Species
|
Resource
|
RRC ID
|
Title
|
Journal
|
Published
|
Link
|
General Microbes
|
JCM19384
|
66402
|
Comparative genomic and metabolic analysis of manganese-oxidizing mechanisms in Celeribacter manganoxidans DY25T: Its adaptation to the environment of polymetallic nodules.
|
Genomics |
2020-3-1 |
Pubmed
Full text
|
General Microbes
|
JCM 21037
|
50890
|
Microbial manganese(III) reduction fuelled by anaerobic acetate oxidation.
|
Environ Microbiol |
2017-9-1 |
Pubmed
Full text
|
Barley
|
オオムギ系統
|
47244
|
The HvNramp5 Transporter Mediates Uptake of Cadmium and Manganese, But Not Iron.
|
Plant Physiol |
2016-11-1 |
Pubmed
Full text
|
C.elegans
|
NA
|
45932
|
Elemental bioimaging of manganese uptake in C. elegans.
|
Metallomics |
2014-3-1 |
Pubmed
Full text
|
C.elegans
|
tm1779
,
tm918
,
tm598
|
45930
|
The effects of pdr1, djr1.1 and pink1 loss in manganese-induced toxicity and the role of α-synuclein in C. elegans.
|
Metallomics |
2014-3-1 |
Pubmed
Full text
|
Human and Animal Cells
|
|
43450
|
Alterations in manganese, copper, and zinc contents, and intracellular status of the metal-containing superoxide dismutase in human mesothelioma cells.
|
J Trace Elem Med Biol |
2008-1-1 |
Pubmed
Full text
|
General Microbes
|
JCM 19384
|
41179
|
Celeribacter manganoxidans sp. nov., a manganese-oxidizing bacterium isolated from deep-sea sediment of a polymetallic nodule province.
|
Int J Syst Evol Microbiol |
2015-11-1 |
Pubmed
Full text
|
Prokaryotes E. coli
|
NA
|
35282
|
Chemical basis of nitrogen recovery through the ureide pathway: formation and hydrolysis of S-ureidoglycine in plants and bacteria.
|
ACS Chem Biol |
2010-2-19 |
Pubmed
Full text
|
Arabidopsis / Cultured plant cells, genes
|
pda18620
,
pda15827
,
pda03164
|
28135
|
Transport properties of members of the ZIP family in plants and their role in Zn and Mn homeostasis.
|
J Exp Bot |
2013-1-1 |
Pubmed
Full text
|
Yeast
|
JY741
,
JY746 ?
|
12628
|
Characterization of a fission yeast P(5)-type ATPase homologue that is essential for Ca(2+)/Mn(2+ )homeostasis in the absence of P(2)-type ATPases.
|
Genes Genet Syst |
2008-10-1 |
Pubmed
Full text
|