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In colorectal cancer, p53 is commonly inactivated, associated with chemo-resistance, and marks the transition from non-invasive to invasive disease. Cancers, including colorectal cancer, are thought to be diseases of aberrant stem cell populations, as stem cells are able to self-renew, making them l...
2014-05-01 | MTBLS69 | MetaboLights
In this study, using 2 glutinous sorghum and 2 non-glutinous sorghum as research objects, and their differences in grain appearance color, peel thickness, starch structure and small molecule metabolites were analyzed and compared. The results showed that the grain of 2 glutinous sorghum was red, and...
2024-11-28 | MTBLS11382 | MetaboLights

This study presents an untargeted metabolomics analysis of root exudates from sorghum (Sorghum bicolor) under control and severe drought conditions. Samples were collected from experimental sites in Shanxi, China. The study aims to investigate metabolic changes in sorghum root exudates in respons...

2026-06-09 | MTBLS14131 | MetaboLights
This study explored the drought resistance of sorghum through metabolomics and transcriptomics analysis. Screening drought tolerant variety GL220 and drought sensitive variety GL98 revealed significant differences in metabolite and gene expression under drought conditions. Through database annotatio...
2025-05-29 | MTBLS11479 | MetaboLights
This study utilized next generation sequencing technology (RNA-Seq) to examine the transcriptome of sorghum plants challenged with osmotic stress and exogenous abscisic acid (ABA) to elucidate those genes and gene networks that contribute to sorghum's tolerance to water-limiting environments with a ...
ORGANISM(S): Sorghum bicolor 
This experiment contains the subset of data corresponding to sorghum RNA-Seq data from experiment E-GEOD-50464 (http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-50464/), which goal is to examine the transcriptome of various Sorghum bicolor (BTx623) tissues: flowers, vegetative and floral meriste...
ORGANISM(S): Sorghum bicolor 
This study utilized next generation sequencing technology (RNA-Seq and BS-Seq) to examine the transcriptome and methylome of various tissues within sorghum plants with the ultimate goal of improving the Sorghum bicolor annotation We examined the mRNA of various Sorghum bicolor (BTx623) tissues (flow...
ORGANISM(S): Sorghum bicolor 
We selected 11 tissues from sorghum reference genome line BTX623 for comparative study between Maize and sorghum. These 11 tissues were selected at different development stages at Cold Spring Harbor Laboratory upland farm, RNA were extracted, library was made and sequenced on HiSeq2500 PE125 platfo...
ORGANISM(S): Sorghum bicolor 
Bioenergy sorghum’s large and deep nodal root system and associated microbiome enables uptake of water and nutrients from and deposition of soil organic carbon into soil profiles, key contributors to the crop’s resilience and sustainability. The goal of this study was to increase our understanding o...
ORGANISM(S): Sorghum bicolor 
The present study is expected to reveal differentially expressed genes under drought stress of Sorghum bicolor. The seeds of Sorghum genotype drought tolerant (DT) were grown at 28-32°C day/night temperature with 12/12 h light/dark period in the phytotron glass house. The fully opened uppermost leav...
ORGANISM(S): Sorghum bicolor 
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