The microbial communities in mining impacted areas rely on a variety of mechanisms to survive in such extreme environments. In this work, a meta-taxonomic approach using 16S rRNA gene sequences was used to investigate the prokaryotic diversity of sediment samples from water bodies affected by acid mine drainage at the Sao Domingos mining area in the south of Portugal. Samples were collected in summer and winter from the most contaminated sites from where the water flows downstream to the freshwater of Chanca's river reservoir. The prokaryotic diversity on water bodies' sediments allowed us to distinguish the highly contaminated sites (pH approximate to 2) from sites with intermediate levels of contamination (pH approximate to 3-6.5), and fr...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
We examined the bacterial communities of epilithic biofilms in 17 streams which represented a gradie...
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions, sulfate,...
The prokaryotic communities of water bodies contaminated by acid mine drainage from the São Domingos...
The Tinto River (Huelva, southwestern Spain) is an extreme environment with a rather constant acidic...
The Parys Mountain copper mine (Wales, UK) contains a wide range of discrete environmental micronich...
Acid mine drainage (AMD) generated from mining processes is an on-going environmental concern. This ...
Acid mine drainage (AMD) is a common environmental problem in many sulphide mines worldwide, and it ...
<div><p>Here, we describe the metagenome and functional composition of a microbial community in a hi...
Acid mine drainage represents an extreme environment with high concentrations of potentially toxic e...
Mine drainage is an important environmental disturbance that affects the chemical and biological com...
9 p. : il., tab.Mining of metallic sulfide ore produces acidic water with high metal concentrations ...
Microscopic eukaryotes are known to have important ecosystem functions, but their diversity in most ...
Acid mine drainage (AMD) emplacements are low-complexity natural systems. Low-pH conditions appear t...
<p>Metagenomic approach permits us to obtain the latent resources from culturable and unculturable m...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
We examined the bacterial communities of epilithic biofilms in 17 streams which represented a gradie...
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions, sulfate,...
The prokaryotic communities of water bodies contaminated by acid mine drainage from the São Domingos...
The Tinto River (Huelva, southwestern Spain) is an extreme environment with a rather constant acidic...
The Parys Mountain copper mine (Wales, UK) contains a wide range of discrete environmental micronich...
Acid mine drainage (AMD) generated from mining processes is an on-going environmental concern. This ...
Acid mine drainage (AMD) is a common environmental problem in many sulphide mines worldwide, and it ...
<div><p>Here, we describe the metagenome and functional composition of a microbial community in a hi...
Acid mine drainage represents an extreme environment with high concentrations of potentially toxic e...
Mine drainage is an important environmental disturbance that affects the chemical and biological com...
9 p. : il., tab.Mining of metallic sulfide ore produces acidic water with high metal concentrations ...
Microscopic eukaryotes are known to have important ecosystem functions, but their diversity in most ...
Acid mine drainage (AMD) emplacements are low-complexity natural systems. Low-pH conditions appear t...
<p>Metagenomic approach permits us to obtain the latent resources from culturable and unculturable m...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
We examined the bacterial communities of epilithic biofilms in 17 streams which represented a gradie...
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions, sulfate,...