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Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations
by
Rocap, Gabrielle
, Saunders, Jaclyn K
in
45
/ 631/158/2446/2447
/ 631/181/735
/ 631/326/47
/ 704/172
/ Arsenate reductase
/ Arsenate Reductases - genetics
/ Arsenate Reductases - metabolism
/ Arsenates
/ Arsenates - metabolism
/ Arsenic
/ Arsenic - metabolism
/ Arsenite
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Biomedical and Life Sciences
/ Detoxification
/ Differential distribution
/ Ecology
/ Efflux
/ Evolutionary Biology
/ Genes
/ Genomics
/ Gyres
/ Life Sciences
/ Marine environment
/ Methylation
/ Methyltransferase
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Original
/ original-article
/ Phylogeny
/ Populations
/ Prochlorococcus
/ Prochlorococcus - classification
/ Prochlorococcus - genetics
/ Prochlorococcus - isolation & purification
/ Prochlorococcus - metabolism
/ Reductases
/ S-Adenosylmethionine
2016
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Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations
by
Rocap, Gabrielle
, Saunders, Jaclyn K
in
45
/ 631/158/2446/2447
/ 631/181/735
/ 631/326/47
/ 704/172
/ Arsenate reductase
/ Arsenate Reductases - genetics
/ Arsenate Reductases - metabolism
/ Arsenates
/ Arsenates - metabolism
/ Arsenic
/ Arsenic - metabolism
/ Arsenite
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Biomedical and Life Sciences
/ Detoxification
/ Differential distribution
/ Ecology
/ Efflux
/ Evolutionary Biology
/ Genes
/ Genomics
/ Gyres
/ Life Sciences
/ Marine environment
/ Methylation
/ Methyltransferase
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Original
/ original-article
/ Phylogeny
/ Populations
/ Prochlorococcus
/ Prochlorococcus - classification
/ Prochlorococcus - genetics
/ Prochlorococcus - isolation & purification
/ Prochlorococcus - metabolism
/ Reductases
/ S-Adenosylmethionine
2016
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Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations
by
Rocap, Gabrielle
, Saunders, Jaclyn K
in
45
/ 631/158/2446/2447
/ 631/181/735
/ 631/326/47
/ 704/172
/ Arsenate reductase
/ Arsenate Reductases - genetics
/ Arsenate Reductases - metabolism
/ Arsenates
/ Arsenates - metabolism
/ Arsenic
/ Arsenic - metabolism
/ Arsenite
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Biomedical and Life Sciences
/ Detoxification
/ Differential distribution
/ Ecology
/ Efflux
/ Evolutionary Biology
/ Genes
/ Genomics
/ Gyres
/ Life Sciences
/ Marine environment
/ Methylation
/ Methyltransferase
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Original
/ original-article
/ Phylogeny
/ Populations
/ Prochlorococcus
/ Prochlorococcus - classification
/ Prochlorococcus - genetics
/ Prochlorococcus - isolation & purification
/ Prochlorococcus - metabolism
/ Reductases
/ S-Adenosylmethionine
2016
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Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations
Journal Article
Genomic potential for arsenic efflux and methylation varies among global Prochlorococcus populations
2016
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Overview
The globally significant picocyanobacterium
Prochlorococcus
is the main primary producer in oligotrophic subtropical gyres. When phosphate concentrations are very low in the marine environment, the mol:mol availability of phosphate relative to the chemically similar arsenate molecule is reduced, potentially resulting in increased cellular arsenic exposure. To mediate accidental arsenate uptake, some
Prochlorococcus
isolates contain genes encoding a full or partial efflux detoxification pathway, consisting of an arsenate reductase (
arsC
), an arsenite-specific efflux pump (
acr3)
and an arsenic-related repressive regulator (
arsR
). This efflux pathway was the only previously known arsenic detox pathway in
Prochlorococcus
. We have identified an additional putative arsenic mediation strategy in
Prochlorococcus
driven by the enzyme arsenite
S-
adenosylmethionine methyltransferase (ArsM) which can convert inorganic arsenic into more innocuous organic forms and appears to be a more widespread mode of detoxification. We used a phylogenetically informed approach to identify
Prochlorococcus
linked arsenic genes from both pathways in the Global Ocean Sampling survey. The putative arsenic methylation pathway is nearly ubiquitously present in global
Prochlorococcus
populations. In contrast, the complete efflux pathway is only maintained in populations which experience extremely low PO
4
:AsO
4
, such as regions in the tropical and subtropical Atlantic. Thus, environmental exposure to arsenic appears to select for maintenance of the efflux detoxification pathway in
Prochlorococcus
. The differential distribution of these two pathways has implications for global arsenic cycling, as their associated end products, arsenite or organoarsenicals, have differing biochemical activities and residence times.
Publisher
Nature Publishing Group UK,Oxford University Press,Nature Publishing Group
Subject
/ 704/172
/ Arsenate Reductases - genetics
/ Arsenate Reductases - metabolism
/ Arsenic
/ Arsenite
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Biomedical and Life Sciences
/ Ecology
/ Efflux
/ Genes
/ Genomics
/ Gyres
/ Microbial Genetics and Genomics
/ Original
/ Prochlorococcus - classification
/ Prochlorococcus - isolation & purification
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