Biodiversity acts as insurance of productivity of bacterial communities under abiotic perturbations
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Summary
It is found that initial species richness and phylogenetic structure impact the biomass of communities and biodiversity is crucial for maintaining the stability of ecosystem functioning and acts as ecological insurance under abiotic perturbations.
- Type
- article
- Published
- 2014-06-13
- Cited by
- 136
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W2048280752
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2889201
Keywords
Abiotic component, Biodiversity, Ecosystem, Biomass (ecology), Biology
References
- Intraspecific genotypic richness and relatedness predict the invasibility of microbial communities
- Cadmium pollution triggers a positive biodiversity–productivity relationship: evidence from a laboratory microcosm experiment
- The diversity–stability debate
- Biodiversity enhances ecosystem reliability
- Biodiversity and ecosystem stability: a synthesis of underlying mechanisms.
- Biodiversity and ecosystem productivity in a fluctuating environment: the insurance hypothesis.
- Bacterial Diversity Stabilizes Community Productivity
- Mechanisms linking diversity, productivity and invasibility in experimental bacterial communities
- The contribution of species richness and composition to bacterial services
- Biodiversity and ecosystem stability in a decade-long grassland experiment
- Stability and Diversity of Ecosystems
- Positive Effects of Bacterial Diversity on Ecosystem Functioning Driven by Complementarity Effects in a Bioremediation Context
- Microbial seed banks: the ecological and evolutionary implications of dormancy
- Phylogenetic constraints on ecosystem functioning
- Physical stress and diversity-productivity relationships: The role of positive interactions
- Functional and phylogenetic diversity as predictors of biodiversity--ecosystem-function relationships.
- Does biodiversity increase spatial stability in plant community biomass?
- Impacts of Biodiversity Loss Escalate Through Time as Redundancy Fades
- Niche dimensionality links biodiversity and invasibility of microbial communities
- Resistance, resilience, and redundancy in microbial communities
Cited by
- Direct and indirect effects of climate change on soil microbial and soil microbial‐plant interactions: What lies ahead?
- High diversity of skin-associated bacterial communities of marine fishes is promoted by their high variability among body parts, individuals and species.
- Transplant experiments uncover Baltic Sea basin-specific responses in bacterioplankton community composition and metabolic activities
- Evolution of species interactions determines microbial community productivity in new environments
- Long-term nickel exposure altered the bacterial community composition but not diversity in two contrasting agricultural soils
- Toxic metal resistance in biofilms: diversity of microbial responses and their evolution.
- Field-based evidence for consistent responses of bacterial communities to copper contamination in two contrasting agricultural soils
- Synthetic ecology of microbes: mathematical models and applications
- Co-inoculation of Dietzia natronolimnaea and Glomus intraradices with vermicompost positively influences Ocimum basilicum growth and resident microbial community structure in salt affected low fertility soils
- Impacts of Pristine and Transformed Ag and Cu Engineered Nanomaterials on Surficial Sediment Microbial Communities Appear Short-Lived.
- Effects of varying CO2 flows on bacterial communities in mesocosms created from two soils
- Multiple dimensions of bacterial diversity unrelated to functioning, stability and multifunctionality
- Does arsenic play an important role in the soil microbial community around a typical arsenic mining area?
- Microbial diversity limits soil heterotrophic respiration and mitigates the respiration response to moisture increase
- A hierarchical framework for studying the role of biodiversity in soil food web processes and ecosystem services
- Complementarity among plant growth promoting traits in rhizospheric bacterial communities promotes plant growth
- A Diverse Soil Microbiome Degrades More Crude Oil than Specialized Bacterial Assemblages Obtained in Culture
- Effects of multiple dimensions of bacterial diversity on functioning, stability and multifunctionality.
- Microbial functional genes enriched in the Xiangjiang River sediments with heavy metal contamination
- Effects of different leaf litters on the physicochemical properties and bacterial communities in Panax ginseng-growing soil
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