To analyze in detail the multigene family encoding the plasma-membrane H(+)-ATPase (pma) in Nicotiana plumbaginifolia Viv., five new pma genes (pma 5-9) were isolated. Three of these (pma 6, 8, 9) were fully characterized and classified into new and independent subfamilies. Their cell-type expression was followed by the beta-glucuronidase (gusA) reporter-gene method. While the pma8-gusA transgene was not expressed in transgenic tobacco, expression of the two other transgenes (pma6- and pma9-gusA) was found to be restricted to particular cell types. In the vegetative tissues, pma6-gusA expression was limited to the head cells of the leaf short trichomes, involved in secretion, and to the cortical parenchyma of the young nodes where the devel...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
Guard cells modulate stomatal apertures in response to hormones, metabolic demands and environmental...
Kluge C, Lamkemeyer P, Tavakoli N, Golldack D, Kandlbinder A, Dietz K-J. cDNA cloning of 12 subunits...
The plasma membrane H+-ATPase couples ATP hydrolysis to proton transport, thereby establishing the d...
In Nicotiana plumbaginifolia, plasma membrane H(+)-ATPases (PMAs) are encoded by a gene family of ni...
Genomic and cDNA clones for the three members of a gene subfamily (pma) encoding a plasma membrane H...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plasma membrane H(+)-ATPase builds up a pH and potential gradient across the plasma membrane, th...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
A proton-pumping ATPase is present in the plasma membrane of plant cells where it sustains transport...
cDNA clones from Nicotiana plumbaginifolia have been isolated by hybridization to a yeast H+-ATPase ...
pma4 is the major plasma membrane H+-ATPase gene in Nicotiana plumbaginifolia. To study its physiolo...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
Transport of many ions and metabolites in the plant cell depends on the plasma membrane H +-ATPase, ...
A gene (aha9) for a plasma membrane H(+)-ATPase was isolated from an Arabidopsis thaliana genomic li...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
Guard cells modulate stomatal apertures in response to hormones, metabolic demands and environmental...
Kluge C, Lamkemeyer P, Tavakoli N, Golldack D, Kandlbinder A, Dietz K-J. cDNA cloning of 12 subunits...
The plasma membrane H+-ATPase couples ATP hydrolysis to proton transport, thereby establishing the d...
In Nicotiana plumbaginifolia, plasma membrane H(+)-ATPases (PMAs) are encoded by a gene family of ni...
Genomic and cDNA clones for the three members of a gene subfamily (pma) encoding a plasma membrane H...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plasma membrane H(+)-ATPase builds up a pH and potential gradient across the plasma membrane, th...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
A proton-pumping ATPase is present in the plasma membrane of plant cells where it sustains transport...
cDNA clones from Nicotiana plumbaginifolia have been isolated by hybridization to a yeast H+-ATPase ...
pma4 is the major plasma membrane H+-ATPase gene in Nicotiana plumbaginifolia. To study its physiolo...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
Transport of many ions and metabolites in the plant cell depends on the plasma membrane H +-ATPase, ...
A gene (aha9) for a plasma membrane H(+)-ATPase was isolated from an Arabidopsis thaliana genomic li...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
Guard cells modulate stomatal apertures in response to hormones, metabolic demands and environmental...
Kluge C, Lamkemeyer P, Tavakoli N, Golldack D, Kandlbinder A, Dietz K-J. cDNA cloning of 12 subunits...