Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions

In order to evaluate dry matter remobilization to seeds in the winter type rapeseed cultivars grown under drought stress conditions, an experiment was carried out using a randomized complete block design arranged in a split plot with three replicates in Shahre-Qods, Iran, in the 2011-2012 growing se...

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Main Authors: H. Jabbari, N. Khosh kholgh Sima, G. A. Akbari, A. H. Shirani Rad
Format: Article
Language:fas
Published: Isfahan University of Technology 2020-04-01
Series:Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
Subjects:
Online Access:http://jcpp.iut.ac.ir/article-1-2722-en.html
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spelling doaj-2d98f663ec4a4071b3d7590f53844b242021-02-07T09:24:50ZfasIsfahan University of Technology Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī2251-85172020-04-01101143156Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress ConditionsH. Jabbari0N. Khosh kholgh Sima1G. A. Akbari2A. H. Shirani Rad3 Seed and Plant Improvement Institute (SPII) Agricultural Biotechnology Research Institute of Iran (ABRII) University of Tehran Seed and Plant Improvement Institute (SPII) In order to evaluate dry matter remobilization to seeds in the winter type rapeseed cultivars grown under drought stress conditions, an experiment was carried out using a randomized complete block design arranged in a split plot with three replicates in Shahre-Qods, Iran, in the 2011-2012 growing season. Irrigation treatments including control (irrigation after 80 mm evaporation from evaporation pan class A) and drought stress (irrigation withholding starting from stem elongation, flowering and silique formation stages) were allocated to the main plots and three winter type rapeseed cultivars (GKH2005, Opera and SLM046) were considered as the subplots. The results showed that drought stress increased dry matter remobilization and remobilization efficiency. By contrast, agronomic traits such as the number of siliques on the main stem and secondary branches, number of seeds per silique, 1000 seed weight, oil yield, harvest index and productivity effort (silique dry weight/biomass ratio) were decreased. The GKH2005 cultivar showed the maximum seed yield, which was 1058, 1409 and 2099 kg ha-1, when irrigation withholding started from stem elongation, flowering stage, and silique formation stages, respectively; this  was due to the higher amount of remobilization and the efficiency of remobilization and maximum number of silique in  the secondary branches. In general, the results suggest that higher remobilization and remobilization efficiency are among the most important drought stress tolerance mechanisms in the oilseed rape.http://jcpp.iut.ac.ir/article-1-2722-en.htmlseed numberseed yieldsilique numberwithholding irrigation
collection DOAJ
language fas
format Article
sources DOAJ
author H. Jabbari
N. Khosh kholgh Sima
G. A. Akbari
A. H. Shirani Rad
spellingShingle H. Jabbari
N. Khosh kholgh Sima
G. A. Akbari
A. H. Shirani Rad
Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
seed number
seed yield
silique number
withholding irrigation
author_facet H. Jabbari
N. Khosh kholgh Sima
G. A. Akbari
A. H. Shirani Rad
author_sort H. Jabbari
title Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
title_short Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
title_full Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
title_fullStr Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
title_full_unstemmed Evaluation of the Dry Matter Remobilization to Seeds in Winter Rapeseed Cultivars under Drought Stress Conditions
title_sort evaluation of the dry matter remobilization to seeds in winter rapeseed cultivars under drought stress conditions
publisher Isfahan University of Technology
series Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
issn 2251-8517
publishDate 2020-04-01
description In order to evaluate dry matter remobilization to seeds in the winter type rapeseed cultivars grown under drought stress conditions, an experiment was carried out using a randomized complete block design arranged in a split plot with three replicates in Shahre-Qods, Iran, in the 2011-2012 growing season. Irrigation treatments including control (irrigation after 80 mm evaporation from evaporation pan class A) and drought stress (irrigation withholding starting from stem elongation, flowering and silique formation stages) were allocated to the main plots and three winter type rapeseed cultivars (GKH2005, Opera and SLM046) were considered as the subplots. The results showed that drought stress increased dry matter remobilization and remobilization efficiency. By contrast, agronomic traits such as the number of siliques on the main stem and secondary branches, number of seeds per silique, 1000 seed weight, oil yield, harvest index and productivity effort (silique dry weight/biomass ratio) were decreased. The GKH2005 cultivar showed the maximum seed yield, which was 1058, 1409 and 2099 kg ha-1, when irrigation withholding started from stem elongation, flowering stage, and silique formation stages, respectively; this  was due to the higher amount of remobilization and the efficiency of remobilization and maximum number of silique in  the secondary branches. In general, the results suggest that higher remobilization and remobilization efficiency are among the most important drought stress tolerance mechanisms in the oilseed rape.
topic seed number
seed yield
silique number
withholding irrigation
url http://jcpp.iut.ac.ir/article-1-2722-en.html
work_keys_str_mv AT hjabbari evaluationofthedrymatterremobilizationtoseedsinwinterrapeseedcultivarsunderdroughtstressconditions
AT nkhoshkholghsima evaluationofthedrymatterremobilizationtoseedsinwinterrapeseedcultivarsunderdroughtstressconditions
AT gaakbari evaluationofthedrymatterremobilizationtoseedsinwinterrapeseedcultivarsunderdroughtstressconditions
AT ahshiranirad evaluationofthedrymatterremobilizationtoseedsinwinterrapeseedcultivarsunderdroughtstressconditions
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