分离(微生物学)
细菌
化学
生物
土壤细菌
生物技术
微生物学
食品科学
表征(材料科学)
微生物
富集培养
微生物培养
生化工程
生物化学
作者
Huanhuan Jiang,Lu Chen,ShiYao Zeng,Xiangping Xu,Jieying Zhang,MinHua Liang,Jiamin Zhang,Shengnian Liang,JI Qianhua
标识
DOI:10.3389/fmicb.2025.1759460
摘要
Introduction Phosphate-solubilizing bacteria (PSB) that tolerate heavy metals may enhance phosphorus availability in contaminated soils and provide candidates for bio-based management. Methods PSB were isolated from farmland rhizosphere soil and screened on tricalcium phosphate medium. Soluble phosphorus (soluble P) was quantified in liquid culture using tricalcium phosphate, ferric phosphate, aluminum phosphate, and lecithin as insoluble phosphorus (insoluble P) sources. Pb/Cr tolerance was assessed by growth on metal-amended plates and minimum inhibitory concentration (MIC) assays, and six dominant isolates were identified by 16S rRNA gene sequencing. Results Eighteen PSB isolates were obtained. All strains solubilized tricalcium phosphate (2.82253.53 mg L -1 ) and ferric phosphate (6.24206.48 mg L -1 ); most also solubilized aluminum phosphate (13.0244.73 mg L -1 ), and 13 isolates solubilized lecithin (2.8230.84 mg L -1 ). The six strains able to grow at 6 mmol L -1 Pb or Cr were identified as Bacillus sp. (HY-1, HY-6), Bacillus subtilis (HY-3, HY-16), Bacillus thuringiensis (HY-12), and Duganella sp. (HY-13). MICs were higher for Cr (1720 mmol L -1 ) than for Pb (67 mmol L -1 ), and increasing Pb or Cr suppressed both growth (OD 600 ) and phosphate solubilization. Single-factor optimization identified glucose as the most suitable carbon source and 0.3 g L -1 NaCl as optimal; the best initial pH was 6 for five strains (pH 7 for HY-12), and temperature optima were strain-dependent (3040 °C). Conclusion These results define cultivation parameters for inoculum preparation and support further testing in soil and plant systems under environmentally relevant conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI