Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the genetics and evolution of metal hyperaccumulation in plants. We studied the population genetics and demographic history of this species to advance the understanding of among-population differences in metal hyperaccumulation and tolerance abilities. Sampling of seven to 30 plants was carried out in 62 sites in Western Europe. Genotyping was carried out using a combination of new chloroplast and nuclear neutral markers. A strong genetic structure was detected, allowing the definition of three genetic subunits. Subunits showed a good geographic coherence. Accordingly, distant metallicolous populations generally belonged to distinct subunits. Ap...
Forty-seven accessions of Noccaea and Thlaspi grown in the presence of Ni were phenotyped for leaf m...
Background and Aims The pseudometallophyte Noccaea caerulescens is an excellent model to study evolu...
* Thlaspi caerulescens (Brassicaceae) is a promising plant model with which to study heavy metal hyp...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
International audienceNoccaea caerulescens (Brassicaceae) is a pseudometallophyte species occurring ...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Metal hyperaccumulation in plants is an ecological trait whose biological significance remains debat...
Metal hyperaccumulation in plants is an ecological trait whose biological significance remains debat...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Noccaea caerulescens is the only known Zn/Cd/Ni hyperaccumulator. The Ganges accession (2n = 14) has...
<p><em>Noccaea caerulescens </em>is the only known Zn/Cd/Ni hyperaccumulator. The Ganges accession (...
[eng] The Southern slope of the Pyrenees is the meridional limit for the distribution of several Noc...
Forty-seven accessions of Noccaea and Thlaspi grown in the presence of Ni were phenotyped for leaf m...
Background and Aims The pseudometallophyte Noccaea caerulescens is an excellent model to study evolu...
* Thlaspi caerulescens (Brassicaceae) is a promising plant model with which to study heavy metal hyp...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
Noccaea caerulescens (Brassicaceae) is a major pseudometallophyte model for the investigation of the...
International audienceNoccaea caerulescens (Brassicaceae) is a pseudometallophyte species occurring ...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Metal hyperaccumulation in plants is an ecological trait whose biological significance remains debat...
Metal hyperaccumulation in plants is an ecological trait whose biological significance remains debat...
Metal hyperaccumulation is an uncommon but highly distinctive adaptation found in certain plants tha...
Noccaea caerulescens is the only known Zn/Cd/Ni hyperaccumulator. The Ganges accession (2n = 14) has...
<p><em>Noccaea caerulescens </em>is the only known Zn/Cd/Ni hyperaccumulator. The Ganges accession (...
[eng] The Southern slope of the Pyrenees is the meridional limit for the distribution of several Noc...
Forty-seven accessions of Noccaea and Thlaspi grown in the presence of Ni were phenotyped for leaf m...
Background and Aims The pseudometallophyte Noccaea caerulescens is an excellent model to study evolu...
* Thlaspi caerulescens (Brassicaceae) is a promising plant model with which to study heavy metal hyp...