Environmental health of water bodies from a Brazilian Amazon Metropolis based on a conventional and metagenomic approach

基因组 亚马逊雨林 水质 人口 抗生素耐药性 生物 环境保护 细菌 环境卫生 生态学 环境科学 医学 生物化学 遗传学 基因
作者
Jones Anderson Monteiro Siqueira,Dielle Monteiro Teixeira,Guilherme Junior Leite da Piedade,Cintya de Oliveira Souza,Tuane Carolina Ferreira Moura,Marcia de Nazaré Miranda Bahia,Danielle Murici Brasiliense,Denise Suéllen Amorim de Sousa Santos,Lena Líllian Canto de Sá Morais,Dorotéa de Fátima Lobato da Silva,Bruno Santana Carneiro,Kenny da Costa Pinheiro,Edivaldo Costa Sousa,Clístenes Pamplona Catete,Ricardo José de Paula Souza e Guimarães,James Lima Ferreira,Wanderley Dias das Chagas,Raiana Scerni Machado,Fernando Neto Tavares,Hugo Reis Resque,Patrícia dos Santos Lobo,Sylvia de Fátima dos Santos Guerra,Luana da Silva Soares,Luciana Damascena da Silva,Yvone Benchimol Gabbay
出处
期刊:Journal of Applied Microbiology [Wiley]
卷期号:135 (5) 被引量:1
标识
DOI:10.1093/jambio/lxae101
摘要

Abstract Aims The present study aimed to use a conventional and metagenomic approach to investigate the microbiological diversity of water bodies in a network of drainage channels and rivers located in the central area of the city of Belém, northern Brazil, which is considered one of the largest cities in the Brazilian Amazon. Methods and results In eight of the analyzed points, both bacterial and viral microbiological indicators of environmental contamination—physical–chemical and metals—were assessed. The bacterial resistance genes, drug resistance mechanisms, and viral viability in the environment were also assessed. A total of 473 families of bacteria and 83 families of viruses were identified. Based on the analysis of metals, the levels of three metals (Cd, Fe, and Mn) were found to be above the recommended acceptable level by local legislation. The levels of the following three physicochemical parameters were also higher than recommended: biochemical oxygen demand, dissolved oxygen, and turbidity. Sixty-three bacterial resistance genes that conferred resistance to 13 different classes of antimicrobials were identified. Further, five mechanisms of antimicrobial resistance were identified and viral viability in the environment was confirmed. Conclusions Intense human actions combined with a lack of public policies and poor environmental education of the population cause environmental degradation, especially in water bodies. Thus, urgent interventions are warranted to restore the quality of this precious and scarce asset worldwide.

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