Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences, Saratov, Russia.
Folia Microbiol (Praha). 2012 Jan;57(1):5-10. doi: 10.1007/s12223-011-0074-5. Epub 2011 Dec 1.
A derivative of Azospirillum brasilense Sp245, Sp245.5, which spontaneously lost 85 and 120 MDa replicons upon the formation of a new megaplasmid, has been shown to produce a novel lipopolysaccharide and to lose Calcofluor-binding polysaccharides. As compared to Sp245, the derivative displays notably increased heavy metal tolerance. The phenotypes of Sp245 and Sp245.5 are characterized by the following minimal inhibitory concentrations (MICs) of heavy metals: 0.5 and 0.9 μmol l(-1) of Ag(+), 0.4 and 0.7 mmol l(-1) of Co(2+), 0.9 and 4.7 mmol l(-1) of Cu(2+), and 3.1 and 11.5 mmol l(-1) of Zn(2+), respectively. In Sp245, in the presence of a nonlethal concentration (0.625 μmol l(-1)) of the efflux pump inhibitor carbonyl cyanide m-chlorophenylhydrazone (CCCP), the MIC of cobalt, copper, and zinc drop 1.3- to 1.6-fold, but the low tolerance to silver is unaffected. In Sp245.5, CCCP does not affect cobalt tolerance, suppresses tolerance to copper and silver to the wild-type levels, and causes a 1.4-fold decrease in resistance to zinc. Therefore, significant elevation of heavy metal tolerance in Sp245.5 seems caused by the induction/overexpression of the proton-dependent efflux of certain metal ions. The novel cell surface and other unknown factors could also be responsible for the increased tolerance of A. brasilense Sp245.5 to heavy metals.
从自发形成新的大质粒而丢失 85 和 120 MDa 复制子的巴西固氮螺菌 Sp245 衍生而来的 Sp245.5 被证明能产生一种新型脂多糖并失去Calcofluor 结合多糖。与 Sp245 相比,该衍生物表现出明显增强的重金属耐受性。Sp245 和 Sp245.5 的表型特征为以下重金属的最小抑制浓度(MIC):0.5 和 0.9 μmol l(-1) 的 Ag(+)、0.4 和 0.7 mmol l(-1) 的 Co(2+)、0.9 和 4.7 mmol l(-1) 的 Cu(2+)和 3.1 和 11.5 mmol l(-1) 的 Zn(2+),分别。在 Sp245 中,在非致死浓度(0.625 μmol l(-1))的外排泵抑制剂羰基氰化物 m-氯苯腙(CCCP)存在下,钴、铜和锌的 MIC 下降 1.3-1.6 倍,但对银的低耐受性不受影响。在 Sp245.5 中,CCCP 不影响钴耐受性,抑制铜和银的耐受性至野生型水平,并导致锌的耐药性降低 1.4 倍。因此,Sp245.5 中重金属耐受性的显著提高似乎是由某些金属离子的质子依赖性外排的诱导/过表达引起的。新的细胞表面和其他未知因素也可能导致巴西固氮螺菌 Sp245.5 对重金属的耐受性增加。