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Exogenous hydrogen sulfide alleviates chromium toxicity by modulating chromium, nutrients and reactive oxygen species accumulation, and antioxidant defence system in mungbean (Vigna radiata L.) seedlings.

Authors :
Singh, Deepti
Sharma, Nathi Lal
Singh, Dharmendra
Siddiqui, Manzer H.
Taunk, Jyoti
Sarkar, Susheel Kumar
Rathore, Abhishek
Singh, Chandan Kumar
Al-amri, Abdullah A.
Alansi, Saleh
Ali, Hayssam M.
Rahman, Md Atikur
Source :
Plant Physiology & Biochemistry. Jul2023, Vol. 200, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Chromium (Cr), a highly toxic redox-active metal cation in soil, seriously threatens global agriculture by affecting nutrient uptake and disturbing various physio-biochemical processes in plants, thereby reducing yields. Here, we examined the effects of different concentrations of Cr alone and in combination with hydrogen sulfide (H 2 S) application on the growth and physio-biochemical performance of two mungbeans (Vigna radiata L.) varieties, viz. Pusa Vishal (PV; Cr tolerant) and Pusa Ratna (PR; Cr sensitive), growing in a pot in hydroponics. Plants were grown in the pot experiment to examine their growth, enzymatic and non-enzymatic antioxidant levels, electrolyte balance, and plasma membrane (PM) H+-ATPase activity. Furthermore, root anatomy and cell death were analysed 15 days after sowing both varieties in hydroponic systems. The Cr-induced accumulation of reactive oxygen species caused cell death and affected the root anatomy and growth of both varieties. However, the extent of alteration in anatomical features was less in PV than in PR. Exogenous application of H 2 S promoted plant growth, thereby improving plant antioxidant activities and reducing cell death by suppressing Cr accumulation and translocation. Seedlings of both cultivars treated with H 2 S exhibited enhanced photosynthesis, ion uptake, glutathione, and proline levels and reduced oxidative stress. Interestingly, H 2 S restricted the translocation of Cr to aerial parts of plants by improving the nutrient profile and viability of root cells, thereby relieving plants from oxidative bursts by activating the antioxidant machinery through triggering the ascorbate-glutathione cycle. Overall, H 2 S application improved the nutrient profile and ionic homeostasis of Cr-stressed mungbean plants. These results highlight the importance of H 2 S application in protecting crops against Cr toxicity. Our findings can be utilised to develop management strategies to improve heavy metal tolerance among crops. [Display omitted] • Cr impairs growth, nutrient homeostasis and physiology of mungbean seedlings. • H 2 S enhanced photosynthetic pigments biosynthesis in mungbean genotypes. • H 2 S inhibits ROS production and increased nutrients accumulation. • H 2 S improves anatomical features, proline and antioxidant system of seedlings. • H 2 S application provides Cr stress tolerance in mungbean. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09819428
Volume :
200
Database :
Academic Search Index
Journal :
Plant Physiology & Biochemistry
Publication Type :
Academic Journal
Accession number :
164135682
Full Text :
https://doi.org/10.1016/j.plaphy.2023.107767