Polyploids are generally classified as autopolyploids, derived from a single species, and allopolyploids, arising from interspecific hybridization. The former represent ideal materials with which to study the consequences of genome doubling and ascertain whether there are molecular and functional rules operating following polyploidization events. To investigate whether the effects of autopolyploidization are common to different species, or if species-specific or stochastic events are prevalent, we performed a comprehensive transcriptomic and metabolomic characterization of diploids and autotetraploids of Solanum commersonii and Solanum bulbocastanum. Autopolyploidization remodelled the transcriptome and the metabolome of both species. In S. commersonii, differentially expressed genes (DEGs) were highly enriched in pericentromeric regions. Most changes were stochastic, suggesting a strong genotypic response. However, a set of robustly regulated transcripts and metabolites was also detected, including purine bases and nucleosides, which are likely to underlie a common response to polyploidization. We hypothesize that autopolyploidization results in nucleotide pool imbalance, which in turn triggers a genomic shock responsible for the stochastic events observed. The more extensive genomic stress and the higher number of stochastic events observed in S. commersonii with respect to S. bulbocastanum could be the result of the higher nucleoside depletion observed in this species.

Transcriptome and metabolome of synthetic Solanum autotetraploids reveal key genomic stress events following polyploidization / Fasano, Carlo; Diretto, Gianfranco; Aversano, Riccardo; DI MATTEO, Antonio; Frusciante, Luigi; Giuliano, Giovanni; Carputo, Domenico. - In: NEW PHYTOLOGIST. - ISSN 0028-646X. - 210:4(2016), pp. 1382-1394. [10.1111/nph.13878]

Transcriptome and metabolome of synthetic Solanum autotetraploids reveal key genomic stress events following polyploidization

FASANO, CARLO
Co-primo
Formal Analysis
;
AVERSANO, RICCARDO
Investigation
;
DI MATTEO, ANTONIO
Investigation
;
FRUSCIANTE, LUIGI
Supervision
;
CARPUTO, DOMENICO
Ultimo
Supervision
2016

Abstract

Polyploids are generally classified as autopolyploids, derived from a single species, and allopolyploids, arising from interspecific hybridization. The former represent ideal materials with which to study the consequences of genome doubling and ascertain whether there are molecular and functional rules operating following polyploidization events. To investigate whether the effects of autopolyploidization are common to different species, or if species-specific or stochastic events are prevalent, we performed a comprehensive transcriptomic and metabolomic characterization of diploids and autotetraploids of Solanum commersonii and Solanum bulbocastanum. Autopolyploidization remodelled the transcriptome and the metabolome of both species. In S. commersonii, differentially expressed genes (DEGs) were highly enriched in pericentromeric regions. Most changes were stochastic, suggesting a strong genotypic response. However, a set of robustly regulated transcripts and metabolites was also detected, including purine bases and nucleosides, which are likely to underlie a common response to polyploidization. We hypothesize that autopolyploidization results in nucleotide pool imbalance, which in turn triggers a genomic shock responsible for the stochastic events observed. The more extensive genomic stress and the higher number of stochastic events observed in S. commersonii with respect to S. bulbocastanum could be the result of the higher nucleoside depletion observed in this species.
2016
Transcriptome and metabolome of synthetic Solanum autotetraploids reveal key genomic stress events following polyploidization / Fasano, Carlo; Diretto, Gianfranco; Aversano, Riccardo; DI MATTEO, Antonio; Frusciante, Luigi; Giuliano, Giovanni; Carputo, Domenico. - In: NEW PHYTOLOGIST. - ISSN 0028-646X. - 210:4(2016), pp. 1382-1394. [10.1111/nph.13878]
File in questo prodotto:
File Dimensione Formato  
Fasano et al., 2016 - New Phytologist.pdf

solo utenti autorizzati

Descrizione: Free full text from publisher
Tipologia: Versione Editoriale (PDF)
Licenza: Dominio pubblico
Dimensione 738.57 kB
Formato Adobe PDF
738.57 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/630209
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 45
  • ???jsp.display-item.citation.isi??? 40
social impact