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Organism
7.2.2.12
Roles of Agrobacterium tumefaciens C58 ZntA and ZntB and the transcriptional regulator ZntR in controlling Cd2+/Zn2+/Co2+ resistance and the peroxide stress response
Agrobacterium tumefaciens
7.2.2.12
Roles of Agrobacterium tumefaciens C58 ZntA and ZntB and the transcriptional regulator ZntR in controlling Cd2+/Zn2+/Co2+ resistance and the peroxide stress response
Agrobacterium tumefaciens C58 / ATCC 33970
7.2.2.12
Metal response of transgenic tomato plants expressing P1B-ATPase
Arabidopsis halleri
7.2.2.12
Protein biochemistry and expression regulation of cadmium/zinc pumping ATPases in the hyperaccumulator plants Arabidopsis halleri and Noccaea caerulescens
Arabidopsis halleri
7.2.2.12
A novel regulatory metal binding domain is present in the C terminus of Arabidopsis Zn2+-ATPase HMA2
Arabidopsis thaliana
7.2.2.12
Arabidopsis HMA2, a divalent heavy metal-transporting PIB-type ATPase, is involved in cytoplasmic Zn2+ homeostasis
Arabidopsis thaliana
7.2.2.12
AtHMA1 contributes to the detoxification of excess Zn(II) in Arabidopsis
Arabidopsis thaliana
7.2.2.12
Expression of the P1B-type ATPase AtHMA4 in tobacco modifies Zn and Cd root to shoot partitioning and metal tolerance
Arabidopsis thaliana
7.2.2.12
HMA P-type ATPases are the major mechanism for root-to-shoot Cd translocation in Arabidopsis thaliana
Arabidopsis thaliana
7.2.2.12
Homology modeling and in vivo functional characterization of the zinc permeation pathway in a heavy metal P-type ATPase
Arabidopsis thaliana
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