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Transcriptional profiling of roots and hypocotyls of soybean comparing control untreated 2-d-old seedlings with flooding treated 2-d-old seedlings.
ORGANISM(S): Glycine max 
Soybean, which provides abundant proteins and edible oil, is an important crop; however, it is very sensitive to flooding stress. The growth and grain yields of soybean are seriously reduced by flooding stress. To explore the initial flooding-tolerant mechanism of soybean, flooding-tolerant mutant l...
ORGANISM(S): Glycine max 
2019-01-09 | PXD003329 | 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
Flooding has a severe negative effect on cultivation in the early stage of soybean growth. To understand the mechanism in early-stage soybean responding to flooding stress, proteomic techniques were used
ORGANISM(S): Glycine max 
2022-02-22 | PXD000689 | Pride
Flooding has a severe negative effect on cultivation in the early stage of soybean growth. To understand the role of protein phosphorylation in early-stage soybean responding to flooding stress, quantitative phosphoproteomic technique was used.
ORGANISM(S): Glycine max 
2014-11-13 | PXD000898 | Pride
To elucidate the mechanism of soybean responding to flooding and drought, organ specific proteomics and time course proteomics were carried out.
ORGANISM(S): Glycine max 
2015-10-06 | PXD001687 | Pride
Flooding and drought are adverse factors for soybean growth. To obtain better insight into the response mechanism of soybean under flooding and drought stresses, organ specificanalysis was performed using gel-free proteomic technique.
ORGANISM(S): Glycine max 
2017-04-26 | PXD005342 | 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
As a stresses sensitive crop, this study will give some clues to enhance soybean tolerance of flooding and drought stresses. To uncover the response mechanisms occurring in the ER triggered by flooding and drought, ER proteomics was performed using gel-free/label-free proteomic approach. Besides, gl...
ORGANISM(S): Glycine max 
2017-04-03 | PXD003397 | Pride
Flooding has a severe negative effect on cultivation in the early stage of soybean growth. To understand the mechanism in early-stage soybean responding to initial flooding stress, nuclear proteomic technique was used.
ORGANISM(S): Glycine max 
2017-04-03 | PXD002429 | Pride
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