Zhang Wenrui, Zhou Yuhao, Jia Jingru, Lu Yinjun, Zhang Haoqiang
College of Forestry, Northwest A&F University.
Microbes Environ. 2024;39(3). doi: 10.1264/jsme2.ME24001.
The Loess Plateau is one of the key areas for soil and water erosion control in China. Planting vegetation, such as Robinia pseudoacacia, is one of the mainstream methods to prevent soil and water erosion. However, the combination of abundant calcium ions and phosphate in the soil of the Loess Plateau limits the phosphorus nutrition of plants. In the present study, soil samples were collected under the R. pseudoacacia forest, from which two PSB strains with efficient phosphate solubilization capacities, named PSB2 and PSB7, were isolated and screened. The dissolved phosphate concentrations of their culture media were 9.68-fold and 11.61-fold higher, respectively, than that of the control group. After identification, PSB2 was classified as Pseudomonas and PSB7 as Inquilinus. This is the first time that Inquilinus has been isolated as a PSB from calcareous soil in the Loess Plateau. We then investigated the effects of different growth conditions on their phosphate solubilization capacities. Both strains effectively utilized glucose and ammonium nitrogen while maintaining high phosphate solubilization efficiency. In addition, PSB2 preferred to survive under neutral conditions and PSB7 under acidic conditions. Pot experiments indicated that the inoculation with PSB7 significantly increased the phosphorus content in the roots of R. pseudoacacia. These results imply the potential of this PSB as a phosphorus biofertilizer for R. pseudoacacia, which may be beneficial for soil and water management on the Loess Plateau.
黄土高原是中国水土流失治理的重点区域之一。种植植被,如刺槐,是防止水土流失的主流方法之一。然而,黄土高原土壤中丰富的钙离子和磷酸盐结合限制了植物的磷营养。在本研究中,采集了刺槐林下的土壤样本,从中分离筛选出两株具有高效解磷能力的解磷细菌(PSB)菌株,分别命名为PSB2和PSB7。它们培养基中的溶解磷浓度分别比对照组高9.68倍和11.61倍。经鉴定,PSB2被归类为假单胞菌属,PSB7被归类为寄居菌属。这是首次从黄土高原石灰性土壤中分离出寄居菌属作为解磷细菌。然后,我们研究了不同生长条件对它们解磷能力的影响。两株菌株都能有效利用葡萄糖和铵态氮,同时保持较高的解磷效率。此外,PSB2在中性条件下更易存活,PSB7在酸性条件下更易存活。盆栽试验表明,接种PSB7显著提高了刺槐根系中的磷含量。这些结果表明这种解磷细菌作为刺槐磷生物肥料的潜力,这可能有利于黄土高原的水土管理。