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1.
J Hazard Mater ; 391: 122197, 2020 06 05.
Artigo em Inglês | MEDLINE | ID: mdl-32058227

RESUMO

Sediment microbial communities were exposed for 21 days to an environmental concentration of copper to assess Cu-induced composition changes and resulting effects on microbial sensitivity to acute Cu and As toxicity. Chronic Cu exposure reduced the diversity of the bacterial and archaeal communities from Day 0 to Day 21. The pollution-induced community tolerance concept (PICT) predicts that loss of the most sensitive taxa and gain of more tolerant ones should increase the capacity of Cu-exposed communities to tolerate acute Cu toxicity. Although diversity loss and functional costs of adaptation could have increased their sensitivity to subsequent toxic stress, no increased sensitivity to As was observed. PICT responses varied according to heterotrophic activity, selected as the functional endpoint for toxicity testing, with different results for Cu and As. This suggests that induced tolerance to Cu and As was supported by different species with different metabolic capacities. Ecological risk assessment of contaminants would gain accuracy from further research on the relative contribution of tolerance acquisition and co-tolerance processes on the functional response of microbial communities.


Assuntos
Arsênio/toxicidade , Cobre/administração & dosagem , Sedimentos Geológicos/microbiologia , Microbiota/efeitos dos fármacos , Poluentes do Solo/administração & dosagem , Archaea/efeitos dos fármacos , Archaea/genética , Bactérias/efeitos dos fármacos , Bactérias/genética , Cobre/toxicidade , Tolerância a Medicamentos , Poluentes do Solo/toxicidade
2.
Emerg Infect Dis ; 25(11): 2126, 2019 11.
Artigo em Inglês | MEDLINE | ID: mdl-31625864

RESUMO

We report an outbreak of dengue in Darfur, western Sudan, during September 2014-April 2015. Dengue virus-specific PCR testing of 50 samples from nonmalaria febrile illness case-patients confirmed 35 dengue cases. We detected 7 cases of dengue shock syndrome and 24 cases of dengue hemorrhagic fever.


Assuntos
Vírus da Dengue , Dengue/epidemiologia , Dengue/virologia , Surtos de Doenças , Vírus da Dengue/classificação , Vírus da Dengue/genética , Feminino , Humanos , Masculino , Estações do Ano , Dengue Grave/epidemiologia , Sudão/epidemiologia
3.
Front Microbiol ; 9: 1852, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30158909

RESUMO

In many aquatic ecosystems, sediments are an essential compartment, which supports high levels of specific and functional biodiversity thus contributing to ecological functioning. Sediments are exposed to inputs from ground or surface waters and from surrounding watershed that can lead to the accumulation of toxic and persistent contaminants potentially harmful for benthic sediment-living communities, including microbial assemblages. As benthic microbial communities play crucial roles in ecological processes such as organic matter recycling and biomass production, we performed a 21-day laboratory channel experiment to assess the structural and functional impact of metals on natural microbial communities chronically exposed to sediments spiked with copper (Cu) and/or arsenic (As) alone or mixed at environmentally relevant concentrations (40 mg kg-1 for each metal). Heterotrophic microbial community responses to metals were evaluated both in terms of genetic structure (using ARISA analysis) and functional potential (using exoenzymatic, metabolic and functional genes analyses). Exposure to Cu had rapid marked effects on the structure and most of the functions of the exposed communities. Exposure to As had almost undetectable effects, possibly due to both lack of As bioavailability or toxicity toward the exposed communities. However, when the two metals were combined, certain functional responses suggested a possible interaction between Cu and As toxicity on heterotrophic communities. We also observed temporal dynamics in the functional response of sediment communities to chronic Cu exposure, alone or in mixture, with some functions being resilient and others being impacted throughout the experiment or only after several weeks of exposure. Taken together, these findings reveal that metal contamination of sediment could impact both the genetic structure and the functional potential of chronically exposed microbial communities. Given their functional role in aquatic ecosystems, it poses an ecological risk as it may impact ecosystem functioning.

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