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Functional Assays and Metagenomic Analyses Reveals Differences between the Microbial Communities Inhabiting the Soil Horizons of a Norway Spruce Plantation

机译:功能分析和超基因组分析揭示了挪威云杉人工林土壤视界中微生物群落之间的差异

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摘要

In temperate ecosystems, acidic forest soils are among the most nutrient-poor terrestrial environments. In this context, the long-term differentiation of the forest soils into horizons may impact the assembly and the functions of the soil microbial communities. To gain a more comprehensive understanding of the ecology and functional potentials of these microbial communities, a suite of analyses including comparative metagenomics was applied on independent soil samples from a spruce plantation (Breuil-Chenue, France). The objectives were to assess whether the decreasing nutrient bioavailability and pH variations that naturally occurs between the organic and mineral horizons affects the soil microbial functional biodiversity. The 14 Gbp of pyrosequencing and Illumina sequences generated in this study revealed complex microbial communities dominated by bacteria. Detailed analyses showed that the organic soil horizon was significantly enriched in sequences related to Bacteria, Chordata, Arthropoda and Ascomycota. On the contrary the mineral horizon was significantly enriched in sequences related to Archaea. Our analyses also highlighted that the microbial communities inhabiting the two soil horizons differed significantly in their functional potentials according to functional assays and MG-RAST analyses, suggesting a functional specialisation of these microbial communities. Consistent with this specialisation, our shotgun metagenomic approach revealed a significant increase in the relative abundance of sequences related glycoside hydrolases in the organic horizon compared to the mineral horizon that was significantly enriched in glycoside transferases. This functional stratification according to the soil horizon was also confirmed by a significant correlation between the functional assays performed in this study and the functional metagenomic analyses. Together, our results suggest that the soil stratification and particularly the soil resource availability impact the functional diversity and to a lesser extent the taxonomic diversity of the bacterial communities.
机译:在温带生态系统中,酸性森林土壤是营养最差的陆地环境之一。在这种情况下,森林土壤长期分化为地平线可能会影响土壤微生物群落的组装和功能。为了更全面地了解这些微生物群落的生态学和功能潜力,对云杉人工林(法国布勒伊-切努埃)的独立土壤样品进行了包括比较宏基因组学在内的一系列分析。目的是评估自然界有机层和矿质层之间自然发生的减少的养分生物利用度和pH变化是否会影响土壤微生物功能的生物多样性。这项研究中产生的14 Gbp的焦磷酸测序和Illumina序列揭示了细菌主导的复杂微生物群落。详细的分析表明,有机土壤层层中细菌,衣原体,节肢动物和子囊菌的相关序列显着丰富。相反,矿物层位显着丰富了与古细菌有关的序列。我们的分析还强调指出,根据功能测定和MG-RAST分析,居住在两个土壤层中的微生物群落的功能潜力存在显着差异,表明这些微生物群落的功能专业化。与此专业相一致,我们的gun弹枪宏基因组学方法显示,与显着富含糖苷转移酶的矿物质层相比,有机层中与序列相关的糖苷水解酶的相对丰度显着增加。通过这项研究中进行的功能测定与功能性宏基因组学分析之间的显着相关性,也证实了根据土壤层的功能分层。总之,我们的结果表明土壤分层,特别是土壤资源的可获得性影响了细菌群落的功能多样性,并在较小程度上影响了细菌群落的分类学多样性。

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