Literature DB >> 24329970

Effect of silica nanoparticles on microbial biomass and silica availability in maize rhizosphere.

Suriyaprabha Rangaraj1, Karunakaran Gopalu, Yuvakkumar Rathinam, Prabu Periasamy, Rajendran Venkatachalam, Kannan Narayanasamy.   

Abstract

The effect of silica nanoparticles and conventional silica sources on the changes in microbial biomass and silica availability to pure soil and maize rhizosphere was studied. Nanosilica (20-40 nm) was synthesized from rice husk and comprehensively characterized. The efficiency of nanosilica was evaluated in terms of its effects on beneficial microbial population such as phosphate solubilizers, nitrogen fixers, silicate solubilizers, microbial biomass carbon and nitrogen content, and silica content in comparison with other silica sources such as microsilica, sodium silicate, and silicic acid. Nanosilica significantly (P < 0.05) enhanced microbial populations, total biomass content (C = 1508 μg g(-1) and N = 178 μg g(-1) ), and silica content (14.75 mg mL(-1) ). Although microsilica sources enhanced factors associated with soil fertility, their use by maize roots and silicification in soil was found to be less. The results show that nanosilica plays a vital role in influencing soil nutrient content and microbial biota and, hence, may promote the growth of maize crop.
© 2013 International Union of Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  maize rhizosphere; microbial biomass; nanosilica; silica availability; soil nutrients

Mesh:

Substances:

Year:  2014        PMID: 24329970     DOI: 10.1002/bab.1191

Source DB:  PubMed          Journal:  Biotechnol Appl Biochem        ISSN: 0885-4513            Impact factor:   2.431


  8 in total

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Authors:  Amanda Carolina Prado de Moraes; Lucas da Silva Ribeiro; Emerson Rodrigues de Camargo; Paulo Teixeira Lacava
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3.  Application of Silica Nanoparticles in Combination with Two Bacterial Strains Improves the Growth, Antioxidant Capacity and Production of Barley Irrigated with Saline Water in Salt-Affected Soil.

Authors:  Khadiga Alharbi; Emadeldeen Rashwan; Hossam Hussein Mohamed; Abdelmoniem Awadalla; Alaa El-Dein Omara; Emad M Hafez; Tarek Alshaal
Journal:  Plants (Basel)       Date:  2022-08-03

Review 4.  Silica nanoparticles as novel sustainable approach for plant growth and crop protection.

Authors:  Pooja Goswami; Jyoti Mathur; Nidhi Srivastava
Journal:  Heliyon       Date:  2022-07-08

Review 5.  Contribution of Arbuscular Mycorrhizal Fungi, Phosphate-Solubilizing Bacteria, and Silicon to P Uptake by Plant.

Authors:  Hassan Etesami; Byoung Ryong Jeong; Bernard R Glick
Journal:  Front Plant Sci       Date:  2021-07-01       Impact factor: 5.753

6.  Silica Particles Trigger the Exopolysaccharide Production of Harsh Environment Isolates of Growth-Promoting Rhizobacteria and Increase Their Ability to Enhance Wheat Biomass in Drought-Stressed Soils.

Authors:  Anastasiia Fetsiukh; Julian Conrad; Jonas Bergquist; Salme Timmusk
Journal:  Int J Mol Sci       Date:  2021-06-08       Impact factor: 5.923

7.  Silicon Amendment Enhances Agronomic Efficiency of Nitrogen Fertilization in Maize and Wheat Crops under Tropical Conditions.

Authors:  Fernando Shintate Galindo; Paulo Humberto Pagliari; Willian Lima Rodrigues; Guilherme Carlos Fernandes; Eduardo Henrique Marcandalli Boleta; José Mateus Kondo Santini; Arshad Jalal; Salatiér Buzetti; José Lavres; Marcelo Carvalho Minhoto Teixeira Filho
Journal:  Plants (Basel)       Date:  2021-06-29

8.  Titania (TiO2) nanoparticles enhance the performance of growth-promoting rhizobacteria.

Authors:  Salme Timmusk; Gulaim Seisenbaeva; Lawrence Behers
Journal:  Sci Rep       Date:  2018-01-12       Impact factor: 4.379

  8 in total

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