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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
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
Soybean (Glycine max L. cv Enrei) seeds were sterilized with 2% sodium hypochlorite solution and then thoroughly rinsed in water. The sterilized seeds were sown 4 cm inside surface of sand in 450 mL of quartz seedling cases wetted with 150 mL water and grown at 25°C and 70% humidity in a growth cham...
ORGANISM(S): Glycine max 
2015-05-26 | PXD001567 | 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
Soybean is a nutritionally important crop that exhibits reductions in growth and yields under drought stress. To investigate soybean responses during post-drought recovery, a gel-free proteomic technique was used to examine the protein profile. Two-day-old soybeans were stressed with drought for 4 d...
ORGANISM(S): Glycine max 
2016-06-16 | PXD003650 | Pride
Mitochondrial Proteomics under flooding stress in roots of soybean plants
ORGANISM(S): Glycine max 
2016-08-10 | PXD001477 | Pride
To decipher stress responses under flooding and drought as well as flooding-tolerant mechanisms in soybean, the mathematic biological approach of simulation model was applied. Furthermore, wild-type soybean with ABA treatment and flooding-tolerant mutant line, which displayed flooding tolerance, wer...
ORGANISM(S): Glycine max 
2018-10-26 | PXD005680 | 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
Catharanthus roseus produces a variety of indole alkaloids with significant biological activities. The indole alkaloids including catharanthine, vindolinine, ajmalicine and the precursor strictosidine were dramatically induced in the leaves following binary stress. To profile the modification of ind...
ORGANISM(S): Catharanthus roseus var. roseus 
2015-08-24 | PXD001937 | Pride
To understand the drought responsive mechanisms and the harmful effects of stress, it is necessary to develop drought tolerant genotype. In this study, drought-sensitive and -tolerant fennel genotypes were selected. Using these materials, a gel-free/label-free proteomic technique was performed to id...
ORGANISM(S): Foeniculum vulgare 
2017-09-11 | PXD006040 | Pride
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