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首页> 外文期刊>Microbial Ecology: An International Journal >A nifH-based Oligonucleotide Microarray for Functional Diagnostics of Nitrogen-fixing Microorganisms
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A nifH-based Oligonucleotide Microarray for Functional Diagnostics of Nitrogen-fixing Microorganisms

机译:基于nifH的寡核苷酸微阵列,用于固氮微生物的功能诊断

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摘要

Nitrogen fixation is an important process in biogeochemical cycles exclusively carried out by prokaryotes, mostly by an evolutionarily conserved nitrogenase protein complex, of which one of the structural genes (nifH) is highly valuable for phylogenetic and diversity analyses. We developed a nifH-based short oligonucleotide microarray (nifH diagnostic microarray) as a rapid tool to effectively monitor nitrogen-fixing diazotrophic populations in a wide range of environments. Taking account of the overwhelming predominance of environmental nifH fragments from uncultivated microorganisms in public databases, our nifH microarray is mainly based on nifH sequences from as yet unidentified prokaryotes. Standard conditions for microarray performance were determined, and criteria for the design of specific oligonucleotides were defined. A primary set of 56 oligonucleotides was validated with fluorescence-labeled single-stranded nifH targets from five reference strains, 26 environmental clones, and artificial mixtures of reference strains. The nifH microarray was applied to analyze the diversity (based on DNA) and activity (based on mRNA) of diazotrophs in roots of wild rice samples from Namibia. Results demonstrated that only a small subset of diazotrophs being present in the sample were actually fixing nitrogen actively. Our data suggest that the developed nifH microarray is a highly reproducible and semiquantitative method for mapping the variability of diazotrophic diversity, allowing rapid comparisons of the relative abundance and activity of diazotrophic prokaryotes in the environment. A further refined nifH microarray comprising of 194 oligonucleotide probes now covers more than 90% of sequences in our nifH database.
机译:固氮是原核生物专门进行的生物地球化学循环中的重要过程,主要是由进化保守的固氮酶蛋白复合物完成的,其中一个结构基因(nifH)对系统发育和多样性分析非常有价值。我们开发了一种基于nifH的短寡核苷酸微阵列(nifH诊断微阵列),作为在广泛环境中有效监测固氮重氮营养菌种群的快速工具。考虑到公共数据库中来自未培养微生物的环境nifH片段的绝大多数,我们的nifH芯片主要基于尚未鉴定的原核生物的nifH序列。确定了微阵列性能的标准条件,并定义了设计特定寡核苷酸的标准。用来自五个参考菌株,26个环境克隆和参考菌株的人工混合物的荧光标记单链nifH靶标验证了56个寡核苷酸的主要组合。利用nifH微阵列分析了来自纳米比亚的野生稻样品根中重氮营养菌的多样性(基于DNA)和活性(基于mRNA)。结果表明,样品中只有一小部分重氮营养菌实际上在积极固定氮。我们的数据表明,开发的nifH芯片是一种高度重现性和半定量的方法,可绘制重氮营养性多样性的变异图,从而可以快速比较环境中重氮营养性原核生物的相对丰度和活性。现在,由194个寡核苷酸探针组成的进一步改进的nifH微阵列涵盖了我们nifH数据库中90%以上的序列。

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