International audienceIn most plant cell types, the chloroplast represents the largest sink for iron, which is both essential for chloroplast metabolism and prone to cause oxidative damage. Here, we show that to buffer the potentially harmful effects of iron, besides ferritins for storage, the chloroplast is equipped with specific iron transporters that respond to iron toxicity by removing iron from the chloroplast. We describe two transporters of the YELLOW STRIPE1-LIKE family from Arabidopsis thaliana, YSL4 and YSL6, which are likely to fulfill this function. Knocking out both YSL4 and YSL6 greatly reduces the plant's ability to cope with excess iron. Biochemical and immunolocalization analyses showed that YSL6 resides in the chloroplast ...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceIn most plant cell types, the chloroplast represents the largest sink for iron...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
In chloroplasts, the transition metals iron and copper play an essential role in photosynthetic elec...
Here, we describe two members of the Arabidopsis (Arabidopsis thaliana) Yellow Stripe-Like (YSL) fam...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
Photosynthesis, heme biosynthesis, and Fe-S cluster assembly all take place in the chloroplast, and ...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
International audienceIn most plant cell types, the chloroplast represents the largest sink for iron...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
In chloroplasts, the transition metals iron and copper play an essential role in photosynthetic elec...
Here, we describe two members of the Arabidopsis (Arabidopsis thaliana) Yellow Stripe-Like (YSL) fam...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
Iron is one of the most important micronutrients used by living organisms. Iron is frequently a limi...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
Photosynthesis, heme biosynthesis, and Fe-S cluster assembly all take place in the chloroplast, and ...
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically indu...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
International audienceDeciphering cellular iron (Fe) homeostasis requires having access to both quan...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...