Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental

Detalhes bibliográficos
Ano de defesa: 2024
Autor(a) principal: Santiago, Mattheus Lu?s Alves lattes
Orientador(a): Oliveira, Eddy Jos? Francisco de lattes
Banca de defesa: Não Informado pela instituição
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: Universidade Estadual de Feira de Santana
Programa de Pós-Graduação: Programa de P?s-Gradua??o em Ecologia e Evolu??o
Departamento: DEPARTAMENTO DE CI?NCIAS BIOL?GICAS
País: Brasil
Palavras-chave em Português:
Palavras-chave em Inglês:
Área do conhecimento CNPq:
Link de acesso: http://tede2.uefs.br:8080/handle/tede/1752
Resumo: Aratu Bay, located in the Bay of All Saints, Bahia, Brazil, is an inlet that houses estuarine ecosystems and mangroves, known for their high biodiversity and socio-economic relevance. These ecosystems play a crucial role in maintaining environmental health, serving as breeding and feeding grounds for various marine species. The bay sustains local fishing communities and has significant economic importance due to the presence of one of the main industrial ports in the region, being a strategic center for commercial and logistical activities. However, it faces strong pressures due to intense urbanization, industrialization, and maritime traffic. This study aimed to assess the biodiversity of Aratu Bay using the environmental DNA metabarcoding technique. The research was structured into three main areas: i) Evaluation of ichthyofauna biodiversity using the 12S rRNA gene; ii) Analysis of eukaryotic biodiversity and the role of environmental DNA in detecting native and exotic species through the 18S rRNA gene; iii) Investigation of prokaryotic community diversity using the 16S rRNA gene. By using 12S rRNA metabarcoding in the study of ichthyofauna, it was possible to detect marine fish species, ranging from mangrove species to oceanic species, including some not previously documented in the region. The analysis of eukaryotes, through the 18S rRNA gene, revealed a diverse community, with the presence of potentially invasive non-indigenous species, highlighting the importance of continuous monitoring to control bioinvasions. The study of prokaryotic communities, using the 16S rRNA gene, showed a significant diversity of functional groups, from pathogenic to bioremediators, emphasizing the essential ecological role of these microorganisms for the environmental quality of the bay. Finally, the metabarcoding technique proved to be highly effective in providing a comprehensive view of biodiversity, confirming itself as an efficient methodology for monitoring in complex coastal ecosystems. This study not only explored the use of this technology in Aratu Bay but also created an essential starting point for future research and conservation actions, solidifying its pioneering role in the region.
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spelling Oliveira, Eddy Jos? Francisco dehttps://orcid.org/0000-0002-1614-5584http://lattes.cnpq.br/4575150069494160Andrade, Consuelo Lima Navarro de6819521034391459http://lattes.cnpq.br/68195210343914592112284308608672http://lattes.cnpq.br/2112284308608672Santiago, Mattheus Lu?s Alves2025-02-10T18:49:28Z2024-09-26SANTIAGO, Mattheus Lu?s Alves. Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental, 2024, 108 f., Disserta??o (mestrado) - Programa de P?s-Gradua??o em Ecologia e Evolu??o, Universidade Estadual de Feira de Santana, Feira de Santana.http://tede2.uefs.br:8080/handle/tede/1752Aratu Bay, located in the Bay of All Saints, Bahia, Brazil, is an inlet that houses estuarine ecosystems and mangroves, known for their high biodiversity and socio-economic relevance. These ecosystems play a crucial role in maintaining environmental health, serving as breeding and feeding grounds for various marine species. The bay sustains local fishing communities and has significant economic importance due to the presence of one of the main industrial ports in the region, being a strategic center for commercial and logistical activities. However, it faces strong pressures due to intense urbanization, industrialization, and maritime traffic. This study aimed to assess the biodiversity of Aratu Bay using the environmental DNA metabarcoding technique. The research was structured into three main areas: i) Evaluation of ichthyofauna biodiversity using the 12S rRNA gene; ii) Analysis of eukaryotic biodiversity and the role of environmental DNA in detecting native and exotic species through the 18S rRNA gene; iii) Investigation of prokaryotic community diversity using the 16S rRNA gene. By using 12S rRNA metabarcoding in the study of ichthyofauna, it was possible to detect marine fish species, ranging from mangrove species to oceanic species, including some not previously documented in the region. The analysis of eukaryotes, through the 18S rRNA gene, revealed a diverse community, with the presence of potentially invasive non-indigenous species, highlighting the importance of continuous monitoring to control bioinvasions. The study of prokaryotic communities, using the 16S rRNA gene, showed a significant diversity of functional groups, from pathogenic to bioremediators, emphasizing the essential ecological role of these microorganisms for the environmental quality of the bay. Finally, the metabarcoding technique proved to be highly effective in providing a comprehensive view of biodiversity, confirming itself as an efficient methodology for monitoring in complex coastal ecosystems. This study not only explored the use of this technology in Aratu Bay but also created an essential starting point for future research and conservation actions, solidifying its pioneering role in the region.A Ba?a de Aratu, localizada na Ba?a de Todos os Santos, Bahia, Brasil, ? uma enseada que abriga ecossistemas estuarinos e manguezais, conhecidos por sua alta biodiversidade e relev?ncia socioecon?mica. Esses ecossistemas desempenham um papel essencial na manuten??o da sa?de ambiental, servindo como ?reas de reprodu??o e alimenta??o para diversas esp?cies marinhas. A ba?a sustenta comunidades pesqueiras locais e tem grande import?ncia econ?mica devido ? presen?a de um dos principais portos industriais da regi?o, sendo um centro estrat?gico para atividades comerciais e log?sticas. Contudo, enfrenta fortes press?es devido ? intensa urbaniza??o, industrializa??o e tr?fego mar?timo. Este estudo teve como objetivo avaliar a biodiversidade da Ba?a de Aratu utilizando a t?cnica de metabarcoding de DNA ambiental. A pesquisa foi estruturada em tr?s frentes: i) Avalia??o da biodiversidade da ictiofauna utilizando o gene 12S rRNA; ii) An?lise da biodiversidade de eucariotos e o papel do DNA ambiental na detec??o de esp?cies nativas e ex?ticas atrav?s do gene 18S rRNA; iii) Investiga??o da diversidade das comunidades procari?ticas por meio do gene 16S rRNA. Atrav?s do uso do metabarcoding 12S rRNA no estudo da ictiofauna, foi poss?vel detectar esp?cies de peixes marinhos, abrangendo desde esp?cies t?picas de manguezais at? esp?cies oce?nicas, incluindo algumas n?o documentadas na regi?o. A an?lise de eucariotos, por meio do 18S rRNA, revelou uma comunidade diversa, com a presen?a de esp?cies n?o ind?genas potencialmente invasoras, sublinhando a relev?ncia do monitoramento cont?nuo para controlar bioinvas?es. O estudo das comunidades procari?ticas, usando o 16S rRNA, evidenciou uma diversidade significativa de grupos funcionais, desde patog?nicos at? biorremediadores, destacando o papel ecol?gico essencial desses microrganismos para a qualidade ambiental da ba?a. Por fim, a t?cnica de metabarcoding mostrou-se extremamente eficaz ao proporcionar uma vis?o abrangente da biodiversidade, confirmando-se como uma metodologia eficiente para monitoramento em ecossistemas costeiros complexos. Este estudo criou um ponto de partida essencial para futuras pesquisas e a??es de conserva??o, consolidando seu car?ter pioneiro na regi?o.Submitted by Daniela Costa (dmscosta@uefs.br) on 2025-02-10T18:49:28Z No. of bitstreams: 1 Dissertacao - Mattheus_Luis_Alves_Santiago.pdf: 3544062 bytes, checksum: 4acf3670c7beed8becc0a9c086288120 (MD5)Made available in DSpace on 2025-02-10T18:49:28Z (GMT). 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dc.title.por.fl_str_mv Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
title Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
spellingShingle Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
Santiago, Mattheus Lu?s Alves
Ba?a de Todos os Santos
Conserva??o
Monitoramento
Biodiversidade
DNA Ambiental
Metagen?mica
Todos os Santos Bay
Conservation
Monitoring
Biodiversity
Environmental DNA
Metagenomics
CIENCIAS BIOLOGICAS::GENETICA
title_short Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
title_full Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
title_fullStr Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
title_full_unstemmed Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
title_sort Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental
author Santiago, Mattheus Lu?s Alves
author_facet Santiago, Mattheus Lu?s Alves
author_role author
dc.contributor.advisor1.fl_str_mv Oliveira, Eddy Jos? Francisco de
dc.contributor.advisor1ID.fl_str_mv https://orcid.org/0000-0002-1614-5584
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/4575150069494160
dc.contributor.advisor-co1.fl_str_mv Andrade, Consuelo Lima Navarro de
dc.contributor.advisor-co1ID.fl_str_mv 6819521034391459
dc.contributor.advisor-co1Lattes.fl_str_mv http://lattes.cnpq.br/6819521034391459
dc.contributor.authorID.fl_str_mv 2112284308608672
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/2112284308608672
dc.contributor.author.fl_str_mv Santiago, Mattheus Lu?s Alves
contributor_str_mv Oliveira, Eddy Jos? Francisco de
Andrade, Consuelo Lima Navarro de
dc.subject.por.fl_str_mv Ba?a de Todos os Santos
Conserva??o
Monitoramento
Biodiversidade
DNA Ambiental
Metagen?mica
topic Ba?a de Todos os Santos
Conserva??o
Monitoramento
Biodiversidade
DNA Ambiental
Metagen?mica
Todos os Santos Bay
Conservation
Monitoring
Biodiversity
Environmental DNA
Metagenomics
CIENCIAS BIOLOGICAS::GENETICA
dc.subject.eng.fl_str_mv Todos os Santos Bay
Conservation
Monitoring
Biodiversity
Environmental DNA
Metagenomics
dc.subject.cnpq.fl_str_mv CIENCIAS BIOLOGICAS::GENETICA
description Aratu Bay, located in the Bay of All Saints, Bahia, Brazil, is an inlet that houses estuarine ecosystems and mangroves, known for their high biodiversity and socio-economic relevance. These ecosystems play a crucial role in maintaining environmental health, serving as breeding and feeding grounds for various marine species. The bay sustains local fishing communities and has significant economic importance due to the presence of one of the main industrial ports in the region, being a strategic center for commercial and logistical activities. However, it faces strong pressures due to intense urbanization, industrialization, and maritime traffic. This study aimed to assess the biodiversity of Aratu Bay using the environmental DNA metabarcoding technique. The research was structured into three main areas: i) Evaluation of ichthyofauna biodiversity using the 12S rRNA gene; ii) Analysis of eukaryotic biodiversity and the role of environmental DNA in detecting native and exotic species through the 18S rRNA gene; iii) Investigation of prokaryotic community diversity using the 16S rRNA gene. By using 12S rRNA metabarcoding in the study of ichthyofauna, it was possible to detect marine fish species, ranging from mangrove species to oceanic species, including some not previously documented in the region. The analysis of eukaryotes, through the 18S rRNA gene, revealed a diverse community, with the presence of potentially invasive non-indigenous species, highlighting the importance of continuous monitoring to control bioinvasions. The study of prokaryotic communities, using the 16S rRNA gene, showed a significant diversity of functional groups, from pathogenic to bioremediators, emphasizing the essential ecological role of these microorganisms for the environmental quality of the bay. Finally, the metabarcoding technique proved to be highly effective in providing a comprehensive view of biodiversity, confirming itself as an efficient methodology for monitoring in complex coastal ecosystems. This study not only explored the use of this technology in Aratu Bay but also created an essential starting point for future research and conservation actions, solidifying its pioneering role in the region.
publishDate 2024
dc.date.issued.fl_str_mv 2024-09-26
dc.date.accessioned.fl_str_mv 2025-02-10T18:49:28Z
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dc.identifier.citation.fl_str_mv SANTIAGO, Mattheus Lu?s Alves. Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental, 2024, 108 f., Disserta??o (mestrado) - Programa de P?s-Gradua??o em Ecologia e Evolu??o, Universidade Estadual de Feira de Santana, Feira de Santana.
dc.identifier.uri.fl_str_mv http://tede2.uefs.br:8080/handle/tede/1752
identifier_str_mv SANTIAGO, Mattheus Lu?s Alves. Perfil gen?tico da biodiversidade da Ba?a de Aratu, Bahia, Brasil: aplica??o do metabarcoding de DNA ambiental, 2024, 108 f., Disserta??o (mestrado) - Programa de P?s-Gradua??o em Ecologia e Evolu??o, Universidade Estadual de Feira de Santana, Feira de Santana.
url http://tede2.uefs.br:8080/handle/tede/1752
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