Schistosoma japonicum Ab:Titr:Pt:Ser:Qn:Comp fix

Known as: Schistosoma japonicum Acs:Título:Punto temporal:Suero:Qn:Fijación del complemento, Schistosoma japonicum Ac:Titre:Temps ponctuel:Sérum:Quantitatif:Fixation du complément, [anticuerpo anti - ] Schistosoma japonicum [Ac]:factor de dilución (titulación):punto en el tiempo:suero:cuantitativo:fijación del complemento 
 
National Institutes of Health

Topic mentions per year

Topic mentions per year

1970-2018
05101519702018

Papers overview

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2011
2011
The complete genome sequencing of a γ-hexachlorocyclohexane-degrading strain, Sphingobium japonicum UT26, revealed that the… (More)
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2005
2005
As a prelude to using functional proteomics towards understanding the process of symbiotic nitrogen fixation between the legume… (More)
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2003
2003
In Bradyrhizobium japonicum, a gene named nnrR was identified which encodes a protein with high similarity to FNR/CRP-type… (More)
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2001
2001
Several defined vaccine candidate antigens of Schistosoma japonicum have shown promise in large animal vaccination experiments… (More)
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2000
2000
A large number of bacteria regulate chaperone gene expression by the CIRCE-HrcA system in which a DNA element called CIRCE serves… (More)
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1996
1996
The heat shock response of Bradyrhizobium japonicum is controlled by a complex network involving two known regulatory systems… (More)
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1995
1995
We present an extended genetic analysis of the previously identified cycH locus in Bradyrhizobium japonicum. Three new open… (More)
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1992
1992
A Tn5-induced mutant of Bradyrhizobium japonicum, strain LORBF1, was isolated on the basis of the formation of fluorescent… (More)
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1988
1988
Bradyrhizobium japonicum USDA 125-Sp, USDA 138, and USDA 138-Sm had been used as inoculants for soybean (Glycine max (L.) Merr… (More)
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1987
1987
A gene library of genomic DNA from the hydrogen uptake (Hup)-positive strain 128C53 of Rhizobium leguminosarum was constructed by… (More)
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