Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants

Soybean [Glycine max (L.) Merr], is an important industrial oil seed plant. Along with the nutritional value for humans and animals, it has raw materials for various industrial products. In the present study, we investigated the two-dimensional protein expression profiles in salinity and drought to...

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Main Authors: Alp Ayan, Sinan Meriç, Tamer Gümüş, Özge Çelik, Çimen Atak
Format: Article
Language:English
Published: Julius Kühn-Institut 2025-05-01
Series:Journal of Applied Botany and Food Quality
Online Access:https://ojs.openagrar.de/index.php/JABFQ/article/view/17487
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author Alp Ayan
Sinan Meriç
Tamer Gümüş
Özge Çelik
Çimen Atak
author_facet Alp Ayan
Sinan Meriç
Tamer Gümüş
Özge Çelik
Çimen Atak
author_sort Alp Ayan
collection DOAJ
description Soybean [Glycine max (L.) Merr], is an important industrial oil seed plant. Along with the nutritional value for humans and animals, it has raw materials for various industrial products. In the present study, we investigated the two-dimensional protein expression profiles in salinity and drought tolerant mutant plants derived from S04-05 soybean variety by Cs-137 gamma radiation source induced mutations. Altogether 54 different protein spot alterations were identified as salinity and drought responsive by two-dimensional electrophoresis and MALDI-TOF-MS. A protein-protein interaction network was constructed considering significantly altered proteins by STRING analysis software. Identified proteins, which presented differential expressions under both stress conditions, were clustered under 13 distinct groups based on their cellular functions. Two of these biological processes, photosynthesis and carbohydrate metabolism, were found significantly altered by KEGG analysis. Our results contribute proteomic data to salinity and drought tolerance of our soybean mutants, which originated from S04-05, a variety mildly susceptible to salinity and drought. These results may provide a basis for future investigations into the genetic and physiological aspects of both stress tolerances
format Article
id doaj-art-6152d46c1b2a43f8a8caaad0ec6bd91f
institution DOAJ
issn 1613-9216
1439-040X
language English
publishDate 2025-05-01
publisher Julius Kühn-Institut
record_format Article
series Journal of Applied Botany and Food Quality
spelling doaj-art-6152d46c1b2a43f8a8caaad0ec6bd91f2025-08-20T03:08:53ZengJulius Kühn-InstitutJournal of Applied Botany and Food Quality1613-92161439-040X2025-05-019810.5073/JABFQ.2025.098.004Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutantsAlp Ayan0https://orcid.org/0000-0003-3749-0472Sinan Meriç1https://orcid.org/0000-0003-0336-0004Tamer Gümüş2https://orcid.org/0000-0002-5674-4987Özge Çelik3Çimen Atak4Department of Molecular Biology and Genetics, T.C. Istanbul Kültür University, İstanbul, TürkiyeDepartment of Molecular Biology and Genetics, T.C. Istanbul Kültür University, İstanbul, TürkiyeDepartment of Molecular Biology and Genetics, T.C. Istanbul Kültür University, İstanbul, TürkiyeDepartment of Molecular Biology and Genetics, T.C. Istanbul Kültür University, İstanbul, TürkiyeDepartment of Molecular Biology and Genetics, T.C. Istanbul Kültür University, İstanbul, Türkiye Soybean [Glycine max (L.) Merr], is an important industrial oil seed plant. Along with the nutritional value for humans and animals, it has raw materials for various industrial products. In the present study, we investigated the two-dimensional protein expression profiles in salinity and drought tolerant mutant plants derived from S04-05 soybean variety by Cs-137 gamma radiation source induced mutations. Altogether 54 different protein spot alterations were identified as salinity and drought responsive by two-dimensional electrophoresis and MALDI-TOF-MS. A protein-protein interaction network was constructed considering significantly altered proteins by STRING analysis software. Identified proteins, which presented differential expressions under both stress conditions, were clustered under 13 distinct groups based on their cellular functions. Two of these biological processes, photosynthesis and carbohydrate metabolism, were found significantly altered by KEGG analysis. Our results contribute proteomic data to salinity and drought tolerance of our soybean mutants, which originated from S04-05, a variety mildly susceptible to salinity and drought. These results may provide a basis for future investigations into the genetic and physiological aspects of both stress tolerances https://ojs.openagrar.de/index.php/JABFQ/article/view/17487
spellingShingle Alp Ayan
Sinan Meriç
Tamer Gümüş
Özge Çelik
Çimen Atak
Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
Journal of Applied Botany and Food Quality
title Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
title_full Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
title_fullStr Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
title_full_unstemmed Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
title_short Two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma-induced soybean mutants
title_sort two dimensional proteomic analyses revealed salinity and drought tolerance related protein alterations in two gamma induced soybean mutants
url https://ojs.openagrar.de/index.php/JABFQ/article/view/17487
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AT tamergumus twodimensionalproteomicanalysesrevealedsalinityanddroughttolerancerelatedproteinalterationsintwogammainducedsoybeanmutants
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