Back to Search Start Over

Patchwork sequencing of tomato San Marzano and Vesuviano varieties highlights genome-wide variations

Authors :
Massimo Delledonne
Francesca Ferriello
Adriana Sacco
Amalia Barone
Luigi Frusciante
Elisa Zago
Alessandra Traini
Maria Luisa Chiusano
Genny Buson
Paola Tononi
Raffaella D’Alessandro
Maria Raffaella Ercolano
Ercolano, Maria
Sacco, Adriana
Ferriello, F
D'Alessandro, R
Tononi, P
Traini, A
Barone, Amalia
Zago, E
Chiusano, MARIA LUISA
Buson, G
Delledonne, M
Frusciante, Luigi
Source :
BMC Genomics
Publication Year :
2014
Publisher :
Springer Science and Business Media LLC, 2014.

Abstract

Background Investigation of tomato genetic resources is a crucial issue for better straight evolution and genetic studies as well as tomato breeding strategies. Traditional Vesuviano and San Marzano varieties grown in Campania region (Southern Italy) are famous for their remarkable fruit quality. Owing to their economic and social importance is crucial to understand the genetic basis of their unique traits. Results Here, we present the draft genome sequences of tomato Vesuviano and San Marzano genome. A 40x genome coverage was obtained from a hybrid Illumina paired-end reads assembling that combines de novo assembly with iterative mapping to the reference S. lycopersicum genome (SL2.40). Insertions, deletions and SNP variants were carefully measured. When assessed on the basis of the reference annotation, 30% of protein-coding genes are predicted to have variants in both varieties. Copy genes number and gene location were assessed by mRNA transcripts mapping, showing a closer relationship of San Marzano with reference genome. Distinctive variations in key genes and transcription/regulation factors related to fruit quality have been revealed for both cultivars. Conclusions The effort performed highlighted varieties relationships and important variants in fruit key processes useful to dissect the path from sequence variant to phenotype.

Details

ISSN :
14712164
Volume :
15
Database :
OpenAIRE
Journal :
BMC Genomics
Accession number :
edsair.doi.dedup.....f41c0141e897332584762e125acdc7b0