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Primers for amplification of nitrous oxide reductase genes associated with Firmicutes and Bacteroidetes in organic-compound-rich soils

机译:在富含有机化合物的土壤中扩增与硬毛和拟杆菌相关的一氧化二氮还原酶基因的引物

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摘要

The nosZ gene encodes nitrous oxide reductase, a key enzyme in the nitrous oxide reduction that occurs during complete denitrification. Many conventional approaches have used Proteobacteria-based primers to detect nosZ in environmental samples. However, these primers often fail to detect nosZ in non-Proteobacteria strains, including Firmicutes (Gram-positive) and Bacteroidetes. In this study, newly designed nosZ primers successfully amplified this gene from five Geobacillus species (Firmicutes). The primers were used to construct nosZ clone libraries from DNA extracted from sludge and domestic animal feedlot soils, all with high organic carbon contents. After DNA sequencing, phylogenetic analysis identified many new nosZ sequences with high levels of homology to nosZ from Bacteroidetes, probably because of the high sequence similarity of nosZ from Firmicutes and Bacteroidetes, and a predominance of Bacteroidetes in feedlot environments. Three sets of new quantitative real-time PCR (qPCR) primers based on our clone library sequences were designed and tested for their specificities. Our data showed that only Bacteroidetes-related nosZ sequences were amplified, whereas conventional Proteobacteria-based primers amplified only Proteobacteria-related nosZ. Quantitative analysis of nosZ with the new qPCR primers recovered ~104 copies per 100 ng DNA. Thus, it appears that amplification with conventional primers is insufficient for developing an understanding of the diversity and abundance of nosZ genes in the environment.
机译:nosZ基因编码一氧化二氮还原酶,这是在完全反硝化过程中发生的一氧化二氮还原中的关键酶。许多常规方法已使用基于变形杆菌的引物来检测环境样品中的nosZ。但是,这些引物通常无法在非变形杆菌菌株(包括Firmicutes(革兰氏阳性)和拟杆菌)中检测到nosZ。在这项研究中,新设计的nosZ引物成功地从5个Geobacillus物种(Firmicutes)中扩增了该基因。引物用于从污泥和家畜饲养场土壤中提取的DNA构造nosZ克隆文库,所有这些都具有高有机碳含量。经过DNA测序后,系统发育分析发现许多新的nosZ序列与拟杆菌的nosZ具有高度的同源性,这可能是由于Firmicutes和Bacteroidetes的nosZ的序列高度相似,以及在饲养场环境中拟杆菌的优势。设计了三套基于我们克隆文库序列的新型定量实时PCR(qPCR)引物,并测试了它们的特异性。我们的数据表明,仅与拟杆菌属相关的nosZ序列被扩增,而常规基于Proteobacteria的引物仅扩增与Proteobacteria相关的nosZ。使用新型qPCR引物对nosZ进行定量分析,每100 ng DNA可回收约10 4 个拷贝。因此,似乎用常规引物扩增不足以发展对环境中nosZ基因多样性和丰度的理解。

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