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Because of the tremendous use of NPs in the agricultural sector (Vernikov et al., 2009) and their interactions with the plants, the effect of NPs in plants needs to be explored at the molecular level. To investigate the effects of varying sizes of silver NPs on early-stage soybean under flooding str...
ORGANISM(S): Glycine max 
2016-08-08 | PXD003711 | Pride
This project focused on proteomics profiling in the roots of two wheat varieties (BARANI-70 and NARC-09) in a hydroponic experiment under arsenate stress. The results revealed a total of 67 differentially expressed proteins (DEPS) in BARANI-70 and 89 in the NARC-09 variety. The identified proteins w...
ORGANISM(S): Triticum Aestivum 
2023-11-07 | PXD046761 |
Flooding stress has a negative impact on soybean cultivation because it severely impairs growth and development. To understand the flooding responsive mechanism in early stage soybeans, a glycoproteomic technique was used
ORGANISM(S): Glycine max 
2014-12-08 | PXD001350 | Pride
Flooding stress has a negative impact on the soybean cultivation in early growth stages. In order to understand the effect of aluminum oxide nanoparticles on the soybean growth under flooding stress, quantitative proteomics technique was used.
ORGANISM(S): Glycine max 
2015-08-31 | PXD002005 | Pride
2-day-old soybeans were treated with flooding and flooding with aluminum oxide nanoparticles of three varying sizes. Total proteins extracted from root including hypocotyl and mitochondrial proteins extracted from root tip were analyzed by nanoLC-MS/MS.
ORGANISM(S): Glycine max 
2017-04-03 | PXD003630 | Pride
Flooding stress has a negative impact on the soybean cultivation in early growth stages. In order to understand the effect of nanosilver on the soybean growth under flooding stress, quantitative proteomics technique was used.
ORGANISM(S): Glycine max 
2016-12-14 | PXD001579 | Pride
The present study highlights the phytotoxicity of nanoparticles (NPs) to soybean roots and leaves at proteome level. The effect of three NPs Al2O3, ZnO, and Ag suspensions on soybean was evaluated.
ORGANISM(S): Glycine max 
2015-11-16 | PXD001923 | Pride
To elucidate Al2O3 NPs role in recovery of soybean under flooding stress, gel-free proteomic technique was used. The proteomic analysis of root including hypocotyl at 2, and 4 days of flooding with 50 ppm Al2O3 NPs leading to subsequent removal as compared to flooding was performed.
ORGANISM(S): Glycine max 
2016-04-19 | PXD003372 | Pride
A Comparative Proteomic Analysis of Engineered and Green Synthesized Silver Nanoparticles on Soybean Seedlings
ORGANISM(S): Glycine Max 
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