microarray raw data (cel files) (Biotechnology Information)
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Microarray Raw Data (Cel Files), supplied by Biotechnology Information, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microarray+data+file+(cel)/raw+microarray+data/pmc06672014-200-0-16
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Expressing:Article Title: Transcript analysis of abscisic acid-inducible genes in response to different abiotic disturbances in two indica rice varieties Article Snippet: The present study focused upon comprehensive analysis of the expression of stress-responsive genes at different time points in two indica rice varieties, IR-64 (moderately salt-sensitive) and Nonabokra (salt-tolerant), under salinity, dehydration and cold, and exogenous ABA treatment.. The massively parallel signature sequencing and publicly-available microarray data indicated the physiological role of the concerned genes in different tissues.. Gene expression through semi-quantitative reverse transcriptase-polymerase chain reaction followed by factorial analyses of variance identified that members of the antioxidant genes (OsCAT,OsSOD,OsGR2 and OsAPX8) showed early response and higher expression under different abiotic stresses in IR-64. Microarray:Article Title: Transcript analysis of abscisic acid-inducible genes in response to different abiotic disturbances in two indica rice varieties Article Snippet: The present study focused upon comprehensive analysis of the expression of stress-responsive genes at different time points in two indica rice varieties, IR-64 (moderately salt-sensitive) and Nonabokra (salt-tolerant), under salinity, dehydration and cold, and exogenous ABA treatment.. The massively parallel signature sequencing and publicly-available microarray data indicated the physiological role of the concerned genes in different tissues.. Gene expression through semi-quantitative reverse transcriptase-polymerase chain reaction followed by factorial analyses of variance identified that members of the antioxidant genes (OsCAT,OsSOD,OsGR2 and OsAPX8) showed early response and higher expression under different abiotic stresses in IR-64. Article Title: Comparative Analysis of the Expression of Candidate Genes Governing Salt Tolerance and Yield Attributes in Two Contrasting Rice Genotypes, Encountering Salt Stress During Grain Development Article Snippet: The rice grain filling process is of inordinate importance as it is directly associated with productivity and rice quality.. Salt stress occurring during early grain development hinders seed development, resulting in yield penalty.. To dissect transcriptional responses and to identify promising candidate genes, comparative expression profiling of key stress-responsive and yield-related genes was performed in developing (10 DAP, 20 DAP, and 30 DAP) and matured grains of salt-sensitive (IR-64) and salt-tolerant (Nonabokra) rice cultivars under salt stress (250 mM NaCl) along with the analyses of grain yield parameters. Gene Expression:Article Title: Transcript analysis of abscisic acid-inducible genes in response to different abiotic disturbances in two indica rice varieties Article Snippet: The present study focused upon comprehensive analysis of the expression of stress-responsive genes at different time points in two indica rice varieties, IR-64 (moderately salt-sensitive) and Nonabokra (salt-tolerant), under salinity, dehydration and cold, and exogenous ABA treatment.. The massively parallel signature sequencing and publicly-available microarray data indicated the physiological role of the concerned genes in different tissues.. Gene expression through semi-quantitative reverse transcriptase-polymerase chain reaction followed by factorial analyses of variance identified that members of the antioxidant genes (OsCAT,OsSOD,OsGR2 and OsAPX8) showed early response and higher expression under different abiotic stresses in IR-64. Article Title: Comparative Analysis of the Expression of Candidate Genes Governing Salt Tolerance and Yield Attributes in Two Contrasting Rice Genotypes, Encountering Salt Stress During Grain Development Article Snippet: The rice grain filling process is of inordinate importance as it is directly associated with productivity and rice quality.. Salt stress occurring during early grain development hinders seed development, resulting in yield penalty.. To dissect transcriptional responses and to identify promising candidate genes, comparative expression profiling of key stress-responsive and yield-related genes was performed in developing (10 DAP, 20 DAP, and 30 DAP) and matured grains of salt-sensitive (IR-64) and salt-tolerant (Nonabokra) rice cultivars under salt stress (250 mM NaCl) along with the analyses of grain yield parameters. |
