Murakami Chiho, Tanaka Arowu R, Sato Yuichiro, Morimoto Kinjiro
Faculty of Pharmacy, Yasuda Women's University, 6-13-1 Yasuhigashi, Hiroshima City, Hiroshima Prefecture, 731-0153, Japan.
Biometals. 2024 Feb;37(1):223-232. doi: 10.1007/s10534-023-00544-3. Epub 2023 Oct 17.
Siderophores are iron chelators and low-molecular-weight compounds secreted by various microorganisms under low-iron conditions. Many microorganisms produce siderophores in the natural environment as iron is an essential element for many of them. CAS assays are widely used to detect siderophores in cultures of various microorganisms; however, it is necessary to improve their sensitivity for the efficient application to fastidious microorganisms. We developed a simple, high-throughput CAS assay employing a buffer-free CAS reagent and diluted growth medium (10% dR2A) in a 96-well microplate. Using a diluted growth medium in agar plates suitable for iron-restricted conditions supported siderophore production by microorganisms from activated sludge. A buffer-free CAS reagent combined with a diluted growth medium revealed that these microorganisms tended to produce more siderophores or iron chelators than microorganisms under iron-rich conditions. Moreover, this buffer-free CAS assay easily and efficiently detected not only siderophore production but also the growth of fastidious microorganisms.
铁载体是各种微生物在低铁条件下分泌的铁螯合剂和低分子量化合物。由于铁是许多微生物的必需元素,许多微生物在自然环境中都会产生铁载体。CAS分析法被广泛用于检测各种微生物培养物中的铁载体;然而,为了有效应用于苛求微生物,有必要提高其灵敏度。我们开发了一种简单的高通量CAS分析法,在96孔微孔板中使用无缓冲的CAS试剂和稀释的生长培养基(10% dR2A)。在适合缺铁条件的琼脂平板中使用稀释的生长培养基,支持活性污泥中的微生物产生铁载体。无缓冲的CAS试剂与稀释的生长培养基相结合表明,这些微生物比富铁条件下的微生物更容易产生更多的铁载体或铁螯合剂。此外,这种无缓冲的CAS分析法不仅能轻松有效地检测铁载体的产生,还能检测苛求微生物的生长。