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利用促植物生长芽孢杆菌属SSAU2恢复六价铬和人工干旱条件下的土壤肥力

Restoration of the soil fertility under Cr(VI) and artificial drought condition by the utilization of plant growth-promoting Bacillus spp. SSAU2.

作者信息

Sharma Abhijeet, Singh Shailendra Kumar, Maurya Neetu, Tripathi Shashank Mani, Jaiswal Saumya, Agrawal Manshi, Sundaram Shanthy

机构信息

Centre of Biotechnology, University of Allahabad, Uttar Pradesh, Prayagraj, India, 211002.

Department of Biochemistry, S. S. Khanna Girls' Degree College, Uttar Pradesh, Prayagraj, India, 211002.

出版信息

Int Microbiol. 2025 Jan;28(1):81-93. doi: 10.1007/s10123-024-00528-4. Epub 2024 May 11.

Abstract

The study explores the potential of an indigenous halo-tolerant microbe identified as Bacillus spp. SSAU-2 in enhancing soil fertility and promoting plant growth for sustainable agricultural practices under the influence of multiple abiotic stresses such as Cr(VI), high salinity, and artificial drought condition. The study investigated various factors influencing IAA synthesis by SSAU-2, such as pH (5 to 11), salinity (10 to 50 g/L), tryptophan concentration (0.5 to 1%), carbon (mannitol mand lactose), and nitrogen sources (peptone and tryptone). The highest IAA concentration was observed at pH 10 (1.695 mg/ml) and pH 11 (0.782 mg/ml). IAA synthesis was optimized at a salinity level of 30 g/l, with lower and higher salinity levels resulting in decreased IAA concentrations. Notably, the presence of mannitol and lactose significantly augmented IAA synthesis, while glucose and sucrose had inhibitory effects. Furthermore, peptone and tryptone played a pivotal role in enhancing IAA synthesis, while ammonium chloride exerted an inhibitory influence. SSAU-2 showed a diverse array of capabilities, including the synthesis of gibberellins, extracellular polymeric substances, siderophores, and hydrogen cyanide along with nitrogen fixation and ammonia production. The microbe could efficiently tolerate 45% PEG-6000 concentration and effectively produce IAA in 15% PEG concentration. It could also tolerate high concentration of Cr(VI) and synthesize IAA even in 50 ppm Cr(VI). The findings of this study provide valuable insights into harnessing the potential of indigenous microorganisms to promote plant growth, enhance soil fertility, and establish sustainable agricultural practices essential for restoring the health of ecosystems.

摘要

该研究探讨了一种被鉴定为芽孢杆菌属SSAU - 2的本土耐盐微生物在多种非生物胁迫(如六价铬、高盐度和人工干旱条件)影响下,增强土壤肥力和促进植物生长以实现可持续农业实践的潜力。该研究调查了影响SSAU - 2合成吲哚 - 3 - 乙酸(IAA)的各种因素,如pH值(5至11)、盐度(10至50克/升)、色氨酸浓度(0.5至1%)、碳源(甘露醇和乳糖)以及氮源(蛋白胨和胰蛋白胨)。在pH值为10(1.695毫克/毫升)和pH值为11(0.782毫克/毫升)时观察到最高的IAA浓度。IAA合成在盐度为30克/升时达到优化,盐度较低和较高时IAA浓度均降低。值得注意的是,甘露醇和乳糖的存在显著增强了IAA合成,而葡萄糖和蔗糖具有抑制作用。此外,蛋白胨和胰蛋白胨在增强IAA合成方面发挥了关键作用,而氯化铵则具有抑制作用。SSAU - 2展现出多种能力,包括赤霉素、胞外聚合物、铁载体和氰化氢的合成以及固氮和产氨。该微生物能够有效耐受45%的聚乙二醇 - 6000浓度,并在15%聚乙二醇浓度下有效产生IAA。它还能耐受高浓度的六价铬,甚至在50 ppm六价铬的情况下合成IAA。这项研究的结果为利用本土微生物的潜力促进植物生长、提高土壤肥力以及建立恢复生态系统健康所必需的可持续农业实践提供了有价值的见解。

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