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A phylogenetic microarray targeting 16S rRNA genes from the bacterial division Acidobacteria reveals a lineage-specific distribution in a soil clay fraction

机译:靶向细菌细菌酸性细菌的16S rRNA基因的系统发育微阵列揭示了土壤黏土级分中的谱系特异性分布

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摘要

We designed an oligonucleotide microarray using probe sequences based upon a phylogenetic analysis of 16S rRNA genes recovered from members of the bacterial division Acidobacteria. A total of 42,194 oligonucleotide probes targeting members of the Acidobacteria division at multiple phylogenetic levels were included on a high-density microarray. Positive control hybridizations revealed a linear relationship between hybridization signal and template concentration, and a substantial decrease in non-specific hybridization was achieved through the addition of 2.5 M betaine to the hybridization buffer. A mean hybridization signal value was calculated for each Acidobacteria lineage, with the resultant lineage-specific hybridization data revealing strong predictive value for the positive control hybridizations. The Acidobacteria phylochip was then used to evaluate Acidobacteria rRNA genes from a Wisconsin soil and within a soil clay fraction. The Acidobacteria hybridization profile revealed the predominance of Acidobacteria subdivisions four and six, and also suggested a decrease in the abundance of subdivision six relative to subdivision four in the soil clay fraction. The change in relative abundance of these subdivisions in a soil clay fraction was supported by data from quantitative PCR. These results support the utility of a phylogenetic microarray in revealing changes in microbial population-level distributions in a complex soil microbial assemblage.
机译:我们基于从细菌分裂嗜酸性细菌的成员中回收的16S rRNA基因的系统发育分析,使用探针序列设计了寡核苷酸微阵列。在高密度微阵列上包括总共42194个寡核苷酸探针,它们以多个系统发生水平靶向酸性细菌科的成员。阳性对照杂交揭示了杂交信号和模板浓度之间的线性关系,并且通过向杂交缓冲液中添加2.5 M甜菜碱实现了非特异性杂交的显着降低。计算每个嗜酸性细菌谱系的平均杂交信号值,所得谱系特异性杂交数据显示出阳性对照杂交的强预测值。然后使用酸性细菌系统芯片评估来自威斯康星州土壤和土壤黏土级分中的酸性细菌rRNA基因。酸性细菌杂交谱揭示了酸性细菌第四和第六细分的优势,并且还暗示了土壤粘土部分中相对于第四细分的第六细分的丰度降低。定量PCR的数据支持了土壤部分中这些细分的相对丰度变化。这些结果支持系统发育微阵列在揭示复杂土壤微生物组合中微生物种群水平分布变化中的作用。

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