Nanotechnology for climate change mitigation: Enhancing plant resilience under stress environments DOI Creative Commons
Abbas Shoukat, Britta Pitann, Muhammad Mubashar Zafar

и другие.

Journal of Plant Nutrition and Soil Science, Год журнала: 2024, Номер 187(5), С. 604 - 620

Опубликована: Июль 27, 2024

Abstract Background Nanotechnology, utilizing nanoparticles (NPs) with unique physicochemical properties, has significant potential in enhancing sustainable agriculture through innovations plant nutrition, growth, and protection. Aims This review aims to assess how nanotechnology, particularly NPs, contributes by improving nutrition stress resistance, offering solutions for phytoremediation agricultural efficiency. Methods We examine studies showcasing the application of NPs agriculture, focusing on their effects nutrient delivery, mitigation, pollutant removal, enhancement food shelf life nano‐encapsulated fertilizers nano‐sensors. Results have demonstrated promising results slow‐release targeted improved germination physiological activity under stress, enhanced efficiency aiding removal pollutants. Nano‐sensors packaging detect deterioration extend life, whereas nano‐encapsulation agrochemicals offers environment‐friendly pest management solutions. Conclusions Nanotechnology presents a forward‐looking approach crop productivity, resource use efficiency, environmental Continued research is essential unlock full emphasizing safe efficient methods mitigate abiotic biotic stresses promote sustainability.

Язык: Английский

Integrative Approaches to Abiotic Stress Management in Crops: Combining Bioinformatics Educational Tools and Artificial Intelligence Applications DOI Open Access
Xin Zhang,

Zakir Ibrahim,

Muhammad Bilawal Khaskheli

и другие.

Sustainability, Год журнала: 2024, Номер 16(17), С. 7651 - 7651

Опубликована: Сен. 3, 2024

Abiotic stresses, including drought, salinity, extreme temperatures and nutrient deficiencies, pose significant challenges to crop production global food security. To combat these challenges, the integration of bioinformatics educational tools AI applications provide a synergistic approach identify analyze stress-responsive genes, regulatory networks molecular markers associated with stress tolerance. Bioinformatics offer robust framework for data collection, storage initial analysis, while enhance pattern recognition, predictive modeling real-time processing capabilities. This review uniquely integrates applications, highlighting their combined role in managing abiotic plants crops. The novelty is demonstrated by multiomics algorithms, providing deeper insights into response pathways, biomarker discovery recognition. Key include resistance gene network inference, omics plant monitoring through fusion remote sensing AI-assisted phenomics. Challenges such as handling big data, model interpretability, overfitting experimental validation remain there, but future prospects involve developing user-friendly platforms, establishing common standards, interdisciplinary collaboration harnessing mitigation strategies Educational initiatives, collaborations trainings are essential equip next generation researchers required skills utilize advanced effectively. convergence holds vast accelerating development stress-resilient crops, optimizing agricultural practices ensuring security under increasing environmental pressures. Moreover, this integrated crucial advancing sustainable agriculture amidst growing challenges.

Язык: Английский

Процитировано

12

Nanotechnology for climate change mitigation: Enhancing plant resilience under stress environments DOI Creative Commons
Abbas Shoukat, Britta Pitann, Muhammad Mubashar Zafar

и другие.

Journal of Plant Nutrition and Soil Science, Год журнала: 2024, Номер 187(5), С. 604 - 620

Опубликована: Июль 27, 2024

Abstract Background Nanotechnology, utilizing nanoparticles (NPs) with unique physicochemical properties, has significant potential in enhancing sustainable agriculture through innovations plant nutrition, growth, and protection. Aims This review aims to assess how nanotechnology, particularly NPs, contributes by improving nutrition stress resistance, offering solutions for phytoremediation agricultural efficiency. Methods We examine studies showcasing the application of NPs agriculture, focusing on their effects nutrient delivery, mitigation, pollutant removal, enhancement food shelf life nano‐encapsulated fertilizers nano‐sensors. Results have demonstrated promising results slow‐release targeted improved germination physiological activity under stress, enhanced efficiency aiding removal pollutants. Nano‐sensors packaging detect deterioration extend life, whereas nano‐encapsulation agrochemicals offers environment‐friendly pest management solutions. Conclusions Nanotechnology presents a forward‐looking approach crop productivity, resource use efficiency, environmental Continued research is essential unlock full emphasizing safe efficient methods mitigate abiotic biotic stresses promote sustainability.

Язык: Английский

Процитировано

9