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Series GSE28751 Query DataSets for GSE28751
Status Public on Apr 30, 2011
Title High-throughput sequencing of small RNAs in Capsicum annuum
Organism Capsicum annuum
Experiment type Non-coding RNA profiling by high throughput sequencing
Summary Small RNAs (21-24 nt) are pivotal regulators of gene expression that guide both transcriptional and post-transcriptional silencing mechanisms in diverse eukaryotes, including most if not all plants. MicroRNAs (miRNAs) and short interfering RNAs (siRNAs) are the two major types, both of which have a demonstrated and important role in plant development, stress responses and pathogen resistance. In this work, we used a deep sequencing approach (Sequencing-By-Synthesis, or SBS) to develop sequence resources of small RNAs from different Capsicum annuum tissues (including leaves, flowers and fruit). The high depth of the resulting datasets enabled us to examine in detail critical small RNA features, such as size distribution, tissue-specific regulation and sequence conservation between different organs in this species. We also developed database resources and a dedicated website (http://smallrna.udel.edu/) with computational tools for allowing other users to identify new miRNAs or siRNAs involved in specific regulatory pathways, verify the degree of conservation of these sequences in other plant species and map small RNAs on genes or larger regions of the maize genome under study.
 
Overall design Small RNA libraries were derived from leaves, flowers and fruit of Capsicum annuum. Total RNA was isolated using the TriReagent (Molecular Research Center) for leaves and flowers and the Plant RNA Purification Reagent (Invitrogen) for fruit, and submitted to Illumina (Hayward, CA, http://www.illumina.com) for small RNA library construction using approaches described in (Lu et al., 2007) with minor modifications. The small RNA libraries were sequenced with the Sequencing-By-Synthesis (SBS) technology by Illumina. PERL scripts were designed to remove the adapter sequences and determine the abundance of each distinct small RNA. We thank Barbara Baker for providing the plant material, as well as Kan Nobuta and Gayathri Mahalingam for assistance with the computational methods.
 
Contributor(s) De Paoli E, Accerbi M, Green PJ, Meyers BC
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Submission date Apr 20, 2011
Last update date Jun 11, 2013
Contact name Emanuele De Paoli
E-mail(s) emanuele.depaoli@gmail.com
Phone 00390432558676
Organization name University of Udine
Department Agricultural, Food, Environmental and Animal Sciences
Lab E. De Paoli
Street address via delle Scienze 206
City Udine
State/province UDINE
ZIP/Postal code 33100
Country Italy
 
Platforms (1)
GPL13435 Illumina Genome Analyzer II (Capsicum annuum)
Samples (3)
GSM712519 Small RNAs from Capsicum annuum leaves
GSM712520 Small RNAs from Capsicum annuum flowers
GSM712521 Small RNAs from Capsicum annuum fruit
This SubSeries is part of SuperSeries:
GSE28755 Comparative sequence analysis of plant small RNAs
Relations
BioProject PRJNA143103

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Supplementary data files not provided
Processed data included within Sample table

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