4.7 Article

High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera

Journal

BMC GENOMICS
Volume 10, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/1471-2164-10-558

Keywords

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Funding

  1. Ministero Politiche Agricole e Forestali
  2. Friuli Innovazione
  3. Federazione BCC
  4. Fondazione CRUP
  5. Fondazione Carigo
  6. Fondazione CRT
  7. Vivai Cooperativi Rauscedo
  8. Eurotech
  9. Livio Felluga
  10. Marco Felluga
  11. Venica e Venica
  12. Le Vigne di Zamo
  13. Fondazione Cariverona Project Centro di Genomica Funzionale Vegetale
  14. Fondazione Monte dei Paschi di Siena
  15. Fondazione Cassa di Risparmio di Lucca

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Background: MicroRNAs are short (similar to 21 base) single stranded RNAs that, in plants, are generally coded by specific genes and cleaved specifically from hairpin precursors. MicroRNAs are critical for the regulation of multiple developmental, stress related and other physiological processes in plants. The recent annotation of the genome of the grapevine (Vitis vinifera L.) allowed the identification of many putative conserved microRNA precursors, grouped into multiple gene families. Results: Here we use oligonucleotide arrays to provide the first indication that many of these microRNAs show differential expression patterns between tissues and during the maturation of fruit in the grapevine. Furthermore we demonstrate that whole transcriptome sequencing and deep-sequencing of small RNA fractions can be used both to identify which microRNA precursors are expressed in different tissues and to estimate genomic coordinates and patterns of splicing and alternative splicing for many primary miRNA transcripts. Conclusion: Our results show that many microRNAs are differentially expressed in different tissues and during fruit maturation in the grapevine. Furthermore, the demonstration that whole transcriptome sequencing can be used to identify candidate splicing events and approximate primary microRNA transcript coordinates represents a significant step towards the large-scale elucidation of mechanisms regulating the expression of microRNAs at the transcriptional and post-transcriptional levels.

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