Department of Biology, Faculty of Arts and Sciences, Harran University, Haliliye, Şanlıurfa, 63050, Turkey.
Arch Microbiol. 2023 Feb 12;205(3):87. doi: 10.1007/s00203-023-03428-9.
Inoculation of agriculturally important biofilms to plants under stress conditions has been of great interest in recent years. Therefore, in this study, biofilm- and exopolysaccharide (EPS)-forming ability of Azotobacter spp. was examined under different temperatures, NaCl concentrations, and phosphate levels. Azotobacter strains formed varying levels of biofilm and EPS depending on the tested factors. The pattern of biofilm formation was similar to that of EPS production under the conditions tested. Biofilm and EPS production at 28 °C was consistently higher than at either 18 or 37 °C. Biofilm production significantly increased in A. chroococcum strains (SBS2, SBS4, and SBS12) and A. vinelandii SBS6 with increasing salinity. Furthermore, a strong negative correlation was observed between biofilm or EPS production and increasing phosphate concentrations. Higher phosphate concentrations decreased biofilm and EPS production. In conclusion, contrary to temperature and phosphate effect, salinity differently affected biofilm and EPS production by Azotobacter strains.
近年来,在胁迫条件下将具有农业重要性的生物膜接种到植物中引起了极大的关注。因此,在这项研究中,研究了固氮菌属在不同温度、NaCl 浓度和磷酸盐水平下形成生物膜和胞外多糖 (EPS) 的能力。固氮菌属菌株根据测试因素形成不同水平的生物膜和 EPS。在测试条件下,生物膜形成的模式与 EPS 生产的模式相似。28°C 时的生物膜和 EPS 产量始终高于 18°C 或 37°C。随着盐度的增加,A. chroococcum 菌株 (SBS2、SBS4 和 SBS12) 和 A. vinelandii SBS6 的生物膜产量显著增加。此外,还观察到生物膜或 EPS 产量与磷酸盐浓度增加之间存在强烈的负相关关系。较高的磷酸盐浓度会降低生物膜和 EPS 的产量。总之,与温度和磷酸盐的影响相反,盐度对固氮菌属菌株的生物膜和 EPS 产量有不同的影响。