Riboflavin-primed seeds reduce arsenic stress in Helianthus annuus L. through modulating antioxidant and metabolomics responses

Heavy metals-induced stress disrupts plant growth and development, making their survival difficult. Arsenic (As) stress is one of the major constraints that have become obstacles to the successful cultivation of many oilseed plants, especially sunflower ( Helianthus annuus L.). The current study aimed to estimate the capacity of riboflavin (Rib) to mitigate As stress in H. annuus . H. annuus seeds were primed with Rib (50 ppm) and grown in soil contaminated with As at 10 ppm per kilogram. Results demonstrated that As-stress negatively affected plant growth by increasing malondialdehyde (MDA) by 138.32% and electrolyte leakage to 54.43%. Stressed plants exhibited reduced antioxidant enzyme activities, reduced plant height to 40.5%, impaired gaseous exchange, and decreased photosynthesis to 22.30%, whereas Rib seed priming alleviated As toxicity by ameliorating membrane stability (from 45.57% to 55.80%), gas exchange, and enzymatic antioxidant activity (CAT, POD, APX) in treated plants. Moreover, Rib reduced MDA levels and increased chlorophyll content. The GC/MS-based non-targeted metabolic profiling indicated that seed priming with Rib could cause shifts in metabolites including sugars, amino acids, alcohols, carboxylic acids, and organic acids to augment H. annuus survival against metal stress. Our study demonstrates that seed priming with Rib can improve plant growth under metal stress in conventional agricultural systems.

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Publication Details

Journal
PeerJ
Published
2026-10-06
DOI
https://doi.org/10.7717/peerj.21596
Primary Topic
Plant Stress Responses and Tolerance
Type
article
Field-Weighted Citation Impact
0.00
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article

Riboflavin-primed seeds reduce arsenic stress in Helianthus annuus L. through modulating antioxidant and metabolomics responses

Nasim Ahmad Yasin, Anum Manzoor, Waheed Akram, Rehana Sardar et al.
PeerJ
Plant Stress Responses and Tolerance
article

Riboflavin-primed seeds reduce arsenic stress in Helianthus annuus L. through modulating antioxidant and metabolomics responses

Nasim Ahmad Yasin, Anum Manzoor, Waheed Akram, Rehana Sardar, Summera Jahan, Atif Kamran, Amna Naveed
article en

Abstract

Heavy metals-induced stress disrupts plant growth and development, making their survival difficult. Arsenic (As) stress is one of the major constraints that have become obstacles to the successful cultivation of many oilseed plants, especially sunflower ( Helianthus annuus L.). The current study aimed to estimate the capacity of riboflavin (Rib) to mitigate As stress in H. annuus . H. annuus seeds were primed with Rib (50 ppm) and grown in soil contaminated with As at 10 ppm per kilogram. Results demonstrated that As-stress negatively affected plant growth by increasing malondialdehyde (MDA) by 138.32% and electrolyte leakage to 54.43%. Stressed plants exhibited reduced antioxidant enzyme activities, reduced plant height to 40.5%, impaired gaseous exchange, and decreased photosynthesis to 22.30%, whereas Rib seed priming alleviated As toxicity by ameliorating membrane stability (from 45.57% to 55.80%), gas exchange, and enzymatic antioxidant activity (CAT, POD, APX) in treated plants. Moreover, Rib reduced MDA levels and increased chlorophyll content. The GC/MS-based non-targeted metabolic profiling indicated that seed priming with Rib could cause shifts in metabolites including sugars, amino acids, alcohols, carboxylic acids, and organic acids to augment H. annuus survival against metal stress. Our study demonstrates that seed priming with Rib can improve plant growth under metal stress in conventional agricultural systems.

PeerJVol. 14
University of the Punjab (PK), Emerson University, Multan (PK)
Openalex Percentile: Top 14%
Plant Stress Responses and Tolerance
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