Polar auxin transport is dependent on the family of PIN-formed proteins (PINs), which are membrane transporters of anionic indole-3-acetic acid (IAA−). It is assumed that polar auxin transport may be essential in the development and meristematic activity maintenance of Medicago truncatula (M. truncatula) root nodules. However, little is known about the involvement of specific PIN proteins in M. truncatula nodulation. Using real-time quantitative PCR, we analyzed the expression patterns of all previously identified MtPIN genes and compared them between root nodules and root tips of M. truncatula. Our results demonstrated significant differences in the expression level of all 11 genes (MtPIN1–MtPIN11) between examined organs. Interestingly, M...
Cytokinins are essential for legume plants to establish a nitrogen-fixing symbiosis with rhizobia. R...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
MtN5 is a non-specific lipid transfer protein expressed at a very early phase of the rhizobial symbi...
Polar auxin transport is dependent on the family of PIN-formed proteins (PINs), which are membrane t...
The symbiosis between legumes and rhizobia results in the development of a new plant organ, the nodu...
Auxins are postulated to be one of the pivotal factors in nodulation. However, their transporters in...
The phytohormone auxin is the key factor in plant morphogenesis. Being unevenly distributed in plant...
The development of root nodules leads to an increased auxin response in early nodule primordia, whic...
Background: Auxin/indoleacetic acid (Aux/IAA) genes, coding a family of short-lived nuclear proteins...
Subtilisin-like serine protease (MtSBT), serine carboxypeptidase (MtSCP), MtN5, non-specific lipid t...
The PIN-FORMED (PIN) proteins are secondary transporters acting in the efflux of the plant signal mo...
Subtilisin-like serine protease (MtSBT), serine carboxypeptidase (MtSCP), MtN5, non-specific lipid t...
We studied the ethylene-insensitive, hypernodulating mutant, sickle (skl), to investigate the intera...
The plant hormone auxin is a primary regulator of plant growth and development that influences cell ...
Phytohormone auxin and its directional distribution plays an essential role in the regulation of num...
Cytokinins are essential for legume plants to establish a nitrogen-fixing symbiosis with rhizobia. R...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
MtN5 is a non-specific lipid transfer protein expressed at a very early phase of the rhizobial symbi...
Polar auxin transport is dependent on the family of PIN-formed proteins (PINs), which are membrane t...
The symbiosis between legumes and rhizobia results in the development of a new plant organ, the nodu...
Auxins are postulated to be one of the pivotal factors in nodulation. However, their transporters in...
The phytohormone auxin is the key factor in plant morphogenesis. Being unevenly distributed in plant...
The development of root nodules leads to an increased auxin response in early nodule primordia, whic...
Background: Auxin/indoleacetic acid (Aux/IAA) genes, coding a family of short-lived nuclear proteins...
Subtilisin-like serine protease (MtSBT), serine carboxypeptidase (MtSCP), MtN5, non-specific lipid t...
The PIN-FORMED (PIN) proteins are secondary transporters acting in the efflux of the plant signal mo...
Subtilisin-like serine protease (MtSBT), serine carboxypeptidase (MtSCP), MtN5, non-specific lipid t...
We studied the ethylene-insensitive, hypernodulating mutant, sickle (skl), to investigate the intera...
The plant hormone auxin is a primary regulator of plant growth and development that influences cell ...
Phytohormone auxin and its directional distribution plays an essential role in the regulation of num...
Cytokinins are essential for legume plants to establish a nitrogen-fixing symbiosis with rhizobia. R...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
MtN5 is a non-specific lipid transfer protein expressed at a very early phase of the rhizobial symbi...