Elevation gradient of soil bacterial communities in bamboo plantations
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Summary
The bamboo soil bacterial community could interact with multiple factors such as soil organic matter content and temperature, for differences in composition and diversity with change in elevation.
- Type
- article
- Published
- 2016-02-29
- Cited by
- 8
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W28597417
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18583758
Keywords
Art
References
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- Strong elevational trends in soil bacterial community composition on Mt. Halla, South Korea
- New Screening Software Shows that Most Recent Large 16S rRNA Gene Clone Libraries Contain Chimeras
- Soluble organic C and N and their relationships with soil organic C and N and microbial characteristics in moso bamboo (Phyllostachys edulis) plantations along an elevation gradient in Central Taiwan
- A Hump-Backed Trend in Bacterial Diversity with Elevation on Mount Fuji, Japan
- Microbial community structure along an altitude gradient in three different localities
- Changes in the Soil Bacterial Communities in a Cedar Plantation Invaded by Moso Bamboo
- Soil pH drives the spatial distribution of bacterial communities along elevation on Changbai Mountain
- Land-use history has a stronger impact on soil microbial community composition than aboveground vegetation and soil properties
- Toward an ecological classification of soil bacteria.
Cited by
- Improved nutrient status affects soil microbial biomass, respiration, and functional diversity in a Lei bamboo plantation under intensive management
- Biophysical and socioeconomic determinants of tea expansion: Apportioning their relative importance for sustainable land use policy
- Soil microbes and medical metabolites of Artemisia annua L. along altitudinal gradient in Guizhou Karst terrains of China
- Microplastic pollution alters forest soil microbiome.
- Soil organic carbon accumulation in dry tropical mountainous zone of Cameroon
- Elevational characteristics of soil bacterial community and their responses to soil translocation at a mountainside in northwest Sichuan, China
- Microbial biomass C, N and water extractable carbon: impact of land use types and elevation gradient in himalayas
- Impact of Land Uses on Microbial Biomass C, N, and P and Microbial Populations in Indian Himalaya
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