An investigation was carried out to assess the effect of nitrate supply on the root plasma membrane (PM) H+-ATPase of etiolated maize (Zea mays L.) seedlings grown in hydroponics. The treatment induced higher uptake rates of the anion and the expression of a putative high-affinity nitrate transporter gene (ZmNRT2.1), the first to be identified in maize. Root PM H+-ATPase activity displayed a similar time-course pattern as that of net nitrate uptake and investigations were carried out to determine which of the two isoforms reported to date in maize, MHA1 and 2, responded to the treatment. MHA1 was not expressed under the conditions analysed. Genome analysis revealed that MHA2, described as the most abundant form in all maize tissues, was not...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
A full-length cDNA encoding a putative high-affinity nitrate transporter (ZmNrt2.2) from maize was i...
Induction of nitrate uptake in maize roots: expression of a putative high-af®nity nitrate transporte...
Two maize genotypes differently responsive to nitrogen availability were characterized for their eff...
After a period of nitrogen deprivation, maize seedlings were resupplied with nitrate, and the proces...
Plasma membrane H+-ATPase was studied in maize (Zea mays L.) roots induced for NO3 - uptake. Membran...
Background: The mechanisms by which nitrate is transported into the roots have been characterized bo...
Water and nitrogen are essential for plant growth and development. In many plants, the soil nitrogen...
The induction, i.e., the rapid increase of nitrate ([Formula: see text]) uptake following the exposu...
Coumarin is one of the simplest plant secondary metabolites, widely distributed in the plant kingdom...
Previous studies with intact maize plants have shown an apparent induction of nitrate uptake capacit...
The plasma membrane (PM) H+-ATPase has been proposed to play important transport and regulatory role...
Nitrate is an essential nutrient for plant growth. Nitrate acquisition by roots and its intercellula...
The induction, i.e., the rapid increase of nitrate (NO-3) uptake following the exposure of roots to ...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
A full-length cDNA encoding a putative high-affinity nitrate transporter (ZmNrt2.2) from maize was i...
Induction of nitrate uptake in maize roots: expression of a putative high-af®nity nitrate transporte...
Two maize genotypes differently responsive to nitrogen availability were characterized for their eff...
After a period of nitrogen deprivation, maize seedlings were resupplied with nitrate, and the proces...
Plasma membrane H+-ATPase was studied in maize (Zea mays L.) roots induced for NO3 - uptake. Membran...
Background: The mechanisms by which nitrate is transported into the roots have been characterized bo...
Water and nitrogen are essential for plant growth and development. In many plants, the soil nitrogen...
The induction, i.e., the rapid increase of nitrate ([Formula: see text]) uptake following the exposu...
Coumarin is one of the simplest plant secondary metabolites, widely distributed in the plant kingdom...
Previous studies with intact maize plants have shown an apparent induction of nitrate uptake capacit...
The plasma membrane (PM) H+-ATPase has been proposed to play important transport and regulatory role...
Nitrate is an essential nutrient for plant growth. Nitrate acquisition by roots and its intercellula...
The induction, i.e., the rapid increase of nitrate (NO-3) uptake following the exposure of roots to ...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
Cadmium (Cd) detoxification involves glutathione and phytochelatins biosynthesis: the higher need of...
A full-length cDNA encoding a putative high-affinity nitrate transporter (ZmNrt2.2) from maize was i...