Institute of Microbiology, Department of Applied Microbiology, University of Greifswald, Greifswald, Germany.
J Basic Microbiol. 2013 Jun;53(6):509-17. doi: 10.1002/jobm.201100443. Epub 2012 Sep 7.
Expression of phenol oxidases (PO) in bacteria is often observed during physiological and morphological changes; in the nitrogen-fixing strain Azotobacter chroococcum SBUG 1484, it is accompanied by the formation of encysted cells and melanin. Herein, we studied the effects of copper and the depletion of the nitrogenase-relevant metals molybdenum and iron on physiological characteristics such as culture pigmentation, release of ortho-dihydroxylated melanin precursors, and expression of PO activity in A. chroococcum. Biomass production and melanogenic appearance were directly affected by the depletion of either iron or molybdenum, or in the absence of both metals. Only nitrogen-fixing cells growing in the presence of both metals and cultures supplemented with iron (molybdenum starved) showed the ability to produce an intensively brown-black melanin pigment typically associated with A. chroococcum. Accordingly, PO production was only detected in the presence of both metals and in iron-supplemented cultures starved of molybdenum. The total amount of catecholate siderophores produced by nitrogen-fixing melanogenic cells was considerably higher than in cultures starved of metal ions. Induction of enhanced PO activity was stimulated by additional copper sulfate, possibly related to cellular processes involved in the detoxification of this particular metal, and revealed distinct release of the ortho-dihydroxylated melanin precursors catechol and 3,4-dihydroxybenzoic acid.
细菌中酚氧化酶(PO)的表达通常在生理和形态变化过程中观察到;在固氮菌株 Azotobacter chroococcum SBUG 1484 中,它伴随着囊胞细胞和黑色素的形成。在此,我们研究了铜以及固氮相关金属钼和铁的耗竭对 A. chroococcum 的生理特性的影响,如培养物色素沉着、邻二羟基化黑色素前体的释放以及 PO 活性的表达。生物量的产生和黑色素的形成外观直接受到铁或钼的耗竭或两种金属都不存在的影响。只有在两种金属存在且补充铁(钼饥饿)的固氮细胞中生长的细胞才具有产生与 A. chroococcum 相关的深棕色黑色素色素的能力。因此,只有在存在两种金属和补充铁但缺乏钼的培养物中才能检测到 PO 的产生。固氮产黑色素细胞产生的儿茶酸盐铁载体总量明显高于金属离子饥饿的培养物。外加硫酸铜可刺激增强的 PO 活性,可能与涉及该特定金属解毒的细胞过程有关,并显示出邻二羟基化黑色素前体儿茶酚和 3,4-二羟基苯甲酸的明显释放。