Project description:Small RNAs especially small inhibiting RNAs (siRNAs) and microRNAs (miRNAs) play essential role in the regulation of gene expression in plants. These non coding RNAs are processed by the DICER like proteins into 21-24 nucleotides single stranded molecules that guide the activity of RNA induced silencing complex. This complex along with the processed small RNA identifies the cognate mRNA and brings about sequence specific mRNA degradation thereby silencing the gene expression. The small RNA profile is unique for each plant tissue at a given point of time. High throughput sequencing method allows the study of differential expression of these small RNAs. Deep sequencing of small RNAs derived from the leaves of an elite cultivar of banana cv. Grand Naine (‘Cavendish’ subgroup with AAA genotype) was carried out. Generation of complete small RNA profile of banana cv. Grand Naine for comparison with similar databases
Project description:Small RNAs especially small inhibiting RNAs (siRNAs) and microRNAs (miRNAs) play essential role in the regulation of gene expression in plants. These non coding RNAs are processed by the DICER like proteins into 21-24 nucleotides single stranded molecules that guide the activity of RNA induced silencing complex. This complex along with the processed small RNA identifies the cognate mRNA and brings about sequence specific mRNA degradation thereby silencing the gene expression. The small RNA profile is unique for each plant tissue at a given point of time. High throughput sequencing method allows the study of differential expression of these small RNAs. Deep sequencing of small RNAs derived from the leaves of an elite cultivar of banana cv. Grand Naine (‘Cavendish’ subgroup with AAA genotype) was carried out.
Project description:Comparative transcriptome analysis of banana (Musa acuminata L. AAA group, cv. Cavendish) leaves and roots in response to low-potassium stress