AbstractFerredoxins are electron shuttles harboring iron–sulfur clusters which participate in oxido-reductive pathways in organisms displaying very different lifestyles. Ferredoxin levels decline in plants and cyanobacteria exposed to environmental stress and iron starvation. Flavodoxin is an isofunctional flavoprotein present in cyanobacteria and algae (not plants) which is induced and replaces ferredoxin under stress. Expression of a chloroplast-targeted flavodoxin in plants confers tolerance to multiple stresses and iron deficit. We discuss herein the bases for functional equivalence between the two proteins, the reasons for ferredoxin conservation despite its susceptibility to aerobic stress and for the loss of flavodoxin as an adaptive...
Plant tolerance to high light and oxidative stress is increased by overexpression of the photosynthe...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
Flavodoxin is a small electron-transfer protein capable of replacing ferredoxin during periods of Fe...
AbstractFerredoxins are electron shuttles harboring iron–sulfur clusters which participate in oxido-...
Ferredoxins are electron shuttles harbouring iron–sulfur clusters that connect multiple oxido-reduct...
Flavodoxins are electron carrier flavoproteins present in bacteria and photosynthetic microorganisms...
Environmental stresses and iron limitation are the primary causes of crop losses worldwide. Engineer...
Flavodoxin (Fld) plays a pivotal role in photosynthetic microorganisms as an alternative electron ca...
Oxidative stress and iron limitation represent the grim side of life in an oxygen-rich atmosphere. T...
cau for ferredoxin decline and restores electron delivery to productive routes, resulting in enhance...
AbstractOxidative stress in plants causes ferredoxin down-regulation and NADP+ shortage, over-reduct...
Oxidative stress and iron limitation represent the grim side of life in an oxygen-rich atmosphere. T...
Ferredoxins (Fed), occurring in most organisms, are small proteins that use their iron-sulfur cluste...
Ferredoxin (Fd) is the major iron-containing protein in photosynthetic organisms and is central to r...
With the notable exception of angiosperms, all phototrophs contain different sets of flavodiiron pro...
Plant tolerance to high light and oxidative stress is increased by overexpression of the photosynthe...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
Flavodoxin is a small electron-transfer protein capable of replacing ferredoxin during periods of Fe...
AbstractFerredoxins are electron shuttles harboring iron–sulfur clusters which participate in oxido-...
Ferredoxins are electron shuttles harbouring iron–sulfur clusters that connect multiple oxido-reduct...
Flavodoxins are electron carrier flavoproteins present in bacteria and photosynthetic microorganisms...
Environmental stresses and iron limitation are the primary causes of crop losses worldwide. Engineer...
Flavodoxin (Fld) plays a pivotal role in photosynthetic microorganisms as an alternative electron ca...
Oxidative stress and iron limitation represent the grim side of life in an oxygen-rich atmosphere. T...
cau for ferredoxin decline and restores electron delivery to productive routes, resulting in enhance...
AbstractOxidative stress in plants causes ferredoxin down-regulation and NADP+ shortage, over-reduct...
Oxidative stress and iron limitation represent the grim side of life in an oxygen-rich atmosphere. T...
Ferredoxins (Fed), occurring in most organisms, are small proteins that use their iron-sulfur cluste...
Ferredoxin (Fd) is the major iron-containing protein in photosynthetic organisms and is central to r...
With the notable exception of angiosperms, all phototrophs contain different sets of flavodiiron pro...
Plant tolerance to high light and oxidative stress is increased by overexpression of the photosynthe...
The development of oxygenic photosynthesis by primordial cyanobacteria ~2.7 billion years ago led to...
Flavodoxin is a small electron-transfer protein capable of replacing ferredoxin during periods of Fe...