Abiotic stress tolerance and competition-related traits underlie phylogenetic clustering in soil bacterial communities.
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Towards an Enhanced Understanding of Plant-Microbiome Interactions to Improve Phytoremediation: Engineering the MetaorganismLocal and Regional Diversity Reveals Dispersal Limitation and Drift as Drivers for Groundwater Bacterial Communities from a Fractured Granite FormationPhylogenetic structure of soil bacterial communities predicts ecosystem functioning.Phylogenetic Structure of Tree Species across Different Life Stages from Seedlings to Canopy Trees in a Subtropical Evergreen Broad-Leaved ForestPhytoremediation: State-of-the-art and a key role for the plant microbiome in future trends and research prospects.Soil restoration with organic amendments: linking cellular functionality and ecosystem processesUsing null models to infer microbial co-occurrence networks.Predicting microbial traits with phylogeniesDecreases in average bacterial community rRNA operon copy number during succession.Zonal Soil Type Determines Soil Microbial Responses to Maize Cropping and Fertilization.Variations of Soil Microbial Community Structures Beneath Broadleaved Forest Trees in Temperate and Subtropical Climate Zones.Autogenic succession and deterministic recovery following disturbance in soil bacterial communities.Nutrient and Rainfall Additions Shift Phylogenetically Estimated Traits of Soil Microbial CommunitiesArthropod communities on hybrid and parental cottonwoods are phylogenetically structured by tree type: Implications for conservation of biodiversity in plant hybrid zones.Spatiotemporal heterogeneity of core functional bacteria and their synergetic and competitive interactions in denitrifying sulfur conversion-assisted enhanced biological phosphorus removal.Stochastic Community Assembly: Does It Matter in Microbial Ecology?Divergent taxonomic and functional responses of microbial communities to field simulation of aeolian soil erosion and deposition.Fire modifies the phylogenetic structure of soil bacterial co-occurrence networks.Species colonisation, not competitive exclusion, drives community overdispersion over long-term succession.Consistent changes in the taxonomic structure and functional attributes of bacterial communities during primary succession.Opposing phylogenetic diversity gradients of plant and soil bacterial communities.Influence of soil microbiota in nurse plant systems
P2860
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P2860
Abiotic stress tolerance and competition-related traits underlie phylogenetic clustering in soil bacterial communities.
description
2014 nî lūn-bûn
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2014年の論文
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2014年論文
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2014年論文
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2014年論文
@zh-hk
2014年論文
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2014年論文
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2014年论文
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2014年论文
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2014年论文
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name
Abiotic stress tolerance and c ...... in soil bacterial communities.
@en
Abiotic stress tolerance and c ...... in soil bacterial communities.
@nl
type
label
Abiotic stress tolerance and c ...... in soil bacterial communities.
@en
Abiotic stress tolerance and c ...... in soil bacterial communities.
@nl
prefLabel
Abiotic stress tolerance and c ...... in soil bacterial communities.
@en
Abiotic stress tolerance and c ...... in soil bacterial communities.
@nl
P2860
P50
P356
P1433
P1476
Abiotic stress tolerance and c ...... in soil bacterial communities
@en
P2093
Alfonso Valiente-Banuet
Carlos García
P2860
P304
P356
10.1111/ELE.12341
P407
P577
2014-08-06T00:00:00Z