Department of Environmental Science, V.B.S. Purvanchal University, Jaunpur, 222003, India.
Curr Microbiol. 2024 Apr 23;81(6):153. doi: 10.1007/s00284-024-03673-1.
This study investigates the impact of bacteria on arsenic reduction in wheat plants, highlighting the potential of microbe-based eco-friendly strategies for plant growth. In the present study, bacterial isolate SPB-10 was survived at high concentration against both form of arsenic (As and As). SPB-10 produced 5.2 g/L and 11.3 g/L of exo-polysaccharide at 20 ppm of As and As, respectively, whereas qualitative examination revealed the highest siderophores ability. Other PGP attributes such as IAA production were recorded 52.12 mg/L and 95.82 mg/L, phosphate solubilization was 90.23 mg/L and 129 mg/L at 20 ppm of As and As, respectively. Significant amount of CAT, APX, and Proline was also observed at 20 ppm of As and As in SPB-10. Isolate SPB-10 was molecularly identified as Bacillus cereus through 16S rRNA sequencing. After 42 days, wheat plants inoculated with SPB-10 had a 25% increase in shoot length and dry weight, and 26% rise in chlorophyll-a pigment under As supplemented T4 treatment than control. Reducing sugar content was increased by 24% in T6-treated plants compared to control. Additionally, SPB-10 enhanced the content of essential nutrients (NPK), CAT, and APX in plant's-leaf under both As and As stressed conditions after 42 days. The study found that arsenic uptake in plant roots and shoots decreased in SPB-10-inoculated plants, with the maximum reduction observed in As treated plants. Bio-concentration factor-BCF was reduced by 90.89% in SPB-10-inoculated treatment T4 after 42 days. This suggests that Bacillus cereus-SPB-10 may be beneficial for plant growth in arsenic-contaminated soil.
本研究探讨了细菌对小麦植株中砷还原的影响,强调了基于微生物的环保策略在植物生长中的潜力。在本研究中,细菌分离株 SPB-10 在高浓度下对两种形式的砷(As 和 As)都具有生存能力。SPB-10 在 20ppm 的 As 和 As 下分别产生了 5.2g/L 和 11.3g/L 的胞外多糖,而定性检测显示其具有最高的铁载体能力。其他植物促生素特性,如 IAA 产量,分别为 52.12mg/L 和 95.82mg/L,在 20ppm 的 As 和 As 下,磷酸盐溶解能力分别为 90.23mg/L 和 129mg/L。在 SPB-10 中,还观察到 CAT、APX 和脯氨酸的含量也显著增加。通过 16S rRNA 测序,分离株 SPB-10 被鉴定为蜡状芽孢杆菌。在 42 天后,与对照相比,在添加 As 的 T4 处理下,接种 SPB-10 的小麦植株的茎长和干重分别增加了 25%,叶绿素-a 色素增加了 26%。与对照相比,T6 处理的植株中还原糖含量增加了 24%。此外,在 42 天后,在 As 和 As 胁迫条件下,SPB-10 增强了植物叶片中必需营养元素(NPK)、CAT 和 APX 的含量。研究发现,在接种 SPB-10 的植物中,植物根部和地上部对砷的吸收减少,在处理 As 的植物中观察到最大的减少。在 42 天后,接种 Bacillus cereus-SPB-10 的 T4 处理的生物浓缩因子-BCF 降低了 90.89%。这表明 Bacillus cereus-SPB-10 可能有利于在砷污染土壤中植物的生长。