Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Individual vs. combinatorial effect of elevated CO2 and Mg level on Arabidopsis thaliana liquid cultures by systems analysis of transcriptional profiling


ABSTRACT: This study contributes large-scale genes expression data of molecular function for a plant system under combined of two CO2 concentration and three Mg levels. It provides an additional example of the power of integrated analyses for the comprehensive study of the molecular physiology of complex biological systems. Moreover, taking into consideration the particular interest of the two investigated perturbations in plant biotechnology, enhanced understanding of the molecular physiology of the plants under climate change conditions could lead to the design of novel metabolic engineering strategies to copy with crops to magnesium problems. Examination of two CO2 concentration and three Mg levels of shoot and root Arabidopsis

ORGANISM(S): Arabidopsis thaliana

SUBMITTER: Gulei Jin 

PROVIDER: E-GEOD-64501 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Physiological and Transcriptome Responses to Combinations of Elevated CO2 and Magnesium in Arabidopsis thaliana.

Niu Yaofang Y   Ahammed Golam Jalal GJ   Tang Caixian C   Guo Longbiao L   Yu Jingquan J  

PloS one 20160216 2


The unprecedented rise in atmospheric CO2 concentration and injudicious fertilization or heterogeneous distribution of Mg in the soil warrant further research to understand the synergistic and holistic mechanisms involved in the plant growth regulation. This study investigated the influence of elevated CO2 (800 μL L(-1)) on physiological and transcriptomic profiles in Arabidopsis cultured in hydroponic media treated with 1 μM (low), 1000 μM (normal) and 10,000 μM (high) Mg2+. Following 7-d treat  ...[more]

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