Detailed analysis of genome-wide transcriptome profiling in rice root is reported here, following Cr-plant interaction. Such studies are important for the identification of genes responsible for tolerance, accumulation and defense response in plants with respect to Cr stress. Rice root metabolome analysis was also carried out to relate differential transcriptome data to biological processes affected by Cr (VI) stress in rice.
Transcriptomic and metabolomic shifts in rice roots in response to Cr (VI) stress.
Age, Specimen part, Treatment
View SamplesThe Overexpression of AtCAMTA5 leads to higher plant weight and seed weight as compare to Col-0. Under drought condition overexpression lines had reduce water loss,high water use efficiency decline in photosynthesis contributes to 95% survivability wherase Col-0 and camta5 showed enhance sensitivity.Microarray analysis revealed that AtCAMTA5 regulates genes enriched with CAMTA recognition motif like ANAC19, SPL16, aminotransferase, chitinase, MAPK7, SnRK2.2, E3-ligase, RUBISCO, PSI and PSII, etc which were involved in stress response, development, protein modification and photosynthesis.
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Age, Specimen part
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