Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits

Little has been done to evaluate the molecular role of ZnO nanoparticles (ZNPs) in regulating biochemical processes and plant yield in response to salt-induced stress. In this study, the molecular response of salt-stressed soybean (‘Giza111’) was assessed under different concentrations of ZNPs (25,...

Full description

Saved in:
Bibliographic Details
Main Authors: Reda Mohamed GAAFAR, Mohamed Lotfi HALAWA, Adel Ramadan EL-SHANSHORY, Abdelhamid Abdelrahim EL-SHAER, Rana Hosny DIAB, Marwa Mahmoud HAMOUDA
Format: Article
Language:English
Published: University of Ljubljana Press (Založba Univerze v Ljubljani) 2022-10-01
Series:Acta Agriculturae Slovenica
Subjects:
Online Access:https://journals.uni-lj.si/aas/article/view/13104
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850225888487014400
author Reda Mohamed GAAFAR
Mohamed Lotfi HALAWA
Adel Ramadan EL-SHANSHORY
Abdelhamid Abdelrahim EL-SHAER
Rana Hosny DIAB
Marwa Mahmoud HAMOUDA
author_facet Reda Mohamed GAAFAR
Mohamed Lotfi HALAWA
Adel Ramadan EL-SHANSHORY
Abdelhamid Abdelrahim EL-SHAER
Rana Hosny DIAB
Marwa Mahmoud HAMOUDA
author_sort Reda Mohamed GAAFAR
collection DOAJ
description Little has been done to evaluate the molecular role of ZnO nanoparticles (ZNPs) in regulating biochemical processes and plant yield in response to salt-induced stress. In this study, the molecular response of salt-stressed soybean (‘Giza111’) was assessed under different concentrations of ZNPs (25, 50, 100, and 200 mg l-1) by measuring some osmolytes, yield parameters, and Na+ and K+ content. The impact of salinity on the mRNA expression levels of three key salt-tolerance related genes (GmCHX1, GmPAP3, and GmSALT3) using qRT-PCR was also determined. The high level of salinity (250 mM NaCl) led to a significant increase in Na+ content, total soluble proteins, and total soluble carbohydrates and significantly upregulated gene expression of GmCHX1, GmPAP3, and GmSALT3, while reducing K+ content, K+/Na+ ratio and all yield parameters compared to control plants. Soaking soybean seeds in various ZNP concentrations, on the other hand, increased K+ content and K+/Na+ ratio while decreasing Na+ content, total soluble proteins, and total soluble carbohydrates in stressed plants, particularly at 50 mg l-1 ZNPs. Furthermore, GmCHX1, GmPAP3, and GmSALT3 expressions were all downregulated at 50 mg l-1 ZNPs, which ultimately improved soybean yield parameters. Accordingly, these results recommend the application of 50 mg l-1 ZNPs for improving the productivity of soybean cultivated in saline soils.
format Article
id doaj-art-f09d81f583eb444bb03cb9db84b1e67c
institution OA Journals
issn 1854-1941
language English
publishDate 2022-10-01
publisher University of Ljubljana Press (Založba Univerze v Ljubljani)
record_format Article
series Acta Agriculturae Slovenica
spelling doaj-art-f09d81f583eb444bb03cb9db84b1e67c2025-08-20T02:05:13ZengUniversity of Ljubljana Press (Založba Univerze v Ljubljani)Acta Agriculturae Slovenica1854-19412022-10-01118311410.14720/aas.2022.118.3.252919496Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traitsReda Mohamed GAAFAR0Mohamed Lotfi HALAWA1Adel Ramadan EL-SHANSHORY2Abdelhamid Abdelrahim EL-SHAER3Rana Hosny DIAB4Marwa Mahmoud HAMOUDA5Botany Department, Faculty of Science, Tanta University, EgyptBotany Department, Faculty of Science, Tanta University, EgyptBotany Department, Faculty of Science, Tanta University, EgyptPhysics Department, Faculty of Science, Kafrelsheikh University, Kafrelsheikh, EgyptBotany Department, Faculty of Science, Tanta University, EgyptBotany Department, Faculty of Science, Tanta University, EgyptLittle has been done to evaluate the molecular role of ZnO nanoparticles (ZNPs) in regulating biochemical processes and plant yield in response to salt-induced stress. In this study, the molecular response of salt-stressed soybean (‘Giza111’) was assessed under different concentrations of ZNPs (25, 50, 100, and 200 mg l-1) by measuring some osmolytes, yield parameters, and Na+ and K+ content. The impact of salinity on the mRNA expression levels of three key salt-tolerance related genes (GmCHX1, GmPAP3, and GmSALT3) using qRT-PCR was also determined. The high level of salinity (250 mM NaCl) led to a significant increase in Na+ content, total soluble proteins, and total soluble carbohydrates and significantly upregulated gene expression of GmCHX1, GmPAP3, and GmSALT3, while reducing K+ content, K+/Na+ ratio and all yield parameters compared to control plants. Soaking soybean seeds in various ZNP concentrations, on the other hand, increased K+ content and K+/Na+ ratio while decreasing Na+ content, total soluble proteins, and total soluble carbohydrates in stressed plants, particularly at 50 mg l-1 ZNPs. Furthermore, GmCHX1, GmPAP3, and GmSALT3 expressions were all downregulated at 50 mg l-1 ZNPs, which ultimately improved soybean yield parameters. Accordingly, these results recommend the application of 50 mg l-1 ZNPs for improving the productivity of soybean cultivated in saline soils.https://journals.uni-lj.si/aas/article/view/13104znonanoparticlessalinitysoybeangene expressionqrt-pcrproductivity
spellingShingle Reda Mohamed GAAFAR
Mohamed Lotfi HALAWA
Adel Ramadan EL-SHANSHORY
Abdelhamid Abdelrahim EL-SHAER
Rana Hosny DIAB
Marwa Mahmoud HAMOUDA
Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
Acta Agriculturae Slovenica
zno
nanoparticles
salinity
soybean
gene expression
qrt-pcr
productivity
title Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
title_full Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
title_fullStr Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
title_full_unstemmed Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
title_short Seed priming with ZNPs reduced expression of salinity tolerance genes in Glycine max L. and improved yield traits
title_sort seed priming with znps reduced expression of salinity tolerance genes in glycine max l and improved yield traits
topic zno
nanoparticles
salinity
soybean
gene expression
qrt-pcr
productivity
url https://journals.uni-lj.si/aas/article/view/13104
work_keys_str_mv AT redamohamedgaafar seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits
AT mohamedlotfihalawa seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits
AT adelramadanelshanshory seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits
AT abdelhamidabdelrahimelshaer seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits
AT ranahosnydiab seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits
AT marwamahmoudhamouda seedprimingwithznpsreducedexpressionofsalinitytolerancegenesinglycinemaxlandimprovedyieldtraits