Mycobacterium neoaurum is a soil saprophyte and obligate aerobic bacterium. This group of mycobacterium is relatively fast-growing. They form colonies on nutrient agar at 37ºC within 3 – 4 days. In natural soil habitats, bioavailability of iron is limited. To facilitate iron uptake, most mycobacteria produce siderophores. One example is exochelin, which is extracellular and water-soluble. In this report, the production of exochelin in M. neoaurum was induced in iron-deficiency, but repressed under iron-sufficiency growth conditions. It is however not induced under zinc-deficiency growth conditions. The growth of this mycobacterium was correlated with exochelin secretion under iron-deficiency culture conditions. When M. neoaurum was ...
Abstract: Previous study demonstrated that a Mesorhizobium loti strain can use the siderophore defer...
Many drugs are hindered in the penetration of the mycobacterial cell envelope and the access to intr...
<p><b>Copyright information:</b></p><p>Taken from "The role of iron in biofilm formation: the exoch...
Mycobacterium neoaurum is a soil saprophyte and obligate aerobic bacterium. This group of mycobacter...
Mycobacteria secrete the siderophore exochelin when grown under iron-limiting conditions. In order t...
Mycobacterium tuberculosis, the primary agent of tuberculosis, must acquire iron from the host to ca...
Pathogenic mycobacteria must acquire iron in the host in order to multiply and cause disease. To do ...
To multiply and cause disease in the host, Mycobacterium tuberculosis must acquire iron from the ext...
Mycobacterium avium secretes iron-binding siderophores called exochelins. The exochelins from M. avi...
The research in this thesis is concerned with the identification of the envelope proteins involved i...
AbstractBackground: Siderophores are compounds produced by bacteria to acquire iron. Exochelin MN, t...
Many species of mycobacteria form structured biofilm communities at liquid-air interfaces and on sol...
To gain a better understanding of the role of iron in the pathogenesis of tuberculosis, the growth ...
The role of iron in Mycobacterium smegmatis biofilm formation: the exochelin siderophore is essentia...
Many bacteria rely on siderophores to extract iron from the environment. However, acquisition of iro...
Abstract: Previous study demonstrated that a Mesorhizobium loti strain can use the siderophore defer...
Many drugs are hindered in the penetration of the mycobacterial cell envelope and the access to intr...
<p><b>Copyright information:</b></p><p>Taken from "The role of iron in biofilm formation: the exoch...
Mycobacterium neoaurum is a soil saprophyte and obligate aerobic bacterium. This group of mycobacter...
Mycobacteria secrete the siderophore exochelin when grown under iron-limiting conditions. In order t...
Mycobacterium tuberculosis, the primary agent of tuberculosis, must acquire iron from the host to ca...
Pathogenic mycobacteria must acquire iron in the host in order to multiply and cause disease. To do ...
To multiply and cause disease in the host, Mycobacterium tuberculosis must acquire iron from the ext...
Mycobacterium avium secretes iron-binding siderophores called exochelins. The exochelins from M. avi...
The research in this thesis is concerned with the identification of the envelope proteins involved i...
AbstractBackground: Siderophores are compounds produced by bacteria to acquire iron. Exochelin MN, t...
Many species of mycobacteria form structured biofilm communities at liquid-air interfaces and on sol...
To gain a better understanding of the role of iron in the pathogenesis of tuberculosis, the growth ...
The role of iron in Mycobacterium smegmatis biofilm formation: the exochelin siderophore is essentia...
Many bacteria rely on siderophores to extract iron from the environment. However, acquisition of iro...
Abstract: Previous study demonstrated that a Mesorhizobium loti strain can use the siderophore defer...
Many drugs are hindered in the penetration of the mycobacterial cell envelope and the access to intr...
<p><b>Copyright information:</b></p><p>Taken from "The role of iron in biofilm formation: the exoch...