Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi

The effects of two mycorrhizal fungi species on grain yield, yield components, relative water content (RWC) and chlorophyll content in maize (SC704) under water deficit stress, under field experiment was assessed out as a split plot design with four replications in 2016 at Moghan Research Station. W...

Full description

Bibliographic Details
Main Authors: v Nasrollahzade, m Yusefi, a Ghosemi, a Bandehhagh
Format: Article
Language:fas
Published: University of Tabriz 2017-12-01
Series:Journal of Agricultural Science and Sustainable Production
Subjects:
Online Access:http://sustainagriculture.tabrizu.ac.ir/article_6974_ea5db48372ed44db94906b09a01394d2.pdf
id doaj-1fe76af73d644f2484d1e8cba16cc8e3
record_format Article
spelling doaj-1fe76af73d644f2484d1e8cba16cc8e32020-11-24T23:17:49ZfasUniversity of TabrizJournal of Agricultural Science and Sustainable Production2476-43102476-43292017-12-0127481926974Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungiv Nasrollahzade0m Yusefi1a Ghosemi2a Bandehhagh31- گروه علوم کشاورزی، دانشگاه پیام نور، تهران1- گروه علوم کشاورزی، دانشگاه پیام نور، تهران2- باشگاه پژوهشگران جوان و نخبگان، واحد تبریز، دانشگاه آزاد اسلامی تبریز1- گروه علوم کشاورزی، دانشگاه پیام نور، تهرانThe effects of two mycorrhizal fungi species on grain yield, yield components, relative water content (RWC) and chlorophyll content in maize (SC704) under water deficit stress, under field experiment was assessed out as a split plot design with four replications in 2016 at Moghan Research Station. Water stress treatments included commonly available irrigation water referred to as control and the interrupted irrigation before flowering as the main plot, and two different mycorrhiza species, including Glomus mosseae and Glomus etunicatum and also a control (without any inoculation) as sub plots. Results showed that water stress significantly decreased grain yield, yield components, relative water content (RWC) and chlorophyll content. The applied water deficit stress reduced grain yield, yield components, RWC and chlorophyll content about 14, 13, 20 and 13 percent, respectively. Mycorrhizal fungi increased plant height, RWC and chlorophyll content in maize. Interaction between water stress and strains of mycorrhiza had only an impact on grain yield and 100-seed weight. The maximum grain yield and 100-seed weight were recorded in plots irrigated in normal condition and inoculated with G. mosseae species on control irrigation. Based on the results of this study, for enhancing grain yield and chlorophyll content using mycorrhizal fungi especially, G. mosseae species was recommended.http://sustainagriculture.tabrizu.ac.ir/article_6974_ea5db48372ed44db94906b09a01394d2.pdfChlorophyll ContentMaizeMycorrhizaYieldWater Deficit Stress
collection DOAJ
language fas
format Article
sources DOAJ
author v Nasrollahzade
m Yusefi
a Ghosemi
a Bandehhagh
spellingShingle v Nasrollahzade
m Yusefi
a Ghosemi
a Bandehhagh
Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
Journal of Agricultural Science and Sustainable Production
Chlorophyll Content
Maize
Mycorrhiza
Yield
Water Deficit Stress
author_facet v Nasrollahzade
m Yusefi
a Ghosemi
a Bandehhagh
author_sort v Nasrollahzade
title Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
title_short Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
title_full Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
title_fullStr Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
title_full_unstemmed Grain Yield, Yield Components and Relative Water Content in Maize (Zea mays L.) under Water Deficit Stress and two Mycorrhizal Fungi
title_sort grain yield, yield components and relative water content in maize (zea mays l.) under water deficit stress and two mycorrhizal fungi
publisher University of Tabriz
series Journal of Agricultural Science and Sustainable Production
issn 2476-4310
2476-4329
publishDate 2017-12-01
description The effects of two mycorrhizal fungi species on grain yield, yield components, relative water content (RWC) and chlorophyll content in maize (SC704) under water deficit stress, under field experiment was assessed out as a split plot design with four replications in 2016 at Moghan Research Station. Water stress treatments included commonly available irrigation water referred to as control and the interrupted irrigation before flowering as the main plot, and two different mycorrhiza species, including Glomus mosseae and Glomus etunicatum and also a control (without any inoculation) as sub plots. Results showed that water stress significantly decreased grain yield, yield components, relative water content (RWC) and chlorophyll content. The applied water deficit stress reduced grain yield, yield components, RWC and chlorophyll content about 14, 13, 20 and 13 percent, respectively. Mycorrhizal fungi increased plant height, RWC and chlorophyll content in maize. Interaction between water stress and strains of mycorrhiza had only an impact on grain yield and 100-seed weight. The maximum grain yield and 100-seed weight were recorded in plots irrigated in normal condition and inoculated with G. mosseae species on control irrigation. Based on the results of this study, for enhancing grain yield and chlorophyll content using mycorrhizal fungi especially, G. mosseae species was recommended.
topic Chlorophyll Content
Maize
Mycorrhiza
Yield
Water Deficit Stress
url http://sustainagriculture.tabrizu.ac.ir/article_6974_ea5db48372ed44db94906b09a01394d2.pdf
work_keys_str_mv AT vnasrollahzade grainyieldyieldcomponentsandrelativewatercontentinmaizezeamayslunderwaterdeficitstressandtwomycorrhizalfungi
AT myusefi grainyieldyieldcomponentsandrelativewatercontentinmaizezeamayslunderwaterdeficitstressandtwomycorrhizalfungi
AT aghosemi grainyieldyieldcomponentsandrelativewatercontentinmaizezeamayslunderwaterdeficitstressandtwomycorrhizalfungi
AT abandehhagh grainyieldyieldcomponentsandrelativewatercontentinmaizezeamayslunderwaterdeficitstressandtwomycorrhizalfungi
_version_ 1725583165457694720