Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing, 210037, China.
Curr Microbiol. 2020 Mar;77(3):388-395. doi: 10.1007/s00284-019-01835-0. Epub 2019 Dec 13.
A salt-tolerant microbe strain JYZ-SD2 was investigated to develop biological soil amendments to stimulate salix growth and acclimation in costal salt-affected soils. The salt tolerance mechanism of strain JYZ-SD2 was investigated by detecting the salt-tolerant growth characteristics, biofilm formation, ion distribution, secondary metabolites, and zymogram profiling. The strain was identified by physiological and biochemical characteristics (Biolog), 16S rDNA sequencing, and cry1/7/9 gene expressing. With increasing of NaCl concentration, strain JYZ-SD2 adapted to the increased osmotic pressure by prolonging the retardation period, slowing down the growth rate of the logarithmic phase, increasing spo0A gene expression, increasing biofilm formation, reducing Na uptake, and changing the expression of metabolites and intracellular soluble proteins. The results showed that strain JYZ-SD2 could be assigned to Bacillus cereus.
耐盐微生物菌株 JYZ-SD2 被研究开发生物土壤改良剂,以刺激柳属植物在沿海盐渍土壤中的生长和适应。通过检测耐盐生长特性、生物膜形成、离子分布、次生代谢物和同工酶谱分析,研究了菌株 JYZ-SD2 的耐盐机制。该菌株通过生理生化特性(Biolog)、16S rDNA 测序和 cry1/7/9 基因表达进行鉴定。随着 NaCl 浓度的增加,菌株 JYZ-SD2 通过延长延迟期来适应增加的渗透压,减缓对数生长期的生长速度,增加 spo0A 基因表达,增加生物膜形成,减少 Na 摄取,并改变代谢物和细胞内可溶性蛋白的表达。结果表明,菌株 JYZ-SD2 可归为解淀粉芽孢杆菌。