P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid
The effects of silicon (Si) and salicylic acid (SA) applications on proline content and expression of Δ1-pyrrolin-5-carboxylate synthetase (P5CS) were examined under different drought levels and different drought exposure times. Two wheat cultivars, a drought tolerant and a drought sensitive were us...
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doaj-675103085993401a8e224fcb059de1da2020-11-25T02:19:09ZengTaylor & Francis GroupJournal of Plant Interactions1742-91451742-91532018-01-0113146147110.1080/17429145.2018.15065161506516P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acidKobra Maghsoudi0Yahya Emam1Ali Niazi2Mohammad Pessarakli3Mohammad Javad Arvin4College of Agriculture, Shiraz UniversityCollege of Agriculture, Shiraz UniversityShiraz UniversityThe University of ArizonaCollege of Agriculture, Shahid Bahonar UniversityThe effects of silicon (Si) and salicylic acid (SA) applications on proline content and expression of Δ1-pyrrolin-5-carboxylate synthetase (P5CS) were examined under different drought levels and different drought exposure times. Two wheat cultivars, a drought tolerant and a drought sensitive were used. The experiment was a factorial based on completely randomized design with three replicates. Expression analysis by the quantitative real time PCR showed that the tolerant cultivar had significantly higher P5CS expressions compared to the sensitive one under drought stress. In sampling time points, the maximum level of mRNA was observed at 48 h after stress was applied. At 48 h after stress induction, the expression of P5CS was almost 3.1 fold higher in the tolerant cultivar compared to the sensitive one. In both cultivars, gene expression decreased from 48 to 72 h. The stressed plants treated with Si + SA showed a higher expression. Proline content started to increase by Si and SA treatments and the maximum proline content was obtained at simultaneous application of Si + SA. Drought stress significantly reduced chlorophyll content, relative water content and leaf water potential of both cultivars, while increased electrolyte leakage (EL) of the leaves. In contrast, foliar-applied Si and SA significantly increased these parameters and reduced EL, and the effect of simultaneous application of Si and SA was greater. The results suggest that the P5CS is a stress inducible gene. This gene has the potential to be used for improvement of drought stress tolerance in wheat. Network analysis highlighted positive interaction of osmotic stress, drought and cold stress on P5CS1 and the regulatory role of MYB2, ERF-1, and EIN3 transcription factors. In conclusion, alleviation of drought stress by application of Si and SA was associated partially with enhanced expression of P5CS gene and following proline accumulation.http://dx.doi.org/10.1080/17429145.2018.1506516Leaf water potentialnetwork analysisP5CSreal time- PCR |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kobra Maghsoudi Yahya Emam Ali Niazi Mohammad Pessarakli Mohammad Javad Arvin |
spellingShingle |
Kobra Maghsoudi Yahya Emam Ali Niazi Mohammad Pessarakli Mohammad Javad Arvin P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid Journal of Plant Interactions Leaf water potential network analysis P5CS real time- PCR |
author_facet |
Kobra Maghsoudi Yahya Emam Ali Niazi Mohammad Pessarakli Mohammad Javad Arvin |
author_sort |
Kobra Maghsoudi |
title |
P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
title_short |
P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
title_full |
P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
title_fullStr |
P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
title_full_unstemmed |
P5CS expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
title_sort |
p5cs expression level and proline accumulation in the sensitive and tolerant wheat cultivars under control and drought stress conditions in the presence/absence of silicon and salicylic acid |
publisher |
Taylor & Francis Group |
series |
Journal of Plant Interactions |
issn |
1742-9145 1742-9153 |
publishDate |
2018-01-01 |
description |
The effects of silicon (Si) and salicylic acid (SA) applications on proline content and expression of Δ1-pyrrolin-5-carboxylate synthetase (P5CS) were examined under different drought levels and different drought exposure times. Two wheat cultivars, a drought tolerant and a drought sensitive were used. The experiment was a factorial based on completely randomized design with three replicates. Expression analysis by the quantitative real time PCR showed that the tolerant cultivar had significantly higher P5CS expressions compared to the sensitive one under drought stress. In sampling time points, the maximum level of mRNA was observed at 48 h after stress was applied. At 48 h after stress induction, the expression of P5CS was almost 3.1 fold higher in the tolerant cultivar compared to the sensitive one. In both cultivars, gene expression decreased from 48 to 72 h. The stressed plants treated with Si + SA showed a higher expression. Proline content started to increase by Si and SA treatments and the maximum proline content was obtained at simultaneous application of Si + SA. Drought stress significantly reduced chlorophyll content, relative water content and leaf water potential of both cultivars, while increased electrolyte leakage (EL) of the leaves. In contrast, foliar-applied Si and SA significantly increased these parameters and reduced EL, and the effect of simultaneous application of Si and SA was greater. The results suggest that the P5CS is a stress inducible gene. This gene has the potential to be used for improvement of drought stress tolerance in wheat. Network analysis highlighted positive interaction of osmotic stress, drought and cold stress on P5CS1 and the regulatory role of MYB2, ERF-1, and EIN3 transcription factors. In conclusion, alleviation of drought stress by application of Si and SA was associated partially with enhanced expression of P5CS gene and following proline accumulation. |
topic |
Leaf water potential network analysis P5CS real time- PCR |
url |
http://dx.doi.org/10.1080/17429145.2018.1506516 |
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