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2023-01-13

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Yuvarani, R., Anupriya, D., Elavarasi, P., Babu, S.G., 2023. Mechanism of silver nanoparticles against plant diseases. Biotica Research Today 5(1), 37-38.

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HOME / ARCHIVES / Vol. 5 No. 1 : January (2023) / Popular Article

Mechanism of Silver Nanoparticles against Plant Diseases

Yuvarani R.*

Dept. of Plant Pathology, Adhiparaskathi Agricultural College, Ranipet, Tamil Nadu (632 506), India

Anupriya D.

Dept. of Plant Pathology, Palar Agricultural College, Vellore, Tamil Nadu (635 805), India

Elavarasi P.

Dept. of Soil Science and Agricultural Chemistry, Adhiparaskathi Agricultural College, Ranipet, Tamil Nadu (632 506), India  

Soban Babu G.

Dept. of Plant Pathology, Thanthai Rover Institute of Agriculture and Rural Development, Perambalur, Tamil Nadu (621 115), India

DOI: NIL

Keywords: Antimicrobial agent, Nanoparticles, Plant pathogens, Silver

Abstract


Agricultural productions are reduced by every year due to plant diseases is one of the reason. Management of plant diseases by using chemicals it is harmful to environment. So, using of nanoparticles against crop diseases protection offers a great promise in the management of insects and pathogens. Nanoparticles are used by famers to control many plant pathogenic diseases such as fungi, bacterial and viral diseases. Silver (Ag) nanomaterials are commonly used to manage plant diseases, because it has high toxicity and used as antimicrobial agent against various plant pathogens. In this article here discussed by mode of action and mechanism of silver nanoparticles against plant pathogens.

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Reference


Aziz, N., Pandey, R., Barman, I., Prasad, R., 2016. Leveraging the attributes of Mucorhiemalis-derived silver nanoparticles for a synergistic broad-spectrum antimicrobial platform. Front Microbiol 7, 1984. DOI: 10.3389/fmicb.2016.01984.

Prasad, R., Bhattacharyya, A., Nguyen, Q.D., 2017. Nanotechnology in sustainable agriculture: recent developments, challenges and perspectives. Front Microbiol 8, 1014. DOI: 10.3389/fmicb.2017.01014.

Singh, S., Singh, B.K., Yadav, S.M, Gupta, A.K., 2015. Applications of nanotechnology in agricultural and their role in disease management. Res J NanosciNanotechnol 5(1), 1-5.

Sharmin, S., Rahaman, M.M., Sarkar, C., Atolani, O., Islam, M.T., Adeyemi, O.S., 2021. Nanoparticles as antimicrobial and antiviral agents: A literature-based perspective study. Heliyon 7(3), e06456. DOI: 10.1016/j.heliyon.2021.e06456.