Cryz S J, Russell L M, Holmes R K
J Bacteriol. 1983 Apr;154(1):245-52. doi: 10.1128/jb.154.1.245-252.1983.
Mutants of Corynebacterium diphtheriae C7(beta) that are resistant to the inhibitory effects of iron on toxinogenesis were identified by their ability to form colonies surrounded by toxin-antitoxin halos on agar medium containing both antitoxin and a high concentration of iron. Chromosomal mutations were essential for the altered phenotypes of four independently isolated mutant strains. During growth in deferrated liquid medium containing various amounts of added iron, these mutants differed from wild-type C. diphtheriae C7(beta) in several ways. Their growth rates were slower under low-iron conditions and were stimulated to various degrees under high-iron conditions. The concentrations of iron at which optimal toxin production occurred were higher for the mutants than for wild-type C. diphtheriae C7(beta). Toxin production by the mutants during growth in low-iron medium occurred throughout the period of exponential growth at nearly constant rates that were proportional to the bacterial growth rates. In contrast, toxin production by wild-type C. diphtheriae C7(beta) in similar low-iron cultures occurred predominantly during the late exponential phase, when iron was a growth-limiting nutrient. Additional studies demonstrated that these mutants had severe defects in their transport systems for ferric iron. We propose that the altered regulation of toxinogenesis by iron in our mutants was caused by the severe defects in their iron transport systems. As a consequence, the mutants exhibited a low-iron phenotype during growth under conditions that permitted wild-type C. diphtheriae C7(beta) to exhibit a high-iron phenotype.
通过在含有抗毒素和高浓度铁的琼脂培养基上形成被毒素 - 抗毒素晕圈包围的菌落的能力,鉴定出对白喉棒状杆菌C7(β)的铁对毒素产生抑制作用具有抗性的突变体。染色体突变对于四个独立分离的突变菌株的表型改变至关重要。在含有不同添加铁量的去铁液体培养基中生长期间,这些突变体在几个方面与野生型白喉棒状杆菌C7(β)不同。它们在低铁条件下的生长速率较慢,在高铁条件下受到不同程度的刺激。突变体产生最佳毒素的铁浓度高于野生型白喉棒状杆菌C7(β)。突变体在低铁培养基中生长期间的毒素产生在整个指数生长期以几乎恒定的速率发生,该速率与细菌生长速率成比例。相比之下,野生型白喉棒状杆菌C7(β)在类似的低铁培养物中的毒素产生主要发生在指数生长期后期,此时铁是生长限制营养素。进一步的研究表明,这些突变体在其三价铁转运系统中存在严重缺陷。我们认为,我们的突变体中铁对毒素产生的调节改变是由其铁转运系统中的严重缺陷引起的。因此,在允许野生型白喉棒状杆菌C7(β)表现出高铁表型的条件下生长期间,突变体表现出低铁表型。