly enriched and methanogenic cell numbers were low. In different sediments with higher archaeal diversity and abundance, it is important that primers and probes targeting different ANME subtypes are very specific and do not detect other ANME subtypes or methanogens that are also present. In this study, primers and probes that were regularly used in AOM studies were tested in silico on coverage and specificity. Most of the previously developed primers and probes were not specific for the ANME subtypes, thereby not reflecting the actual ANME population in complex samples. Selected primers that showed good coverage and high specificity for the subclades ANME-1, ANME-2a/b, and ANME-2c were thoroughly validated using quantitative polymerase chain reaction (qPCR). From these qPCR tests, only certain combinations seemed suitable for selective amplification. After optimization of these primer sets, we obtained valid primer combinations for the selective detection and quantification of ANME-1, ANME-2a/b, and ANME-2c in samples where different ANME subtypes and possibly methanogens could be present. As a result of this work, we propose a standard workflow to facilitate selection of suitable primers for qPCR experiments on novel environmental samples.Electronic supplementary materialThe online version of this article (doi:10.1007/s00253-017-8338-x) contains supplementary material, which is available to authorized users.
机译:自从发现厌氧甲烷营养古生菌(ANME)参与甲烷的厌氧氧化与海洋沉积物中的硫酸盐还原反应有关以来,已经开发了专门针对这些古细菌的16S rRNA基因的不同引物和探针。对不同的ANME亚型(ANME-1; ANME-2a,b和c;以及ANME-3)进行的微生物研究主要是在沉积物中,这些沉积物中ANME的特定亚型高度富集,产甲烷细胞数低。在具有较高古细菌多样性和丰度的不同沉积物中,重要的是,针对不同ANME亚型的引物和探针必须非常特异性,并且不能检测到也存在的其他ANME亚型或产甲烷菌。在这项研究中,对AOM研究中经常使用的引物和探针进行了计算机模拟的覆盖度和特异性测试。大多数以前开发的引物和探针对ANME亚型不是特异性的,因此不能反映复杂样品中的实际ANME种群。使用定量聚合酶链反应(qPCR)彻底验证了对子小分子ANME-1,ANME-2a / b和ANME-2c表现出良好覆盖性和高特异性的所选引物。从这些qPCR测试中,似乎只有某些组合适合进行选择性扩增。在优化了这些引物组之后,我们获得了有效的引物组合,用于在可能存在不同ANME亚型和可能存在产甲烷菌的样品中选择性检测和定量ANME-1,ANME-2a / b和ANME-2c。这项工作的结果是,我们提出了一个标准的工作流程,以方便选择适合在新型环境样品上进行qPCR实验的引物。电子补充材料本文的在线版本(doi:10.1007 / s00253-017-8338-x)包含补充材料,可供授权用户使用。

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