Title of article :
Microarray analysis of differentially expressed mRNAs and miRNAs in young leaves of sorghum under dry-down conditions
Author/Authors :
Luca Pasini، نويسنده , , Mauro Bergonti، نويسنده , , Alessandra Fracasso، نويسنده , , Adriano Marocco، نويسنده , , Stefano Amaducci، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
12
From page :
537
To page :
548
Abstract :
Sorghum is a C4 plant adapted to semi-arid environments, and characterized by high water-use efficiency. To better understand the molecular and physiological basis of drought response the sorghum genotype IS19453, selected as a drought tolerant line during field trials, was evaluated in a “dry-down” experiment under controlled conditions. The incoming stress was monitored by determining the water potential available for 4-leaf-old plants. Control plants were maintained at approximately 2.5 pF, while water stressed plants were sampled at 3.12, 3.65 and 4.14 pF. Transcriptome analysis was monitored using a high density microarray containing all available sorghum TC sequences. Drought affected gene expression at 4.14 pF; 1205 genes resulted up-regulated. Most of the differentially expressed genes were involved in regulation of transcription (bZIPs, MYBs, HOXs), signal transduction (phosphoesterases, kinases, phosphatases), carbon metabolism (NADP-ME), detoxification (CYPs, GST, AKRs), osmoprotection mechanisms (P5CS) and stability of protein membranes (DHN1, LEA, HSPs). Several of them could be located in stay green QTLs. Eight were selected and validated by qRT-PCR. A dedicated miRNA microarray allowed the identification of four families of miRNAs up-regulated in the earlier phase of stress, while one family was down-regulated. The selected drought related genes could be used to screen for potential drought tolerance in other sorghum genotypes.
Keywords :
Microarray , Sorghum bicolor , drought stress , Differential gene expression
Journal title :
Journal of Plant Physiology
Serial Year :
2014
Journal title :
Journal of Plant Physiology
Record number :
1282822
Link To Document :
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