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Environmental transcriptome analysis reveals physiological differences between biofilm and planktonic modes of life of the iron oxidizing bacteria Leptospirillum spp. in their natural microbial community
by
Moreno-Paz, Mercedes
, Gómez, Manuel J
, Parro, Víctor
, Arcas, Aida
in
Acid mine drainage
/ Acidithiobacillus ferrooxidans
/ Acidobacterium
/ Air-water interface
/ Animal Genetics and Genomics
/ Bacteria
/ Bacteria - drug effects
/ Bacteria - growth & development
/ Bacteria - metabolism
/ Bacterial Physiological Phenomena
/ Biofilms
/ Biomedical and Life Sciences
/ Bioremediation
/ Chemical Phenomena
/ DNA testing
/ Fermentation
/ Gene Expression Profiling
/ Genetic aspects
/ Genomes
/ Genomics
/ Gram-negative bacteria
/ Iron - metabolism
/ Leaching
/ Leptospirillum
/ Life Sciences
/ Microarrays
/ Microbial Genetics and Genomics
/ Microbial mats
/ Microbiology
/ Microorganisms
/ Monosaccharides - pharmacology
/ Oligonucleotide Array Sequence Analysis
/ Oligotrophy
/ Organic acids
/ Organic Chemicals - pharmacology
/ Oxidation-Reduction
/ Physiological aspects
/ Physiology
/ Plant Genetics and Genomics
/ Proteomics
/ Research Article
/ River ecology
/ Sulfobacillus
/ Sulfur content
2010
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Environmental transcriptome analysis reveals physiological differences between biofilm and planktonic modes of life of the iron oxidizing bacteria Leptospirillum spp. in their natural microbial community
by
Moreno-Paz, Mercedes
, Gómez, Manuel J
, Parro, Víctor
, Arcas, Aida
in
Acid mine drainage
/ Acidithiobacillus ferrooxidans
/ Acidobacterium
/ Air-water interface
/ Animal Genetics and Genomics
/ Bacteria
/ Bacteria - drug effects
/ Bacteria - growth & development
/ Bacteria - metabolism
/ Bacterial Physiological Phenomena
/ Biofilms
/ Biomedical and Life Sciences
/ Bioremediation
/ Chemical Phenomena
/ DNA testing
/ Fermentation
/ Gene Expression Profiling
/ Genetic aspects
/ Genomes
/ Genomics
/ Gram-negative bacteria
/ Iron - metabolism
/ Leaching
/ Leptospirillum
/ Life Sciences
/ Microarrays
/ Microbial Genetics and Genomics
/ Microbial mats
/ Microbiology
/ Microorganisms
/ Monosaccharides - pharmacology
/ Oligonucleotide Array Sequence Analysis
/ Oligotrophy
/ Organic acids
/ Organic Chemicals - pharmacology
/ Oxidation-Reduction
/ Physiological aspects
/ Physiology
/ Plant Genetics and Genomics
/ Proteomics
/ Research Article
/ River ecology
/ Sulfobacillus
/ Sulfur content
2010
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Environmental transcriptome analysis reveals physiological differences between biofilm and planktonic modes of life of the iron oxidizing bacteria Leptospirillum spp. in their natural microbial community
by
Moreno-Paz, Mercedes
, Gómez, Manuel J
, Parro, Víctor
, Arcas, Aida
in
Acid mine drainage
/ Acidithiobacillus ferrooxidans
/ Acidobacterium
/ Air-water interface
/ Animal Genetics and Genomics
/ Bacteria
/ Bacteria - drug effects
/ Bacteria - growth & development
/ Bacteria - metabolism
/ Bacterial Physiological Phenomena
/ Biofilms
/ Biomedical and Life Sciences
/ Bioremediation
/ Chemical Phenomena
/ DNA testing
/ Fermentation
/ Gene Expression Profiling
/ Genetic aspects
/ Genomes
/ Genomics
/ Gram-negative bacteria
/ Iron - metabolism
/ Leaching
/ Leptospirillum
/ Life Sciences
/ Microarrays
/ Microbial Genetics and Genomics
/ Microbial mats
/ Microbiology
/ Microorganisms
/ Monosaccharides - pharmacology
/ Oligonucleotide Array Sequence Analysis
/ Oligotrophy
/ Organic acids
/ Organic Chemicals - pharmacology
/ Oxidation-Reduction
/ Physiological aspects
/ Physiology
/ Plant Genetics and Genomics
/ Proteomics
/ Research Article
/ River ecology
/ Sulfobacillus
/ Sulfur content
2010
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Environmental transcriptome analysis reveals physiological differences between biofilm and planktonic modes of life of the iron oxidizing bacteria Leptospirillum spp. in their natural microbial community
Journal Article
Environmental transcriptome analysis reveals physiological differences between biofilm and planktonic modes of life of the iron oxidizing bacteria Leptospirillum spp. in their natural microbial community
2010
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Overview
Background
Extreme acidic environments are characterized by their high metal content and lack of nutrients (oligotrophy). Macroscopic biofilms and filaments usually grow on the water-air interface or under the stream attached to solid substrates (streamers). In the Río Tinto (Spain), brown filaments develop under the water stream where the Gram-negative iron-oxidizing bacteria
Leptospirillum
spp. (
L. ferrooxidans
and
L. ferriphilum
) and
Acidithiobacillus ferrooxidans
are abundant. These microorganisms play a critical role in bioleaching processes for industrial (biominery) and environmental applications (acid mine drainage, bioremediation). The aim of this study was to investigate the physiological differences between the free living (planktonic) and the sessile (biofilm associated) lifestyles of
Leptospirillum
spp. as part of its natural extremely acidophilic community.
Results
Total RNA extracted from environmental samples was used to determine the composition of the metabolically active members of the microbial community and then to compare the biofilm and planktonic environmental transcriptomes by hybridizing to a genomic microarray of
L. ferrooxidans
. Genes up-regulated in the filamentous biofilm are involved in cellular functions related to biofilm formation and maintenance, such as: motility and quorum sensing (
mqsR, cheAY, fliA, motAB
), synthesis of cell wall structures (
lnt, murA, murB
), specific proteases (
clpX/clpP
), stress response chaperons (
clpB, clpC, grpE-dnaKJ, groESL
), etc. Additionally, genes involved in mixed acid fermentation (
poxB
,
ackA
) were up-regulated in the biofilm. This result, together with the presence of small organic acids like acetate and formate (1.36 mM and 0.06 mM respectively) in the acidic (pH 1.8) water stream, suggests that either
L. ferrooxidans
or other member of the microbial community are producing acetate in the acidophilic biofilm under microaerophilic conditions.
Conclusions
Our results indicate that the acidophilic filaments are dynamic structures in which different mechanisms for biofilm formation/dispersion are operating. Specific transcriptomic fingerprints can be inferred for both planktonic and sessile cells, having the former a more active TCA cycle, while the mixed acid fermentation process dominate in the latter. The excretion of acetate may play a relevant ecological role as a source of electron donor for heterotrophic Fe
3+
reducers like some Alphaproteobacteria,
Acidobacterium
spp. and
Sulfobacillus
spp., also present in the biofilm. Additionally, acetate may have a negative effect on bioleaching by inhibiting the growth of chemolithotrophic bacteria.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Acidithiobacillus ferrooxidans
/ Animal Genetics and Genomics
/ Bacteria
/ Bacteria - growth & development
/ Bacterial Physiological Phenomena
/ Biofilms
/ Biomedical and Life Sciences
/ Genomes
/ Genomics
/ Leaching
/ Microbial Genetics and Genomics
/ Monosaccharides - pharmacology
/ Oligonucleotide Array Sequence Analysis
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