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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >A new primer set for Clade I nosZ that recovers genes from a broader range of taxa
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A new primer set for Clade I nosZ that recovers genes from a broader range of taxa

机译:用于CLADE I NOSZ的新底漆集,从更广泛的分类群中恢复基因

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摘要

Denitrification is an important global N cycle process. The gene encoding NosZ that converts nitrous oxide (N2O) to N-2 has been widely used as a biomarker to study denitrifying communities. However, conventional PCR primers target a limited range of the genetically diverse Clade I nosZ, and the amplicons are too long for sequencing on current NGS platforms. To address these issues, we developed a new PCR primer set that amplifies a 355-bp region of Clade I nosZ and captures broader taxonomic coverage than conventional primers in in silico tests. When compared with the widely used nosZF_nosZR_Rich_2003 set using the same soil samples and the same sequencing depth, the new set retrieved genes from four times more unique species, with consistently higher general diversity-based metrics. The new primer set performed well with different sequencing platforms (Ion Torrent and Illumina), and among a wide variety of soils from polar to tropical, desert to agricultural, and surface to a very low biomass subsoil, with significant differences in denitrifying community diversity and composition. This new primer set for Clade I together with the primers recently reported for Clade II by Chee-Sanford et al. (J Microbiol Meth 172:105908, 2020) provides a more comprehensive assessment of denitrifier gene hosts, their ecological patterns, and the degree of novelty in retrieved gene sequences.
机译:脱氮是一个重要的全球n个循环过程。编码将氧化亚氮(N 2 O)转化为N-2的NoSz的基因已被广泛应用为生物标志物,以研究反硝化群落。然而,常规的PCR引物靶向有限范围的遗传多样的遗传型COSZ,并且扩增子太长,不能在当前的NGS平台上进行排序。为了解决这些问题,我们开发了一种新的PCR引物集,该集合集CLADE I NOSZ的355-BP区域,比常规引物在硅测试中捕获更宽的分类覆盖。与使用相同的土壤样品和相同的测序深度设置的广泛使用的NOSZF_NOSZR_RICH_2003相比,新的集合从多种物种的四倍检索到的基因,具有始终如一的总基于多样性的度量。使用不同的测序平台(离子Torrent和Illumina)以及从极性到热带,沙漠到农业的各种各样的土壤中的新底漆进行良好,以及表面到一个非常低的生物量底层,具有显着差异的歧化社区多样性作品。这种新的底漆设置了Clade I以及最近通过Chee-Sanford等人报告的思路。 (J Microbiol Meth 172:105908,2020)提供了对解毒基因宿主,其生态模式以及检索的基因序列中的新奇程度的更全面评估。

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