In this study, a strain of Anabaena flos‐aquae UTEX 1444 was cultivated in six different concentrations of iron (III). Cultures were extracted with organic solvents and analyzed using our dereplication strategy, based on the combined use of high‐resolution tandem mass spectrometry and molecular networking. The analysis showed the presence of the siderophores’ family, named synechobactins, only in the zero iron (III) treatment culture. Seven unknown synechobactin variants were present in the extract, and their structures have been determined by a careful HRMS/MS analysis. This study unveils the capability of Anabaena flos‐aquae UTEX 1444 to produce a large array of siderophores and may be a suitable model organism for a sustainable scale‐up ...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
In this project I will explore iron uptake in the cyanobacterium Synechococcus 7002 sp. Particularly...
Iron is essential for life. It acts as an electron donor/acceptor in metabolic processes facilitated...
In this study, a strain of Anabaena flos‐aquae UTEX 1444 was cultivated in six different concentrati...
In response to Iron deprivation and in specific environmental conditions, the cyanobacteria Anabaena...
Siderophores are low-molecular-weight metal chelators that function in microbial iron uptake. As iro...
Iron (Fe) is an essential element in several fundamental cellular processes. Although present in hig...
In this thesis a genome mining approach including bioinformatic predictions of natural product biosy...
The cyanobacterium Anabaena sp. (PCC #6411) is known to produce the siderophore, schizokinen, in res...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Pseudomonas fluorescens has the ability to produce the siderophore pyoverdine, a biotechnologically ...
Motivation:Iron is an essential micronutrient in the metabolism of most microorganisms with low bioa...
Aim. The study of the siderophore synthesis by Pseudomonas genus bacteria. Methods. The siderophore ...
Nearly all life requires iron; however, under aerobic conditions, Fe(III) is nearly insoluble. To me...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
In this project I will explore iron uptake in the cyanobacterium Synechococcus 7002 sp. Particularly...
Iron is essential for life. It acts as an electron donor/acceptor in metabolic processes facilitated...
In this study, a strain of Anabaena flos‐aquae UTEX 1444 was cultivated in six different concentrati...
In response to Iron deprivation and in specific environmental conditions, the cyanobacteria Anabaena...
Siderophores are low-molecular-weight metal chelators that function in microbial iron uptake. As iro...
Iron (Fe) is an essential element in several fundamental cellular processes. Although present in hig...
In this thesis a genome mining approach including bioinformatic predictions of natural product biosy...
The cyanobacterium Anabaena sp. (PCC #6411) is known to produce the siderophore, schizokinen, in res...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Pseudomonas fluorescens has the ability to produce the siderophore pyoverdine, a biotechnologically ...
Motivation:Iron is an essential micronutrient in the metabolism of most microorganisms with low bioa...
Aim. The study of the siderophore synthesis by Pseudomonas genus bacteria. Methods. The siderophore ...
Nearly all life requires iron; however, under aerobic conditions, Fe(III) is nearly insoluble. To me...
Iron is an essential nutrient for virtually all life on earth. Bacteria often live in highly iron-li...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
In this project I will explore iron uptake in the cyanobacterium Synechococcus 7002 sp. Particularly...
Iron is essential for life. It acts as an electron donor/acceptor in metabolic processes facilitated...