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首页> 外文期刊>Microbial Ecology: An International Journal >Dynamics of Soil Bacterial Communities Over a Vegetation Season Relate to Both Soil Nutrient Status and Plant Growth Phenology
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Dynamics of Soil Bacterial Communities Over a Vegetation Season Relate to Both Soil Nutrient Status and Plant Growth Phenology

机译:植被季节土壤细菌群体的动态涉及土壤养分状况和植物生长候选

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Soil microorganisms regulate element cycling and plant nutrition, mediate co-existence of neighbors, and stabilize plant communities. Many of these effects are dependent upon environmental conditions and, in particular, on nutrient quality and availability in soils. In this context, we set up a pot experiment in order to examine the combined effects of soil nutrient availability and microbial communities on plant-soil interactions and to investigate assemblage rules for soil bacterial communities under changed nutrient conditions. Four gamma-sterilized soils, strongly differing in their nutrient contents, were obtained from different fertilization treatments of a centenary field experiment and used to grow communities of grassland plants. The sterilized soils were either self- or cross-inoculated with microbial consortia from the same four soils. Molecular fingerprinting analyses were carried out at several time points in order to identify drivers and underlying processes of microbial community assemblage. We observed that the bacterial communities that developed in the inoculated sterilized soils differed from those in the original soils, displaying dynamic shifts over time. These shifts were illustrated by the appearance of numerous OTUs that had not been detected in the original soils. The community patterns observed in the inoculated treatments suggested that bacterial community assembly was determined by both niche-mediated and stochastic-neutral processes, whereby the relative impacts of these processes changed over the course of the vegetation season. Moreover, our experimental approach allowed us not only to evaluate the effects of soil nutrients on plant performance but also to recognize a negative effect of the microbial community present in the soil that had not been fertilized for more than 100 years on plant biomass. Our findings demonstrate that soil inoculation-based approaches are valid for investigating plant-soil-microbe interactions and for examining rules that shape soil microbial community assemblages under variable ecological conditions.
机译:土壤微生物调节元素循环和植物营养,介导邻居的共存,稳定植物群落。其中许多效果依赖于环境条件,特别是土壤中的营养质量和可用性。在这种情况下,我们建立了一个盆栽实验,以检查土壤养分可用性和微生物社区对植物土相互作用的综合影响,并在改变营养条件下调查土壤细菌群落的组合规则。四种γ-灭菌的土壤,营养物质含量强烈不同,从百年田野实验的不同施肥处理中获得,并用于种植草原植物的社区。灭菌的土壤与来自同一四个土壤的微生物混合的自我或交叉接种。在几个时间点进行分子指纹分析,以确定微生物群落组合的司机和基础过程。我们观察到,接种灭菌土壤中发展的细菌社区与原始土壤中的细菌群落不同,随着时间的推移显示动态变化。这些换档通过在原始土壤中未检测到的许多OTU的外观来说明。在接种治疗中观察到的社区模式表明细菌群组组件由介质介导和随机 - 中性过程确定,从而在植被季节的过程中改变了这些过程的相对影响。此外,我们的实验方法不仅可以评估土壤养分对植物性能的影响,而且还要识别在植物生物质上没有受精的土壤中存在的微生物群落的负面影响。我们的研究结果表明,基于土壤接种的方法是有效的,用于研究植物 - 土壤微生物相互作用,并在可变生态条件下检查塑造土壤微生物群落组合的规则。

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