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Exogenous Application of Nitric Oxide Mitigates Water Stress and Reduces Natural Viral Disease Incidence of Tomato Plants Subjected to Deficit Irrigation

Authors :
Mohamed Hikal
Amr Elkelish
Adil A. Gobouri
Tariq Aftab
Mohamed F. M. Ibrahim
Soumya Mukherjee
Hany G. Abd El-Gawad
Ahmed Bondok
Hatem Ashour
Ehab Azab
Mohamed Moustafa-Farag
Ahmed Abou El-Yazied
Amr A. Metwally
Source :
Agronomy, Volume 11, Issue 1, Agronomy, Vol 11, Iss 87, p 87 (2021)
Publication Year :
2021
Publisher :
MDPI AG, 2021.

Abstract

The present work reveals the beneficial role of sodium nitroprusside (SNP<br />NO donor concentration: 50 and 100 &micro<br />M) in mitigation of water stress accompanied by a reduction in viral disease incidence in tomato plants subjected to deficit irrigation. The plants were grown under two irrigation regimes: well-watered (WW<br />irrigated after the depletion of 55&ndash<br />60% of available soil water) and water deficit (WD<br />irrigated after the depletion of 85&ndash<br />90% of available soil water) in two seasons of 2018 and 2019. The results indicated that under water stress conditions, plant growth, chlorophyll, relative water content (RWC), and fruit yield were decreased. Conversely, water stress significantly increased the MDA, proline, soluble sugars, and antioxidant enzymes&rsquo<br />activities. Moreover, it was obvious a negligible increase in the fruit content from NO2 and NO3. Water-deficit stress, however, had a positive impact on reducing the percentage of viral disease (TMV and TYLCV) incidence on tomato plants. Similarly, SNP application in the form of foliar spray significantly reduced the disease incidence, the severity, and the relative concentrations of TMV and TYLCV in tomato plants raised under both WW and WD conditions. The treatment of SNP at 100 &micro<br />M achieved better results and could be recommended to induce tomato plant tolerance to water stress. Thus, the present work highlights the role of NO (SNP) in the alleviation of water stress in tomato plants and subsequent reduction in viral disease incidence during deficit irrigation.

Details

ISSN :
20734395
Volume :
11
Database :
OpenAIRE
Journal :
Agronomy
Accession number :
edsair.doi.dedup.....0125bc42c446f38a02e2a95f3ac0d11e