Agro-Nanotechnology as an Emerging Field: A Novel Sustainable Approach for Improving Plant Growth by Reducing Biotic Stress

Author:

Khan MasudullaORCID,Khan Azhar U.,Hasan Mohd AbulORCID,Yadav Krishna KumarORCID,Pinto Marina M. C.,Malik Nazia,Yadav Virendra Kumar,Khan Afzal HusainORCID,Islam Saiful,Sharma Gulshan Kumar

Abstract

In the present era, the global need for food is increasing rapidly; nanomaterials are a useful tool for improving crop production and yield. The application of nanomaterials can improve plant growth parameters. Biotic stress is induced by many microbes in crops and causes disease and high yield loss. Every year, approximately 20–40% of crop yield is lost due to plant diseases caused by various pests and pathogens. Current plant disease or biotic stress management mainly relies on toxic fungicides and pesticides that are potentially harmful to the environment. Nanotechnology emerged as an alternative for the sustainable and eco-friendly management of biotic stress induced by pests and pathogens on crops. In this review article, we assess the role and impact of different nanoparticles in plant disease management, and this review explores the direction in which nanoparticles can be utilized for improving plant growth and crop yield.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference123 articles.

1. Irish Potato Famine;O’Neill,2009

2. Human Health Risk Assessment Due to Agricultural Activities and Crop Consumption in the Surroundings of an Industrial Area

3. Evaluation of Certain Contaminants in Food: Eighty-Third Report of the Joint FAO/WHO Expert Committee on Food Additives,2017

4. Plant diversity and composition: Effects on productivity and nutrient dynamics of experimental grasslands;Tilman,2002

5. DDT and Breast Cancer in Young Women: New Data on the Significance of Age at Exposure

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