Rio de Janeiro water crisis: a metagenomic approach

Detalhes bibliográficos
Autor(a) principal: Moura, Priscila Gonçalves
Data de Publicação: 2020
Outros Autores: Kotowski Filho, Nelson Peixoto, Carvajal , Elvira, Handam, Natasha Berendonk, Jardim , Rodrigo, Martins, Adriana Sotero
Tipo de documento: preprint
Idioma: eng
Título da fonte: SciELO Preprints
Texto Completo: https://preprints.scielo.org/index.php/scielo/preprint/view/529
Resumo: In Rio de Janeiro’s metropolitan area comprise, over 8 million inhabitants receive drinking water from Company responsible for water and sewage, capted by the Guandu river’s water treatment station. Such water started to present unusual odour, taste and color in January 2020, as stated by the population itself. Results obtained through raw water microbiome metagenomic analysis inferred cyanobacteria presence, with Planktothricoides gender and Planktothricoides sp. SR001 being the most abundant gender and organism. Such do pose a risk to public health, as they are able to produce cyanotoxins that affect human health.
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spelling Rio de Janeiro water crisis: a metagenomic approachcyanobacteriawater qualityconsumption safetypublic healthIn Rio de Janeiro’s metropolitan area comprise, over 8 million inhabitants receive drinking water from Company responsible for water and sewage, capted by the Guandu river’s water treatment station. Such water started to present unusual odour, taste and color in January 2020, as stated by the population itself. Results obtained through raw water microbiome metagenomic analysis inferred cyanobacteria presence, with Planktothricoides gender and Planktothricoides sp. SR001 being the most abundant gender and organism. Such do pose a risk to public health, as they are able to produce cyanotoxins that affect human health.SciELO PreprintsSciELO PreprintsSciELO Preprints2020-05-21info:eu-repo/semantics/preprintinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://preprints.scielo.org/index.php/scielo/preprint/view/52910.1590/SciELOPreprints.529enghttps://preprints.scielo.org/index.php/scielo/article/view/529/673Copyright (c) 2020 Priscila Gonçalves Moura, Nelson Peixoto Kotowski Filho, Elvira Carvajal , Natasha Berendonk Handam, Rodrigo Jardim , Adriana Sotero Martinshttps://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessMoura, Priscila GonçalvesKotowski Filho, Nelson PeixotoCarvajal , ElviraHandam, Natasha Berendonk Jardim , RodrigoMartins, Adriana Soteroreponame:SciELO Preprintsinstname:SciELOinstacron:SCI2020-05-20T14:26:46Zoai:ops.preprints.scielo.org:preprint/529Servidor de preprintshttps://preprints.scielo.org/index.php/scieloONGhttps://preprints.scielo.org/index.php/scielo/oaiscielo.submission@scielo.orgopendoar:2020-05-20T14:26:46SciELO Preprints - SciELOfalse
dc.title.none.fl_str_mv Rio de Janeiro water crisis: a metagenomic approach
title Rio de Janeiro water crisis: a metagenomic approach
spellingShingle Rio de Janeiro water crisis: a metagenomic approach
Moura, Priscila Gonçalves
cyanobacteria
water quality
consumption safety
public health
title_short Rio de Janeiro water crisis: a metagenomic approach
title_full Rio de Janeiro water crisis: a metagenomic approach
title_fullStr Rio de Janeiro water crisis: a metagenomic approach
title_full_unstemmed Rio de Janeiro water crisis: a metagenomic approach
title_sort Rio de Janeiro water crisis: a metagenomic approach
author Moura, Priscila Gonçalves
author_facet Moura, Priscila Gonçalves
Kotowski Filho, Nelson Peixoto
Carvajal , Elvira
Handam, Natasha Berendonk
Jardim , Rodrigo
Martins, Adriana Sotero
author_role author
author2 Kotowski Filho, Nelson Peixoto
Carvajal , Elvira
Handam, Natasha Berendonk
Jardim , Rodrigo
Martins, Adriana Sotero
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Moura, Priscila Gonçalves
Kotowski Filho, Nelson Peixoto
Carvajal , Elvira
Handam, Natasha Berendonk
Jardim , Rodrigo
Martins, Adriana Sotero
dc.subject.por.fl_str_mv cyanobacteria
water quality
consumption safety
public health
topic cyanobacteria
water quality
consumption safety
public health
description In Rio de Janeiro’s metropolitan area comprise, over 8 million inhabitants receive drinking water from Company responsible for water and sewage, capted by the Guandu river’s water treatment station. Such water started to present unusual odour, taste and color in January 2020, as stated by the population itself. Results obtained through raw water microbiome metagenomic analysis inferred cyanobacteria presence, with Planktothricoides gender and Planktothricoides sp. SR001 being the most abundant gender and organism. Such do pose a risk to public health, as they are able to produce cyanotoxins that affect human health.
publishDate 2020
dc.date.none.fl_str_mv 2020-05-21
dc.type.driver.fl_str_mv info:eu-repo/semantics/preprint
info:eu-repo/semantics/publishedVersion
format preprint
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dc.identifier.uri.fl_str_mv https://preprints.scielo.org/index.php/scielo/preprint/view/529
10.1590/SciELOPreprints.529
url https://preprints.scielo.org/index.php/scielo/preprint/view/529
identifier_str_mv 10.1590/SciELOPreprints.529
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv https://preprints.scielo.org/index.php/scielo/article/view/529/673
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dc.publisher.none.fl_str_mv SciELO Preprints
SciELO Preprints
SciELO Preprints
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SciELO Preprints
SciELO Preprints
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instacron:SCI
instname_str SciELO
instacron_str SCI
institution SCI
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repository.name.fl_str_mv SciELO Preprints - SciELO
repository.mail.fl_str_mv scielo.submission@scielo.org
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