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Seed development dedicates to reserve synthesis and accumulation and uncovering its genetic and biochemical mechanisms has been a major research focus. Although proteomic and transcriptomic analyses revealed dynamic changes of genes and enzymes involved, the information regarding concomitant meta...

2016-05-03 | MTBLS286 | MetaboLights

Seed development dedicates to reserve synthesis and accumulation and uncovering its genetic and biochemical mechanisms has been a major research focus. Although proteomic and transcriptomic analyses revealed dynamic changes of genes and enzymes involved, the information regarding concomitant meta...

2016-05-03 | MTBLS287 | MetaboLights

Seed development dedicates to reserve synthesis and accumulation and uncovering its genetic and biochemical mechanisms has been a major research focus. Although proteomic and transcriptomic analyses revealed dynamic changes of genes and enzymes involved, the information regarding concomitant meta...

2016-05-03 | MTBLS288 | MetaboLights
Nucleus as the important subcellular organ of plant cell is responsible for storing most genetic information and controlling the plant's activities. Seed germination is an important stage for plant growth. To understand the role of nuclear protein and its phosphorylation during rice seed germination...
ORGANISM(S): Oryza sativa (Rice) 
2016-03-17 | PXD001774 | Pride
High temperature markedly reduces the yields and quality of rice grains. To identify the mechanisms underlying heat stress-induced responses in rice grains, proteomic technique was used. Khao Dawk Mali 105 rice grains at the milky, doughy, and mature stages of development after flowering were treate...
ORGANISM(S): Oryza sativa (Rice) 
2015-12-17 | PXD003156 | Pride
To elucidate early stress response signalling networks evolved in rice, we have demonstrated the comparative proteome analysis of 10-day-old IR-64 rice seedlings (Oryza sativa L. cv. IR-68) subjected to 200 mM NaCl stress for 6 hours and control condition
ORGANISM(S): Oryza sativa (Rice) 
2026-04-15 | PXD024902 | Pride
To better understand the molecular mechanism underlying the rice root response to low nitrogen and high nitrogen, comparative proteomic analysis was performed using tandem mass tag (TMT)-based proteomics, and related proteins were further characterized.
ORGANISM(S): Oryza sativa (Rice) 
2021-09-09 | PXD016653 | Pride
MSP1 is a Magnaporthe oryzae secreted protein that elicits defense responses in rice. However, the molecular mechanism of MSP1 action is largely elusive. Here, we employed a TMT-based quantitative proteomic analysis of cytoplasmic as well as plasma membrane proteins to decipher the MSP1 induced sign...
ORGANISM(S): Oryza sativa (Rice) 
2019-08-30 | PXD014758 | Pride
In this study, we focused on the profiling of rice young seedling phosphosites, phosphopeptides and phosphorylation intensity dynamics in response to ABA by employing a label-free, MS-based phosphoproteomic approach, and aimed to reveal the biological significance of protein phosphorylation in ABA s...
ORGANISM(S): Oryza sativa (Rice) 
2017-01-17 | PXD004939 | Pride
Transfer of genetic traits from wild or related species into cultivated rice is nowadays an important aim in rice breeding. Breeders use genetic crosses to introduce desirable genes from exotic germplasms into cultivated rice varieties. However, in many hybrids there is only a low level of pairing (...
ORGANISM(S): Oryza sativa (Rice) 
2014-08-13 | PXD001058 | Pride
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