微生物菌剂
根际
肥料
微量营养素
纳米复合材料
人口
生物累积
生物肥料
生物技术
农学
化学
生物
材料科学
园艺
环境化学
纳米技术
细菌
社会学
人口学
有机化学
接种
遗传学
作者
J. Mary Isabella Sonali,R. Kavitha,P. Senthil Kumar,Revathy Rajagopal,K. Veena Gayathri,Ayman A. Ghfar,Saravanan Govindaraju
出处
期刊:Chemosphere
[Elsevier BV]
日期:2021-08-09
卷期号:286: 131800-131800
被引量:33
标识
DOI:10.1016/j.chemosphere.2021.131800
摘要
Chemical fertilizers are used in modern agricultural practice to increase plant output. They possess anthropogenic compounds which are hazardous, result in poor soil quality, poor crop nutrition and pollutes the water table. Currently, food crops that lack in micro-nutrients (Zn, silicates and Se) can be enriched with micronutrients by use of fertilizers. Eco-friendly bio-fertilizers have been proved to provide a known population of microorganisms that create a mutual benefit to the plants & the rhizosphere soil. Nanomaterials are often used in plant fertilizer formulation, allowing for controlled release and targeted delivery of beneficial nanoscale components, as well as to boost plant production and reduce environmental pollutants. In the present study we identified a multipotent micronutrient solubilizing bacterium (MSB) - Pseudomonas gessardi and Pseudomonas azotoformans as a bio-fertiliser. Comparative study of the formulated MSB, with nanocomposite prepared with the soya chunks as natural carrier material and chemically synthesized cerium oxide was performed on the growth of fenugreek for its effectiveness. The SEM images of nanocomposite showed the non-uniform distribution of CeO2 in bio-inoculant with an average size of 25.24 nm. The current study deals with increase in the shoot and root length of the fenugreek plant with only 75 ppm of CeO2 in nanocomposite, thereby preventing bioaccumulation of Ce in soil. This work gives a potential use of CeO2 nanocomposite with MSB bio-inoculants which could be applied to soil deficient with the micronutrients that can enhance the crop yield.
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