Repository logo
Log In(current)
  1. Home
  2. Prodotti della ricerca
  3. A. Contributo su rivista
  4. A1. Articolo in rivista
  5. Enhancing Seed Germination Under Abiotic Stress: Exploring the Potential of Nano-Fertilization

Enhancing Seed Germination Under Abiotic Stress: Exploring the Potential of Nano-Fertilization

Author(s)
Ghadirnezhad Shiade, Seyede Roghie
Rahimi, Reza
Zand-Silakhoor, Arameh
Fathi, Amin
Fazeli, Arash
more
Date Issued
2024
Type
article
Volume
24
Issue
3
Start Page
5319
End Page
5341
DOI
10.1007/s42729-024-01910-x
Journal
JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION  
Abstract
Nowadays, climate change has a significant and negative impact on global agro-ecosystems. Consequently, the occurrence of abiotic stress is a major challenge to crop production, including the first phases of seed germination and plant establishment, that needs to be addressed. Farmers, especially in developing and underdeveloped countries, tend to use excessive amounts of fertilizer to increase the cultivated crop yields. Therefore, the adoption of sustainable agricultural practices is essential to satisfy the increased need for food safety and security in modern society while minimizing dependence on excessive use of agricultural inputs. There is growing interest in the use of Nano-fertilizers (NFs) to enhance seed germination and seedling establishment, crucial stages in the crop production process. Considering the limited number of studies in this field that have investigated the effects of NFs on enhancing seed germination under abiotic stress conditions, this review aims to address this research gap. The detrimental effects of various abiotic stress factors on seed germination parameters were discussed. In addition, NFs and traditional fertilizers were compared. Ultimately, different compositions, applications, current challenges, and future aspects of the application of NFs were explored. This study provided an insightful understanding of the benefits and challenges associated with the application of NFs in the early phase of plant development. By integrating these findings into policy strategies, stakeholders can effectively use nanofertilizers to promote sustainable agricultural practices.
Subjects

Drought · Salinity · ...

Handle
http://hdl.handle.net/2067/53220
Metrics

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Accessibility settings
  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify