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  4. Exploring Reactive Oxygen Species Accumulation in Allium fistulosum L. Seeds Exposed to Different Storage Conditions
 
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Exploring Reactive Oxygen Species Accumulation in Allium fistulosum L. Seeds Exposed to Different Storage Conditions

Type
Journal article
Language
English
Date issued
2024
Author
Padula, Gregorio
Macovei, Anca
Ravasio, Adriano
Pagano, Andrea
Jr Dueñas, Conrado
Xia, Xianzong
Hołubowicz, Roman 
Balestrazzi, Alma
Faculty
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
Seeds
ISSN
2674-1024
DOI
10.3390/seeds3010010
Web address
http://www.mdpi.com/2674-1024/3/1/10
Volume
3
Number
1
Pages from-to
123-132
Abstract (EN)
The purpose of this work was to investigate the production of reactive oxygen species (ROS) in Allium fistulosum seeds stored under different conditions. Optimized seed storage conditions are essential to maintain seed viability, otherwise accumulation of ROS-induced oxidative damage can lead to seed aging. The A. fistulosum seed lots used in this study have been selected based on their breeding background and reproduction site. Seed samples were stored up to 22 months under six different conditions of temperature (25, 10, and 7.5 °C) and relative humidity (RH) (25% and 45% RH). A germination test and ROS quantification assay were performed on the samples collected after 12 and 22 months of storage, respectively. Within a time-window of 10 months, the tested seed lots evidenced a decrease in the germination rate associated with increased ROS levels. Correlation analysis also showed that ROS production was influenced by genotype. The reported data showed that ROS accumulation was dependent on the storage condition and genotype. Some of the tested seed lots appeared to be prone to ROS accumulation, independent of storage conditions. On the other hand, specific condition storages (25 °C, 25% RH; 25 °C, 45% RH; 10 °C, 25% RH; 7.5 °C, 25% RH) resulted in a lower impact on seed aging.
Keywords (EN)
  • Allium fistulosum

  • seed storage

  • reactive oxygen species

  • 2.7-dichlorofluorescein diacetat...

License
cc-bycc-by CC-BY - Attribution
Open access date
February 9, 2024
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