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Untargeted metabolomics has the potential to improve the predictivity of in vitro toxicity models and therefore may aid the reduction of expensive and laborious animal models. Here we describe a chronic nephrotoxicity study conducted on a human renal proximal tubular epithelial cell line (RPTEC/TERT...
2015-09-07 | MTBLS140 | MetaboLights
Analysis of transcriptome response of rhizobia to aluminium toxicity
Aluminum (Al) toxicity is a major factor limiting crop yields on acid soils. In maize, Al tolerance is a complex phenomenon involving multiple genes and physiological mechanisms yet uncharacterized. To begin elucidating the molecular basis of maize Al toxicity and tolerance, we performed a detailed ...
ORGANISM(S): Zea mays 
Purpose: High throughput sequencing has revolutionized methods of microbial pathway analysis in response to various envoronmental stimuli. The aim of this study was to determine mechanisms in which Rhizobium phaseoli employ towards tolerance or resistance to aluminium toxicity through RNA sequencing...
ORGANISM(S): Rhizobium phaseoli 
2022-01-17 | GSE193556 | GEO
Nanowires (NWs), high-aspect-ratio nanomaterials, are increasingly used in technological materials and consumer products and may have toxicological characteristics distinct from nanoparticles. We carried out a comprehensive evaluation of the physicochemical stability of four silver nanowires (AgNWs)...
ORGANISM(S): Daphnia magna 
Aluminum (Al) toxicity, which is caused by the solubilization of Al3 in acid soils resulting in inhibition of root growth and nutrient/water acquisition, is a serious limitation to crop production, because up to one-half of the world?s potentially arable land is acidic. To date, however, no Al tole...
ORGANISM(S): Arabidopsis thaliana 
Aluminum (Al) toxicity, which is caused by the solubilization of Al3 in acid soils resulting in inhibition of root growth and nutrient/water acquisition, is a serious limitation to crop production, because up to one-half of the world?s potentially arable land is acidic. To date, however, no Al tole...
ORGANISM(S): Arabidopsis thaliana 
Aluminum (Al) toxicity and phosphate (Pi) limitation are widespread chronic abiotic and mutually enhancing stresses that profoundly affect crop yield. Both stresses causes a strong inhibition of root growth due to a progressive exhaustion of the stem cell niche. Here we report on a CASEIN KINASE 2 (...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2021-03-29 | PXD018727 | Pride
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