The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)

Cold and drought stresses are considered as the most important factors limiting crop production. To evaluate the effect of these tow stresses on yield and yield components of corn hybrids, a field experiment was implemented in split plots based on a randomized complete block design in 3 replicates d...

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Main Authors: Mohsen Tarighaleslami, Mohammad Kafi, Ahmad Nezami, Reza zarghami
Format: Article
Language:fas
Published: Islamic Azad University, Tabriz Branch 2017-12-01
Series:Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
Subjects:
Online Access:http://jcep.iaut.ac.ir/article_536642_d72e7bfda8d843fc375c3a5ee392abfa.pdf
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spelling doaj-ba618557f64f4b489b8ef010468d914e2020-11-24T21:39:38ZfasIslamic Azad University, Tabriz BranchIkufīziyuluzhī-i Giyāhān-i Zirā̒ī2538-18222476-731X2017-12-01113(43) پاییز531546536642The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)Mohsen Tarighaleslami0Mohammad Kafi1Ahmad Nezami2Reza zarghami3Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, IranFerdowsi University of Mashhad, Mashhad, IranFerdowsi University of Mashhad, Mashhad, IranAgricultural Biotechnology Research Institute of Iran, Karaj, IranCold and drought stresses are considered as the most important factors limiting crop production. To evaluate the effect of these tow stresses on yield and yield components of corn hybrids, a field experiment was implemented in split plots based on a randomized complete block design in 3 replicates during 2014 at the Research Greenhouse of Ferdowsi University of Mashhad. In this research, chilling stress in two levels (i.e. non-stress, and cold stress) is considered as the main factor and three levels of drought stress (i.e. irrigation equivalent to 100% of plants water requirement, non-stress as control, irrigation equivalent to 75% of plants water requirement, and irrigation equivalent to 50% of plants water requirement) as sub factor and three hybrid corn (i.e. single-cross 704, single-cross 400, single-cross 260). The results showed that the effects of drought and hybrids on traits under study were significant. Cold and drought stresses interaction of different corn varieties on the traits under study (seed number per ear, 100-seed weight, yield, biological yield and harvest index) was also significant. The highest seed yields of hybrid 704 and hybrid 400 under 100% water requirement were 7887 and 6862 kg.ha-1 respectively. Single-cross 400 variety had the highest water productivity in line with the 704 variety with the highest grain yield and water consumption efficiency, water consumption efficiency for biomass production in water-limited conditions increased. Finally, it shows that cold and drought stress interaction resulted in highest water consumption efficiency in the treatments of non-chilling stress and 100% water requirement.http://jcep.iaut.ac.ir/article_536642_d72e7bfda8d843fc375c3a5ee392abfa.pdfBiological yieldDroughtHarvest indexWater use efficiencyWater requirement
collection DOAJ
language fas
format Article
sources DOAJ
author Mohsen Tarighaleslami
Mohammad Kafi
Ahmad Nezami
Reza zarghami
spellingShingle Mohsen Tarighaleslami
Mohammad Kafi
Ahmad Nezami
Reza zarghami
The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
Biological yield
Drought
Harvest index
Water use efficiency
Water requirement
author_facet Mohsen Tarighaleslami
Mohammad Kafi
Ahmad Nezami
Reza zarghami
author_sort Mohsen Tarighaleslami
title The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
title_short The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
title_full The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
title_fullStr The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
title_full_unstemmed The Effect of Cold and Drought Stresses on Yield, Yield Components and Water Use Efficiency of some Corn Hybrids (Zea mays L.)
title_sort effect of cold and drought stresses on yield, yield components and water use efficiency of some corn hybrids (zea mays l.)
publisher Islamic Azad University, Tabriz Branch
series Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
issn 2538-1822
2476-731X
publishDate 2017-12-01
description Cold and drought stresses are considered as the most important factors limiting crop production. To evaluate the effect of these tow stresses on yield and yield components of corn hybrids, a field experiment was implemented in split plots based on a randomized complete block design in 3 replicates during 2014 at the Research Greenhouse of Ferdowsi University of Mashhad. In this research, chilling stress in two levels (i.e. non-stress, and cold stress) is considered as the main factor and three levels of drought stress (i.e. irrigation equivalent to 100% of plants water requirement, non-stress as control, irrigation equivalent to 75% of plants water requirement, and irrigation equivalent to 50% of plants water requirement) as sub factor and three hybrid corn (i.e. single-cross 704, single-cross 400, single-cross 260). The results showed that the effects of drought and hybrids on traits under study were significant. Cold and drought stresses interaction of different corn varieties on the traits under study (seed number per ear, 100-seed weight, yield, biological yield and harvest index) was also significant. The highest seed yields of hybrid 704 and hybrid 400 under 100% water requirement were 7887 and 6862 kg.ha-1 respectively. Single-cross 400 variety had the highest water productivity in line with the 704 variety with the highest grain yield and water consumption efficiency, water consumption efficiency for biomass production in water-limited conditions increased. Finally, it shows that cold and drought stress interaction resulted in highest water consumption efficiency in the treatments of non-chilling stress and 100% water requirement.
topic Biological yield
Drought
Harvest index
Water use efficiency
Water requirement
url http://jcep.iaut.ac.ir/article_536642_d72e7bfda8d843fc375c3a5ee392abfa.pdf
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