Radiocaesium enters the food chain when plants absorb it from soil, in a process that is strongly dependent on soil properties and plant and microbial species. Among the microbial species, arbuscular mycorrhizal (AM) fungi are obligate symbionts that colonize the root cortex of many plants and develop an extraradical mycelial (ERM) network that ramifies in the soil. Despite the well-known involvement of this ERM network in mineral nutrition and uptake of some heavy metals, only limited data are available on its role in radiocaesium transport in plants. We used root-organ culture to demonstrate that the ERM of the AM fungus Glomus lamellosum can take up, possibly accumulate and unambiguously translocate radiocaesium from a 137Cs-labelled syn...
Uranium (U) uptake and translocation by the arbuscular mycorrhizal (AM) fungus Glomus intraradices w...
Societal Impact Statement Industrial activity has left a legacy of pollution by radionuclides and he...
This study aimed to quantify and compare U-233 and P-33 uptake and translocation by hyphae of the ar...
The capacity of arbuscular mycorrhizal (AM) fungi to take up and translocate radiocaesium (Cs) to th...
This review summarizes current knowledge on the contribution of mycorrhizal fungi to radiocesium imm...
Numerous soils have been contaminated by radiocaesium (Cs) as a result of nuclear weapon testing and...
Radiocesium (Cs) is released in the environment from weapon testing and accidents such as the Cherno...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
The role of arbuscular mycorrhizal fungi (AMF) in plant radiocesium uptake and accumulation remains ...
International audienceThe beneficial role of mycorrhizal association on plant nutrition and water su...
International audienceThe beneficial role of mycorrhizal association on plant nutrition and water su...
Summary Common mycorrhizal networks of arbuscular mycorrhizal fungi have been reported to transfer c...
Common mycorrhizal networks of arbuscular mycorrhizal fungi have been reported to transfer cesium be...
Uranium (U) uptake and translocation by the arbuscular mycorrhizal (AM) fungus Glomus intraradices w...
Societal Impact Statement Industrial activity has left a legacy of pollution by radionuclides and he...
This study aimed to quantify and compare U-233 and P-33 uptake and translocation by hyphae of the ar...
The capacity of arbuscular mycorrhizal (AM) fungi to take up and translocate radiocaesium (Cs) to th...
This review summarizes current knowledge on the contribution of mycorrhizal fungi to radiocesium imm...
Numerous soils have been contaminated by radiocaesium (Cs) as a result of nuclear weapon testing and...
Radiocesium (Cs) is released in the environment from weapon testing and accidents such as the Cherno...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
Because plants significantly affect radionuclides (RN) cycling and further dispersion into the biosp...
The role of arbuscular mycorrhizal fungi (AMF) in plant radiocesium uptake and accumulation remains ...
International audienceThe beneficial role of mycorrhizal association on plant nutrition and water su...
International audienceThe beneficial role of mycorrhizal association on plant nutrition and water su...
Summary Common mycorrhizal networks of arbuscular mycorrhizal fungi have been reported to transfer c...
Common mycorrhizal networks of arbuscular mycorrhizal fungi have been reported to transfer cesium be...
Uranium (U) uptake and translocation by the arbuscular mycorrhizal (AM) fungus Glomus intraradices w...
Societal Impact Statement Industrial activity has left a legacy of pollution by radionuclides and he...
This study aimed to quantify and compare U-233 and P-33 uptake and translocation by hyphae of the ar...