Khokhlova Galina, Zvonarev Anton, Ostroumov Vladimir, Tikhonov Konstantin, Teplonogova Maria, Kulakovskaya Tatiana, Vainshtein Mikhail
Skryabin Institute of Biochemistry and Physiology of Microorganisms RAS, Federal Research Center "Pushchino Scientific Center for Biological Research of Russian Academy of Sciences", Pushchino, 142290, Russia.
Institute of Physical-Chemical and Biological Problems of Soil Science RAS, Federal Research Center "Pushchino Scientific Center for Biological Research of Russian Academy of Sciences", Pushchino, 142290, Russia.
Folia Microbiol (Praha). 2025 Sep 1. doi: 10.1007/s12223-025-01323-y.
The ability of bacteria to absorb metal ions and phosphates allows the development of processes for bioremediation of the environment and wastewater from heavy metals and excess phosphates. In this work, the ability of the "iron bacterium" Sphaerotilus montanus VKM B-2519 to remove manganese, iron, and phosphate from culture medium was studied. The bacterium removed Mn but not Fe from the culture medium during growth. At an initial concentration of 3 mmol/L Mn, about 40% of phosphate and no more than 10% of manganese remained in the medium after cultivation of S. montanus for the stationary stage. Inorganic polyphosphate did not contribute to the removal of phosphate by S. montanus. In the presence of excess Mn, S. montanus formed Mn(PO) as a precipitate. It was confirmed by both chemical analysis and EDX. In the presence of excess Mn, S. montanus secreted phosphorylated exopolysaccharide into the culture medium. The data suggested that S. montanus VKM B-2519 is a prospective species for developing phosphate and manganese removal and biological sedimentation of manganese phosphate.
细菌吸收金属离子和磷酸盐的能力使得开发用于环境生物修复以及去除重金属和过量磷酸盐废水的工艺成为可能。在这项工作中,研究了“铁细菌”蒙塔纳球衣菌VKM B - 2519从培养基中去除锰、铁和磷酸盐的能力。该细菌在生长过程中从培养基中去除了锰但未去除铁。在初始浓度为3 mmol/L锰的情况下,蒙塔纳球衣菌培养至稳定期后,培养基中约40%的磷酸盐和不超过10%的锰残留。无机多磷酸盐对蒙塔纳球衣菌去除磷酸盐没有贡献。在过量锰存在的情况下,蒙塔纳球衣菌形成了磷酸锰沉淀。化学分析和能谱分析(EDX)均证实了这一点。在过量锰存在的情况下,蒙塔纳球衣菌向培养基中分泌了磷酸化胞外多糖。数据表明,蒙塔纳球衣菌VKM B - 2519是开发去除磷酸盐和锰以及磷酸锰生物沉淀工艺的一个有前景的菌种。