Many bacteria produce siderophores to bind and take up Fe(III), an essential trace metal with extremely low solubility in oxygenated environments at circumneutral pH. The purple non‐sulfur bacterium Rhodopseudomonas palustris str. CGA009 is a metabolically versatile model organism with high iron requirements that is able to grow under aerobic and anaerobic conditions. Siderophore biosynthesis has been predicted by genomic analysis, however, siderophore structures were not identified. Here, we elucidate the structure of two novel siderophores from R. palustris : rhodopetrobactin A and B. Rhodopetrobactins are structural analogues of the known siderophore petrobactin in which the Fe chelating moieties are conserved, including two 3,4‐dihydrox...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Siderophores are low molecular weight, ferric ion specific chelating agents produced by microorganis...
siderophore biosynthetic operons that are responsible for synthesis of petrobactin and bacillibacti...
Nearly all bacteria require iron to function. Bio-available iron is quite limited in many environmen...
Nearly all bacteria require iron to function. Bio-available iron is quite limited in many environmen...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Summary The genus Rhodococcus belong to the order actinomycetes, which are gram-positive bacteria w...
Pseudomonas syringae pv. syringae B728a is known to produce the siderophore pyoverdine under iron-li...
Abstract Background Iron is essential for bacteria...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Siderophores are low molecular weight, ferric ion specific chelating agents produced by microorganis...
siderophore biosynthetic operons that are responsible for synthesis of petrobactin and bacillibacti...
Nearly all bacteria require iron to function. Bio-available iron is quite limited in many environmen...
Nearly all bacteria require iron to function. Bio-available iron is quite limited in many environmen...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Summary The genus Rhodococcus belong to the order actinomycetes, which are gram-positive bacteria w...
Pseudomonas syringae pv. syringae B728a is known to produce the siderophore pyoverdine under iron-li...
Abstract Background Iron is essential for bacteria...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Siderophores are low molecular weight, ferric ion specific chelating agents produced by microorganis...
siderophore biosynthetic operons that are responsible for synthesis of petrobactin and bacillibacti...