Nanoparticles in inhibiting Pantoea ananatis and to control maize white spot

Author:

Mamede Morgana Coelho1ORCID,Mota Raquel Pinheiro1ORCID,Silva Anielle Christine Almeida2,Tebaldi Nilvanira Donizete1ORCID

Affiliation:

1. Universidade Federal de Uberlândia (UFU), Brazil

2. Universidade Federal de Alagoas (UFAL), Brazil

Abstract

ABSTRACT: Maize white spot (MWS) caused by Pantoea ananatis is one main maize leaf diseases, and nanoparticles (NPs) are an innovative approach for bacterial disease control. This research evaluated the toxicity of pure NPs and doped NPs with different elements in inhibiting bacterial growth and to control MWS. Pure NPs and ZnO NPs doped with silver (Ag), gold (Au), copper (Cu), iron (Fe), manganese (Mn), and nickel (Ni) at different concentrations were used to determine the toxicity for P. ananatis in vitro, evaluating the bacterial growth inhibition zone. To assess the control of MWS, in the preventive application, maize plants were sprayed with NPs of ZnO:0.1Cu, ZnO:0.05Fe, ZnO:0.2Mn and ZnO:0.7Ni at 10, 5 or 2.5 mg mL-1, and after 3 days, the plants were inoculated with bacterial suspension. To assess the curative application, plants were inoculated with the bacteria, and 3 days later sprayed with the NPs. The disease severity was assessed and the area under the disease-progress curve (AUDPC) was calculated. The doped ZnO NPs with different elements, and at different concentrations inhibited bacterial growth in vitro. NPs of ZnO:0.1Cu and ZnO:0.2Mn at 5 or 2.5 mg mL-1, in both applications reduced the severity of MWS, showing potential for use in the disease management.

Publisher

FapUNIFESP (SciELO)

Subject

General Veterinary,Agronomy and Crop Science,Animal Science and Zoology

Reference32 articles.

1. Synthesis, characterization and antimicrobial activity of copper oxide nanoparticles;AHAMED M.;Journal Nanomaterials,2014

2. The use of nanoparticles to control orel biofilm formation.;ALLAKER R. P.;Jornal of Dental Research,2010

3. Sanitization of minimally processed carrot with silver nanoparticles.;ARAÚJO E. A.;Ciência Rural,2015

4. Antimcrobial textiles: Biogenic silver janrticles against Candida and Xanthomonas.;BALLOTTIN D.;Materials Science and Engineering C,2017

5. Evaluation of commercial chemical products, in vitro and in vivo in the control of foliar disease, maize white spot, caused by Pantoea ananatis.;BOMFETI C. A;Summa Phytopathologica,2007

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