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Nanobiotechnology in crop stress management: an overview of novel applications.
Nawaz, Ahmad; Rehman, Hafeez Ur; Usman, Muhammad; Wakeel, Abdul; Shahid, Muhammad Shafiq; Alam, Sardar; Sanaullah, Muhammad; Atiq, Muhammad; Farooq, Muhammad.
Afiliação
  • Nawaz A; Department of Entomology, University of Agriculture, Faisalabad, 38040, Pakistan. ahmad.nawaz1793@uaf.edu.pk.
  • Rehman HU; Department of Agronomy, University of Agriculture, Faisalabad, 38040, Pakistan.
  • Usman M; PEIE Research Chair for the Development of Industrial Estates and Free Zones, Center for Environmental Studies and Research, Sultan Qaboos University, Al-Khoud 123, Muscat, Oman.
  • Wakeel A; Institute of Soil and Environmental Sciences, University of Agriculture, Faisalabad, 38040, Pakistan.
  • Shahid MS; Department of Plant Sciences, College of Agricultural and Marine Sciences, Sultan Qaboos University, Al-Khoud 123, Muscat, Oman.
  • Alam S; Department of Agronomy, University of Agriculture, Faisalabad, 38040, Pakistan.
  • Sanaullah M; Institute of Soil and Environmental Sciences, University of Agriculture, Faisalabad, 38040, Pakistan.
  • Atiq M; Department of Plant Pathology, University of Agriculture, Faisalabad, 38040, Pakistan.
  • Farooq M; Department of Plant Sciences, College of Agricultural and Marine Sciences, Sultan Qaboos University, Al-Khoud 123, Muscat, Oman. farooqcp@squ.edu.om.
Discov Nano ; 18(1): 74, 2023 May 15.
Article em En | MEDLINE | ID: mdl-37382723
ABSTRACT
Agricultural crops are subject to a variety of biotic and abiotic stresses that adversely affect growth and reduce the yield of crop plantss. Traditional crop stress management approaches are not capable of fulfilling the food demand of the human population which is projected to reach 10 billion by 2050. Nanobiotechnology is the application of nanotechnology in biological fields and has emerged as a sustainable approach to enhancing agricultural productivity by alleviating various plant stresses. This article reviews innovations in nanobiotechnology and its role in promoting plant growth and enhancing plant resistance/tolerance against biotic and abiotic stresses and the underlying mechanisms. Nanoparticles, synthesized through various approaches (physical, chemical and biological), induce plant resistance against these stresses by strengthening the physical barriers, improving plant photosynthesis and activating plant defense mechanisms. The nanoparticles can also upregulate the expression of stress-related genes by increasing anti-stress compounds and activating the expression of defense-related genes. The unique physico-chemical characteristics of nanoparticles enhance biochemical activity and effectiveness to cause diverse impacts on plants. Molecular mechanisms of nanobiotechnology-induced tolerance to abiotic and biotic stresses have also been highlighted. Further research is needed on efficient synthesis methods, optimization of nanoparticle dosages, application techniques and integration with other technologies, and a better understanding of their fate in agricultural systems.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Discov Nano Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Paquistão

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Discov Nano Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Paquistão
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