Iron is an essential micronutrient for plants. Little is know about how iron is loaded in embryo during seed development. In this article we used Perls/DAB staining in order to reveal iron localization at the cellular and subcellular levels in different Brassicaceae seed species. In dry seeds of Brassica napus, Nasturtium officinale, Lepidium sativum, Camelina sativa, and Brassica oleracea iron localizes in vacuoles of cells surrounding provasculature in cotyledons and hypocotyl. Using B. napus and N. officinale as model plants we determined where iron localizes during seed development. Our results indicate that iron is not detectable by Perls/DAB staining in heart stage embryo cells. Interestingly, at torpedo development stage iron localiz...
International audienceIron is an essential micronutrient for humans and other organisms. Its deficie...
Dans ce travail de thèse, nous avons étudié le transport du fer dans la plante, en nous focalisant s...
Healthy plant growth depends on a balanced metal homeostasis at the organ, tissue and sub-cellular l...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Background: Iron is an important micronutrient for all living organisms. Almost 25% of the world pop...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceMany central metabolic processes require iron as a cofactor and take place in ...
One third of people suffer from anemia, with iron (Fe) deficiency being the most common reason. The ...
WOS: 000475430000002PubMed ID: 31354774One third of people suffer from anemia, with iron (Fe) defici...
Many central metabolic processes require iron (Fe) as a cofactor and take place in specific subcellu...
Iron (Fe) is one of the most abundant elements on earth, but its limited bioavailability poses a maj...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceIron is an essential micronutrient for humans and other organisms. Its deficie...
Dans ce travail de thèse, nous avons étudié le transport du fer dans la plante, en nous focalisant s...
Healthy plant growth depends on a balanced metal homeostasis at the organ, tissue and sub-cellular l...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
Seeds accumulate iron during embryo maturation stages of embryogenesis. Using Arabidopsis thaliana a...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Background: Iron is an important micronutrient for all living organisms. Almost 25% of the world pop...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceMany central metabolic processes require iron as a cofactor and take place in ...
One third of people suffer from anemia, with iron (Fe) deficiency being the most common reason. The ...
WOS: 000475430000002PubMed ID: 31354774One third of people suffer from anemia, with iron (Fe) defici...
Many central metabolic processes require iron (Fe) as a cofactor and take place in specific subcellu...
Iron (Fe) is one of the most abundant elements on earth, but its limited bioavailability poses a maj...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceIron is an essential micronutrient for humans and other organisms. Its deficie...
Dans ce travail de thèse, nous avons étudié le transport du fer dans la plante, en nous focalisant s...
Healthy plant growth depends on a balanced metal homeostasis at the organ, tissue and sub-cellular l...