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  5. Nanobiotechnology to advance stress resilience in plants: Current opportunities and challenges

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Article
en
2023

Nanobiotechnology to advance stress resilience in plants: Current opportunities and challenges

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0 Files

en
2023
Vol 22
Vol. 22
DOI: 10.1016/j.mtbio.2023.100759

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Kadambot Siddique
Kadambot Siddique

University of Western Australia

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Munazza Ijaz
Fahad Khan
Temoor Ahmed
+6 more

Abstract

A sustainable and resilient crop production system is essential to meet the global food demands. Traditional chemical-based farming practices have become ineffective due to increased population pressures and extreme climate variations. Recently, nanobiotechnology is considered to be a promising approach for sustainable crop production by improving the targeted nutrient delivery, pest management efficacy, genome editing efficiency, and smart plant sensor implications. This review provides deeper mechanistic insights into the potential applications of engineered nanomaterials for improved crop stress resilience and productivity. We also have discussed the technology readiness level of nano-based strategies to provide a clear picture of our current perspectives of the field. Current challenges and implications in the way of upscaling nanobiotechnology in the crop production are discussed along with the regulatory requirements to mitigate associated risks and facilitate public acceptability in order to develop research objectives that facilitate a sustainable nano-enabled Agri-tech revolution. Conclusively, this review not only highlights the importance of nano-enabled approaches in improving crop health, but also demonstrated their roles to counter global food security concerns.

How to cite this publication

Munazza Ijaz, Fahad Khan, Temoor Ahmed, Muhammad Noman, Faisal Zulfiqar, Muhammad Rizwan, Jianping Chen, Kadambot Siddique, Bin Li (2023). Nanobiotechnology to advance stress resilience in plants: Current opportunities and challenges. , 22, DOI: https://doi.org/10.1016/j.mtbio.2023.100759.

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Publication Details

Type

Article

Year

2023

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1016/j.mtbio.2023.100759

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