Bacterial ecology in Amazonian soils under deforestation and agricultural management

Detalhes bibliográficos
Autor(a) principal: Navarrete, Acacio Aparecido
Data de Publicação: 2013
Tipo de documento: Tese
Idioma: eng
Título da fonte: Biblioteca Digital de Teses e Dissertações da USP
Texto Completo: http://www.teses.usp.br/teses/disponiveis/64/64133/tde-22042013-163134/
Resumo: This thesis assessed effects of Amazonian deforestation on artificial association networks of bacteria to bacteria and to abiotic soil factors and networks based on categories of bacterial functions and abiotic soil factors, and sought a better insight into community of Acidobacteria in Amazon soils under agricultural management of soybean based on culture-dependent and molecular approaches. Bacterial community was studied based on next-generation sequencing technologies (Roche GS FLX Titanium and Illumina HiSeq 2000 platforms), quantitative real-time PCR, fingerprinting technique and basic procedures for bacteria culture. The general objective of this thesis was achieved by development of three different studies. The Study 1 analyzed the total bacterial community based on 16S ribosomal DNA pyrotag (425 thousand sequences), shotgun metagenomics (266 million sequences) and environmental parameters from soil samples collected in three real replicate of intact Amazon rainforest and adjacent deforested site after 2-4 months of forest clearing and burning in the Brazilian Amazon. This study showed that deforestation of Amazon forest soils led to a consistent decline in the abundance of Verrucomicrobia and alterations in verrucomicrobial community structure, and simplified association networks among different bacterial taxonomic groups and abiotic soil factors. In order to adapt to this condition function-based associations network were enhanced, indicating a higher degree of risk spreading for the maintenance of soil functioning. The Study 2, in turn, correlated relative abundance of Acidobacteria subgroups - based on approximately 33 thousand sequences of acidobacterial 16S rRNA genes - and abiotic soil factors, and showed differential response of Acidobacteria subgroups to abiotic soil factors in Amazon forest soils into soybean croplands. This study opened the possibilites to explore acidobacterial subgroups as early-warning bio-indicators of agricultural soil management effects in the Amazon area. Lastly, the Study 3 reported the culturability and molecular detection of Acidobacteria subgroups 1 and 3 concomitantly to other bacterial groups from Amazon soils on enriched culture medium with carbon source and incubated for relatively long period in hypoxic atmosphere (2% O2 [vol/vol], 2% CO2 [vol/vol] and 96% N2 [vol/vol]), and validated the combination of traditional procedures for bacteria culture and molecular techniques for recover and detection of Acidobacteria from Amazon soils
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spelling Bacterial ecology in Amazonian soils under deforestation and agricultural managementEcologia bacteriana em solos da Amazônia sob desmatamento e manejo agrícolaAmazon tropical soilsEcologia microbianaEcologia molecularLand-use changesMicrobial ecologyMicrobiologia do soloMolecular ecologyMudanças de uso da terraSoil microbiologySolos tropicais da AmazôniaThis thesis assessed effects of Amazonian deforestation on artificial association networks of bacteria to bacteria and to abiotic soil factors and networks based on categories of bacterial functions and abiotic soil factors, and sought a better insight into community of Acidobacteria in Amazon soils under agricultural management of soybean based on culture-dependent and molecular approaches. Bacterial community was studied based on next-generation sequencing technologies (Roche GS FLX Titanium and Illumina HiSeq 2000 platforms), quantitative real-time PCR, fingerprinting technique and basic procedures for bacteria culture. The general objective of this thesis was achieved by development of three different studies. The Study 1 analyzed the total bacterial community based on 16S ribosomal DNA pyrotag (425 thousand sequences), shotgun metagenomics (266 million sequences) and environmental parameters from soil samples collected in three real replicate of intact Amazon rainforest and adjacent deforested site after 2-4 months of forest clearing and burning in the Brazilian Amazon. This study showed that deforestation of Amazon forest soils led to a consistent decline in the abundance of Verrucomicrobia and alterations in verrucomicrobial community structure, and simplified association networks among different bacterial taxonomic groups and abiotic soil factors. In order to adapt to this condition function-based associations network were enhanced, indicating a higher degree of risk spreading for the maintenance of soil functioning. The Study 2, in turn, correlated relative abundance of Acidobacteria subgroups - based on approximately 33 thousand sequences of acidobacterial 16S rRNA genes - and abiotic soil factors, and showed differential response of Acidobacteria subgroups to abiotic soil factors in Amazon forest soils into soybean croplands. This study opened the possibilites to explore acidobacterial subgroups as early-warning bio-indicators of agricultural soil management effects in the Amazon area. Lastly, the Study 3 reported the culturability and molecular detection of Acidobacteria subgroups 1 and 3 concomitantly to other bacterial groups from Amazon soils on enriched culture medium with carbon source and incubated for relatively long period in hypoxic atmosphere (2% O2 [vol/vol], 2% CO2 [vol/vol] and 96% N2 [vol/vol]), and validated the combination of traditional procedures for bacteria culture and molecular techniques for recover and detection of Acidobacteria from Amazon soilsEste trabalho de tese avaliou o efeito do desmatamento sobre redes artificiais de associação entre grupos taxonômicos de Bacteria e fatores abióticos do solo e redes baseadas em funções bacterianas e fatores abióticos do solo, e utilizou técnicas moleculares e abordagem dependente de cultivo para compreender a dinâmica da comunidade de Acidobacteria em solos da floresta Amazônica convertidos em áreas agrícolas para produção de soja. Para estudo das comunidades bacterianas foram utilizadas tecnologias de sequenciamento de nova geração (plataformas 454 GS FLX Titanium da Roche e Illumina HiSeq 2000), PCR quantitativo em tempo-real, método de fingerprinting e procedimentos tradicionais para cultivo de bactérias. O objetivo geral desta tese foi alcançado com o desenvolvimento de três diferentes estudos. O Estudo 1 considerou aproximadamente 425 mil sequências do gene 16S rRNA de Bacteria e 266 milhões de sequências de DNA bacteriano obtidas por análise metagenômica a partir de solos coletados em três réplicas verdadeiras de floresta intacta na Amazônia e área desmatada adjacente após corte e queima da cobertura vegetal. Com isso, este estudo mostrou que o desmatamento declina a abundância e altera a estrutura de comunidade de Verrucomicrobia no solo e simplifica as redes artificiais de associação entre diferentes grupos bacterianos. A rede artificial de associação entre categorias funcionais e fatores de solo revelou-se mais complexa em solos desmatados, indicando um alto grau de dispersão de risco para a manutenção do funcionamento do solo. Por sua vez, o Estudo 2 correlacionou a abundância de subgrupos de Acidobacteria - com base em aproximadamente 33 mil sequências do gene 16S rRNA de Acidobacteria - com fatores abióticos do solo, e mostrou que subgrupos de Acidobacteria respondem diferentemente aos efeitos do manejo agrícola de solos da floresta Amazônica dentro de áreas de produção de soja. Este estudo abriu possibilidades de explorar subgrupos de Acidobacteria como bio-indicadores dos efeitos do manejo agrícola do solo na região da Amazônia. Por fim, o Estudo 3 reportou a culturabilidade e detecção molecular de Acidobacteria subgrupos 1 e 3 e outros grupos bacterianos presentes em solos Amazônicos em meio de cultura enriquecido com carbono e incubado sob atmosfera hipóxica (2% O2 [vol/vol], 2% CO2 [vol/vol] e 96% N2 [vol/vol]), atestando, assim, a combinação de procedimentos tradicionais de cultivo e técnicas moleculares para a recuperação e detecção de Acidobacteria de solos da AmazôniaBiblioteca Digitais de Teses e Dissertações da USPMui, Tsai SiuVeen, Johannes Antonie vanNavarrete, Acacio Aparecido2013-01-31info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisapplication/pdfhttp://www.teses.usp.br/teses/disponiveis/64/64133/tde-22042013-163134/reponame:Biblioteca Digital de Teses e Dissertações da USPinstname:Universidade de São Paulo (USP)instacron:USPLiberar o conteúdo para acesso público.info:eu-repo/semantics/openAccesseng2016-07-28T16:10:35Zoai:teses.usp.br:tde-22042013-163134Biblioteca Digital de Teses e Dissertaçõeshttp://www.teses.usp.br/PUBhttp://www.teses.usp.br/cgi-bin/mtd2br.plvirginia@if.usp.br|| atendimento@aguia.usp.br||virginia@if.usp.bropendoar:27212016-07-28T16:10:35Biblioteca Digital de Teses e Dissertações da USP - Universidade de São Paulo (USP)false
dc.title.none.fl_str_mv Bacterial ecology in Amazonian soils under deforestation and agricultural management
Ecologia bacteriana em solos da Amazônia sob desmatamento e manejo agrícola
title Bacterial ecology in Amazonian soils under deforestation and agricultural management
spellingShingle Bacterial ecology in Amazonian soils under deforestation and agricultural management
Navarrete, Acacio Aparecido
Amazon tropical soils
Ecologia microbiana
Ecologia molecular
Land-use changes
Microbial ecology
Microbiologia do solo
Molecular ecology
Mudanças de uso da terra
Soil microbiology
Solos tropicais da Amazônia
title_short Bacterial ecology in Amazonian soils under deforestation and agricultural management
title_full Bacterial ecology in Amazonian soils under deforestation and agricultural management
title_fullStr Bacterial ecology in Amazonian soils under deforestation and agricultural management
title_full_unstemmed Bacterial ecology in Amazonian soils under deforestation and agricultural management
title_sort Bacterial ecology in Amazonian soils under deforestation and agricultural management
author Navarrete, Acacio Aparecido
author_facet Navarrete, Acacio Aparecido
author_role author
dc.contributor.none.fl_str_mv Mui, Tsai Siu
Veen, Johannes Antonie van
dc.contributor.author.fl_str_mv Navarrete, Acacio Aparecido
dc.subject.por.fl_str_mv Amazon tropical soils
Ecologia microbiana
Ecologia molecular
Land-use changes
Microbial ecology
Microbiologia do solo
Molecular ecology
Mudanças de uso da terra
Soil microbiology
Solos tropicais da Amazônia
topic Amazon tropical soils
Ecologia microbiana
Ecologia molecular
Land-use changes
Microbial ecology
Microbiologia do solo
Molecular ecology
Mudanças de uso da terra
Soil microbiology
Solos tropicais da Amazônia
description This thesis assessed effects of Amazonian deforestation on artificial association networks of bacteria to bacteria and to abiotic soil factors and networks based on categories of bacterial functions and abiotic soil factors, and sought a better insight into community of Acidobacteria in Amazon soils under agricultural management of soybean based on culture-dependent and molecular approaches. Bacterial community was studied based on next-generation sequencing technologies (Roche GS FLX Titanium and Illumina HiSeq 2000 platforms), quantitative real-time PCR, fingerprinting technique and basic procedures for bacteria culture. The general objective of this thesis was achieved by development of three different studies. The Study 1 analyzed the total bacterial community based on 16S ribosomal DNA pyrotag (425 thousand sequences), shotgun metagenomics (266 million sequences) and environmental parameters from soil samples collected in three real replicate of intact Amazon rainforest and adjacent deforested site after 2-4 months of forest clearing and burning in the Brazilian Amazon. This study showed that deforestation of Amazon forest soils led to a consistent decline in the abundance of Verrucomicrobia and alterations in verrucomicrobial community structure, and simplified association networks among different bacterial taxonomic groups and abiotic soil factors. In order to adapt to this condition function-based associations network were enhanced, indicating a higher degree of risk spreading for the maintenance of soil functioning. The Study 2, in turn, correlated relative abundance of Acidobacteria subgroups - based on approximately 33 thousand sequences of acidobacterial 16S rRNA genes - and abiotic soil factors, and showed differential response of Acidobacteria subgroups to abiotic soil factors in Amazon forest soils into soybean croplands. This study opened the possibilites to explore acidobacterial subgroups as early-warning bio-indicators of agricultural soil management effects in the Amazon area. Lastly, the Study 3 reported the culturability and molecular detection of Acidobacteria subgroups 1 and 3 concomitantly to other bacterial groups from Amazon soils on enriched culture medium with carbon source and incubated for relatively long period in hypoxic atmosphere (2% O2 [vol/vol], 2% CO2 [vol/vol] and 96% N2 [vol/vol]), and validated the combination of traditional procedures for bacteria culture and molecular techniques for recover and detection of Acidobacteria from Amazon soils
publishDate 2013
dc.date.none.fl_str_mv 2013-01-31
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dc.type.driver.fl_str_mv info:eu-repo/semantics/doctoralThesis
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dc.language.iso.fl_str_mv eng
language eng
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dc.rights.driver.fl_str_mv Liberar o conteúdo para acesso público.
info:eu-repo/semantics/openAccess
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eu_rights_str_mv openAccess
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dc.publisher.none.fl_str_mv Biblioteca Digitais de Teses e Dissertações da USP
publisher.none.fl_str_mv Biblioteca Digitais de Teses e Dissertações da USP
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repository.name.fl_str_mv Biblioteca Digital de Teses e Dissertações da USP - Universidade de São Paulo (USP)
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