Çam Sedat, Badıllı İsmail
Department of Biology, Faculty of Arts and Sciences, Harran University, Haliliye/Şanlıurfa, 63050, Turkey.
Folia Microbiol (Praha). 2024 Jun;69(3):613-624. doi: 10.1007/s12223-023-01101-8. Epub 2023 Oct 28.
Biofilm formation is an effective survival strategy of plant-associated microorganisms in hostile environments, so the application of biofilm-forming and exopolysaccharide (EPS)-producing beneficial microbes to plants has received more attention in recent years. This study examined the ability of biofilm and EPS production of Bacillus subtilis and Bacillus thuringiensis strains under different NaCl concentrations (0, 50, 100, 200, and 400 mmol/L), pH values (5.5, 6.5, 7.5, and 8.5), and phosphate levels (0, 25, 50, and 100 mmol/L at 0 and 400 mmol/L NaCl). B. subtilis BS2 and B. thuringiensis BS6/BS7 strains significantly increased biofilm formation in a similar pattern to EPS production under salt stress. B. subtilis BS2/BS3 enhanced biofilm production at slightly acidic pH with a lower EPS production but the other strains formed considerably more amount of biofilm and EPS at alkaline pH. Interestingly, higher levels of phosphate substantially decreased biofilm and EPS production at 0 mmol/L NaCl but increased biofilm formation at 400 mmol/L salt concentration. Overall, contrary to phosphate, salt and pH differently influenced biofilm and EPS production by Bacillus strains. EPS production contributed to biofilm formation to some extent under all the conditions tested. Some Bacillus strains produced more abundant biofilm under salt and pH stress, indicating their potential to form in vivo biofilms in rhizosphere and on plants, particularly under unfavorable conditions.
生物膜形成是植物相关微生物在恶劣环境中的一种有效生存策略,因此近年来将形成生物膜和产生胞外多糖(EPS)的有益微生物应用于植物受到了更多关注。本研究考察了枯草芽孢杆菌和苏云金芽孢杆菌菌株在不同NaCl浓度(0、50、100、200和400 mmol/L)、pH值(5.5、6.5、7.5和8.5)以及磷酸盐水平(在0和400 mmol/L NaCl条件下分别为0、25、50和100 mmol/L)下形成生物膜和产生EPS的能力。枯草芽孢杆菌BS2和苏云金芽孢杆菌BS6/BS7菌株在盐胁迫下以与EPS产生相似的模式显著增加了生物膜的形成。枯草芽孢杆菌BS2/BS3在微酸性pH条件下增强了生物膜的产生,EPS产生较低,但其他菌株在碱性pH条件下形成了更多的生物膜和EPS。有趣的是,较高水平的磷酸盐在0 mmol/L NaCl时显著降低了生物膜和EPS的产生,但在400 mmol/L盐浓度下增加了生物膜的形成。总体而言,与磷酸盐相反,盐和pH对芽孢杆菌菌株生物膜和EPS产生的影响不同。在所有测试条件下,EPS产生在一定程度上促进了生物膜的形成。一些芽孢杆菌菌株在盐和pH胁迫下产生了更丰富的生物膜,表明它们在根际和植物上形成体内生物膜的潜力,特别是在不利条件下。