Association mapping reveals the genetic architecture of tomato response to water deficit: focus on major fruit quality traits.
Elise Albert,Vincent Segura,Justine Gricourt,Julien Bonnefoi,Laurent Derivot,Mathilde Causse +5 more
TL;DR: Tomato quality could be improved under deficit irrigation while maintaining yield and candidate genes related to primary metabolism were identified.
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Abstract: Water scarcity constitutes a crucial constraint for agriculture productivity. High-throughput approaches in model plant species identified hundreds of genes potentially involved in survival under drought, but few having beneficial effects on quality and yield. Nonetheless, controlled water deficit may improve fruit quality through higher concentration of flavor compounds. The underlying genetic determinants are still poorly known. In this study, we phenotyped 141 highly diverse small fruit tomato accessions for 27 traits under two contrasting watering conditions. A subset of 55 accessions exhibited increased metabolite contents and maintained yield under water deficit. Using 6100 single nucleotide polymorphisms (SNPs), association mapping revealed 31, 41, and 44 quantitative trait loci (QTLs) under drought, control, and both conditions, respectively. Twenty-five additional QTLs were interactive between conditions, emphasizing the interest in accounting for QTLs by watering regime interactions in fruit quality improvement. Combining our results with the loci previously identified in a biparental progeny resulted in 11 common QTLs and contributed to a first detailed characterization of the genetic determinants of response to water deficit in tomato. Major QTLs for fruit quality traits were dissected and candidate genes were proposed using expression and polymorphism data. The outcomes provide a basis for fruit quality improvement under deficit irrigation while limiting yield losses.
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Tomato Fruit Development and Metabolism
Muriel Quinet,Trinidad Angosto,Fernando J. Yuste-Lisbona,Rémi Blanchard-Gros,Servane Bigot,Juan Pablo Martínez,Stanley Lutts +6 more
TL;DR: This review provides an overview of the current understanding of tomato fruit metabolism by detailing the genetic and hormonal control of fruit development and ripening, and document the primary metabolism of tomato fruits, with a special focus on sugar, organic acid, and amino acid metabolism.
Tomato quality as influenced by preharvest factors
Nadia Bertin,Michel Génard +1 more
TL;DR: This review focuses on tomato quality as influenced by pre-harvest factors, and quality is defined from the consumer’s point of view, i.e. through fruit size or fresh mass, colour, taste, flavour, texture and health value.
150
Trait discovery and editing in tomato
TL;DR: Insight is provided into the major tomato traits and underlying causal genetic variations discovered so far and the existing genetic resources and most recent strategies for trait discovery in tomato and the opportunities offered by CRISPR/Cas9 and their exploitation for trait editing are explored.
149
Analysis of wild tomato introgression lines elucidates the genetic basis of transcriptome and metabolome variation underlying fruit traits and pathogen response
Jedrzej Szymanski,Jedrzej Szymanski,Samuel Bocobza,Samuel Bocobza,Sayantan Panda,Sayantan Panda,Prashant D. Sonawane,Pablo D. Cárdenas,Justin Lashbrooke,Avinash Kamble,Nir Shahaf,Sagit Meir,Arnaud G. Bovy,Jules Beekwilder,Yury Tikunov,Irene Romero de la Fuente,Dani Zamir,Ilana Rogachev,Asaph Aharoni +18 more
TL;DR: A study of 580 tomato lines resulting from a cross between a wild desert-adapted species and a domesticated cultivar elucidates the genetic basis of gene expression and metabolite variation associated with fruit traits and defense against pathogens.
Water Deficit and Salinity Stress Reveal Many Specific QTL for Plant Growth and Fruit Quality Traits in Tomato.
TL;DR: A strategy for candidate gene detection was applied based on the high resolution mapping offered by the MAGIC population, the allelic effect of each parental line at the QTL and the sequence information of the eight parental lines, suggesting pleiotropic regulation.
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TL;DR: A high-quality genome sequence of domesticated tomato is presented, a draft sequence of its closest wild relative, Solanum pimpinellifolium, is compared, and the two tomato genomes are compared to each other and to the potato genome.
Gene networks involved in drought stress response and tolerance
TL;DR: In this paper, a short review of recent progress resulting from analysis of gene expression during the drought-stress response in plants as well as in elucidating the functions of genes implicated in the stress response and/or stress tolerance are summarized.
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