Proteomics study reveals the molecular mechanisms underlying water stress tolerance induced by Piriformospora indica in barley
نویسنده:
, , , , , , , ,سال
: 2013
چکیده: Piriformospora indica is amutualistic root endophytic fungus,which transfers several benefits to hosts including enhance plant growth and increase yield under both normal and stress
conditions. It has been shown that P. indica root-colonization enhances water stress tolerance
based on general and non-specific plant-species mechanism. To better understand the
molecular mechanism of P. indica-mediated drought stress tolerance, we designed a set of
comparative experiments to study the impact of P. indica on barely plants cultivar “Golden
Promise” grown under different drought levels [Filed capacity (F.C.) and 25% F.C.]. P. indica enhanced root and shoot biomass of colonized plants under both well-watered and
water-deficit conditions. Proteome analysis of P. indica-colonized barley leaves under
well-treated and water-deficit conditions resulted in detection of 726 reproducibly protein
spots.Mass spectrometry analysis resulted in the identification of 45 differentially accumulated
proteins involved in photosynthesis, reactive oxygen scavenging, metabolisms, signal
transduction, and plant defense responses. Interestingly, P. indica increased the level of proteins
involved in photosynthesis, antioxidative defense system and energy transport. We propose
that P. indica-mediated drought stress tolerance in barely is through photosynthesis
stimulation, energy releasing and enhanced antioxidative capacity in colonized plants.
conditions. It has been shown that P. indica root-colonization enhances water stress tolerance
based on general and non-specific plant-species mechanism. To better understand the
molecular mechanism of P. indica-mediated drought stress tolerance, we designed a set of
comparative experiments to study the impact of P. indica on barely plants cultivar “Golden
Promise” grown under different drought levels [Filed capacity (F.C.) and 25% F.C.]. P. indica enhanced root and shoot biomass of colonized plants under both well-watered and
water-deficit conditions. Proteome analysis of P. indica-colonized barley leaves under
well-treated and water-deficit conditions resulted in detection of 726 reproducibly protein
spots.Mass spectrometry analysis resulted in the identification of 45 differentially accumulated
proteins involved in photosynthesis, reactive oxygen scavenging, metabolisms, signal
transduction, and plant defense responses. Interestingly, P. indica increased the level of proteins
involved in photosynthesis, antioxidative defense system and energy transport. We propose
that P. indica-mediated drought stress tolerance in barely is through photosynthesis
stimulation, energy releasing and enhanced antioxidative capacity in colonized plants.
کلیدواژه(گان): Drought,Symbiosis association,Piriformospora indica,Photosynthesis,Antioxidative capacity,Barley,Proteomics
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Proteomics study reveals the molecular mechanisms underlying water stress tolerance induced by Piriformospora indica in barley
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contributor author | Mehdi Ghabooli | en |
contributor author | Behnam Khatabi | en |
contributor author | فرج اله شهریاری احمدی | en |
contributor author | Mozhgan Sepehri | en |
contributor author | Mehdi Mirzaei | en |
contributor author | Ardeshir Amirkhani | en |
contributor author | Jesús V. Jorrín-Novo | en |
contributor author | Ghasem Hosseini Salekdeh | en |
contributor author | Farajollah Shahriari Ahmadi | fa |
date accessioned | 2020-06-06T13:16:12Z | |
date available | 2020-06-06T13:16:12Z | |
date issued | 2013 | |
identifier uri | http://libsearch.um.ac.ir:80/fum/handle/fum/3348372 | |
description abstract | Piriformospora indica is amutualistic root endophytic fungus,which transfers several benefits to hosts including enhance plant growth and increase yield under both normal and stress conditions. It has been shown that P. indica root-colonization enhances water stress tolerance based on general and non-specific plant-species mechanism. To better understand the molecular mechanism of P. indica-mediated drought stress tolerance, we designed a set of comparative experiments to study the impact of P. indica on barely plants cultivar “Golden Promise” grown under different drought levels [Filed capacity (F.C.) and 25% F.C.]. P. indica enhanced root and shoot biomass of colonized plants under both well-watered and water-deficit conditions. Proteome analysis of P. indica-colonized barley leaves under well-treated and water-deficit conditions resulted in detection of 726 reproducibly protein spots.Mass spectrometry analysis resulted in the identification of 45 differentially accumulated proteins involved in photosynthesis, reactive oxygen scavenging, metabolisms, signal transduction, and plant defense responses. Interestingly, P. indica increased the level of proteins involved in photosynthesis, antioxidative defense system and energy transport. We propose that P. indica-mediated drought stress tolerance in barely is through photosynthesis stimulation, energy releasing and enhanced antioxidative capacity in colonized plants. | en |
language | English | |
title | Proteomics study reveals the molecular mechanisms underlying water stress tolerance induced by Piriformospora indica in barley | en |
type | Journal Paper | |
contenttype | External Fulltext | |
subject keywords | Drought | en |
subject keywords | Symbiosis association | en |
subject keywords | Piriformospora indica | en |
subject keywords | Photosynthesis | en |
subject keywords | Antioxidative capacity | en |
subject keywords | Barley | en |
subject keywords | Proteomics | en |
journal title | Journal of Proteomics | fa |
pages | 289-301 | |
journal volume | 94 | |
journal issue | 1 | |
identifier link | https://profdoc.um.ac.ir/paper-abstract-1038782.html | |
identifier articleid | 1038782 |