Land-use change and soil type are drivers of fungal and archaeal communities in the Pampa biome
The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal community structure and functioning of the soil microbial community in Brazilian Pampa biome. Soil samples were collected at sites with different la...
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Published in: | World journal of microbiology & biotechnology Vol. 29; no. 2; pp. 223 - 233 |
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01-02-2013
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Abstract | The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal community structure and functioning of the soil microbial community in Brazilian Pampa biome. Soil samples were collected at sites with different land-uses (native grassland, native forest,
Eucalyptus
and
Acacia
plantation, soybean and watermelon field) and in a typical toposequence in Pampa biome formed by Paleudult, Albaqualf and alluvial soils. The structure of soil microbial community (archaeal and fungal) was evaluated by ribosomal intergenic spacer analysis and soil functional capabilities were measured by microbial biomass carbon and metabolic quotient. We detected different patterns in microbial community driven by land-use change and soil type, showing that both factors are significant drivers of fungal and archaeal community structure and biomass and microbial activity. Fungal community structure was more affected by land-use and archaeal community was more affected by soil type. Irrespective of the land-use or soil type, a large percentage of operational taxonomic unit were shared among the soils. We accepted the hypothesis that both land-use change and soil type are drivers of archaeal and fungal community structure and soil functional capabilities. Moreover, we also suggest the existence of a soil microbial core. |
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AbstractList | The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal community structure and functioning of the soil microbial community in Brazilian Pampa biome. Soil samples were collected at sites with different land-uses (native grassland, native forest, Eucalyptus and Acacia plantation, soybean and watermelon field) and in a typical toposequence in Pampa biome formed by Paleudult, Albaqualf and alluvial soils. The structure of soil microbial community (archaeal and fungal) was evaluated by ribosomal intergenic spacer analysis and soil functional capabilities were measured by microbial biomass carbon and metabolic quotient. We detected different patterns in microbial community driven by land-use change and soil type, showing that both factors are significant drivers of fungal and archaeal community structure and biomass and microbial activity. Fungal community structure was more affected by land-use and archaeal community was more affected by soil type. Irrespective of the land-use or soil type, a large percentage of operational taxonomic unit were shared among the soils. We accepted the hypothesis that both land-use change and soil type are drivers of archaeal and fungal community structure and soil functional capabilities. Moreover, we also suggest the existence of a soil microbial core. The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal community structure and functioning of the soil microbial community in Brazilian Pampa biome. Soil samples were collected at sites with different land-uses (native grassland, native forest, Eucalyptus and Acacia plantation, soybean and watermelon field) and in a typical toposequence in Pampa biome formed by Paleudult, Albaqualf and alluvial soils. The structure of soil microbial community (archaeal and fungal) was evaluated by ribosomal intergenic spacer analysis and soil functional capabilities were measured by microbial biomass carbon and metabolic quotient. We detected different patterns in microbial community driven by land-use change and soil type, showing that both factors are significant drivers of fungal and archaeal community structure and biomass and microbial activity. Fungal community structure was more affected by land-use and archaeal community was more affected by soil type. Irrespective of the land-use or soil type, a large percentage of operational taxonomic unit were shared among the soils. We accepted the hypothesis that both land-use change and soil type are drivers of archaeal and fungal community structure and soil functional capabilities. Moreover, we also suggest the existence of a soil microbial core.[PUBLICATION ABSTRACT] The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal community structure and functioning of the soil microbial community in Brazilian Pampa biome. Soil samples were collected at sites with different land-uses (native grassland, native forest, Eucalyptus and Acacia plantation, soybean and watermelon field) and in a typical toposequence in Pampa biome formed by Paleudult, Albaqualf and alluvial soils. The structure of soil microbial community (archaeal and fungal) was evaluated by ribosomal intergenic spacer analysis and soil functional capabilities were measured by microbial biomass carbon and metabolic quotient. We detected different patterns in microbial community driven by land-use change and soil type, showing that both factors are significant drivers of fungal and archaeal community structure and biomass and microbial activity. Fungal community structure was more affected by land-use and archaeal community was more affected by soil type. Irrespective of the land-use or soil type, a large percentage of operational taxonomic unit were shared among the soils. We accepted the hypothesis that both land-use change and soil type are drivers of archaeal and fungal community structure and soil functional capabilities. Moreover, we also suggest the existence of a soil microbial core. |
Author | Roesch, Luiz Fernando Würdig Antoniolli, Zaida Inês Suleiman, Afnan Khalil Ahmad Jacques, Rodrigo Josemar Seminoti Fulthorpe, Roberta R. Lupatini, Manoeli |
Author_xml | – sequence: 1 givenname: Manoeli surname: Lupatini fullname: Lupatini, Manoeli organization: Departamento de Solos, Universidade Federal de Santa Maria – sequence: 2 givenname: Rodrigo Josemar Seminoti surname: Jacques fullname: Jacques, Rodrigo Josemar Seminoti organization: Departamento de Solos, Universidade Federal de Santa Maria – sequence: 3 givenname: Zaida Inês surname: Antoniolli fullname: Antoniolli, Zaida Inês organization: Departamento de Solos, Universidade Federal de Santa Maria – sequence: 4 givenname: Afnan Khalil Ahmad surname: Suleiman fullname: Suleiman, Afnan Khalil Ahmad organization: Universidade Federal do Pampa – sequence: 5 givenname: Roberta R. surname: Fulthorpe fullname: Fulthorpe, Roberta R. organization: Department of Physical and Environmental Sciences, University of Toronto at Scarborough – sequence: 6 givenname: Luiz Fernando Würdig surname: Roesch fullname: Roesch, Luiz Fernando Würdig email: luizroesch@unipampa.edu.br organization: Universidade Federal do Pampa |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/23054698$$D View this record in MEDLINE/PubMed |
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Snippet | The current study aimed to test the hypothesis that both land-use change and soil type are responsible for the major changes in the fungal and archaeal... |
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SubjectTerms | Acacia Alluvial soils Analysis Applied Microbiology Archaea - classification Archaea - genetics Archaea - isolation & purification Biochemistry Biodiversity Biomass Biomedical and Life Sciences Biotechnology Brazil Citrullus lanatus Community structure Ecosystem Ecosystems Environmental Engineering/Biotechnology Eucalyptus Fungi - classification Fungi - genetics Fungi - isolation & purification Grasslands Hypotheses Land use Life Sciences Metabolism Microbial activity Microbiology Microorganisms Original Paper Plantations Soil - chemistry Soil Microbiology Soil microorganisms Soil structure Soil types Soils Soybeans Studies Trees - microbiology Vegetation |
Title | Land-use change and soil type are drivers of fungal and archaeal communities in the Pampa biome |
URI | https://link.springer.com/article/10.1007/s11274-012-1174-3 https://www.ncbi.nlm.nih.gov/pubmed/23054698 https://www.proquest.com/docview/1270351947 https://search.proquest.com/docview/1273510460 https://search.proquest.com/docview/1291610444 |
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