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H2-saturation of high affinity H2-oxidizing bacteria alters the ecological niche of soil microorganisms unevenly among taxonomic groups

机译:高亲和力H2氧化细菌的H2饱和度在分类学类别中不均匀地改变了土壤微生物的生态位

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摘要

Soil microbial communities are continuously exposed to H2 diffusing into the soil from the atmosphere. N2-fixing nodules represent a peculiar microniche in soil where H2 can reach concentrations up to 20,000 fold higher than in the global atmosphere (0.530 ppmv). In this study, we investigated the impact of H2 exposure on soil bacterial community structure using dynamic microcosm chambers simulating soil H2 exposure from the atmosphere and N2-fixing nodules. Biphasic kinetic parameters governing H2 oxidation activity in soil changed drastically upon elevated H2 exposure, corresponding to a slight but significant decay of high affinity H2-oxidizing bacteria population, accompanied by an enrichment or activation of microorganisms displaying low-affinity for H2. In contrast to previous studies that unveiled limited response by a few species, the relative abundance of 958 bacterial ribotypes distributed among various taxonomic groups, rather than a few distinct taxa, was influenced by H2 exposure. Furthermore, correlation networks showed important alterations of ribotype covariation in response to H2 exposure, suggesting that H2 affects microbe-microbe interactions in soil. Taken together, our results demonstrate that H2-rich environments exert a direct influence on soil H2-oxidizing bacteria in addition to indirect effects on other members of the bacterial communities.
机译:土壤微生物群落不断暴露于H2中,并从大气中扩散到土壤中。固定N2的结核代表土壤中的一种特殊的微生物,其中H2的浓度可以比全球大气中的浓度高出2万倍(0.530 ppmv)。在这项研究中,我们使用动态缩影室模拟了H2暴露于大气和固氮结节的暴露,研究了H2暴露对土壤细菌群落结构的影响。随着H2暴露量的增加,控制土壤中H2氧化活性的双相动力学参数发生了巨大变化,这对应于高亲和力的H2氧化细菌群体的轻微但显着衰减,伴随着对H2表现出低亲和力的微生物的富集或活化。与先前的研究揭示了少数物种有限的反应相比,受H2暴露的影响是,分布在各个分类群中而不是少数几个不同分类群中的958种细菌核糖型的相对丰度。此外,相关网络显示出响应于H2暴露,核糖型协变的重要变化,表明H2影响土壤中微生物与微生物的相互作用。两者合计,我们的结果表明,富含H2的环境除了对细菌群落其他成员具有间接影响之外,还对土壤中的H2氧化细菌产生直接影响。

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