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hal.structure.identifierGénétique et Amélioration des Fruits et Légumes [GAFL]
dc.contributor.authorCAUSSE, Mathilde
hal.structure.identifierGénétique et Amélioration des Fruits et Légumes [GAFL]
dc.contributor.authorZHAO, Jiantao
hal.structure.identifierGénétique et Amélioration des Fruits et Légumes [GAFL]
dc.contributor.authorDIOUF, Isidore
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorWANG, Jiaojiao
hal.structure.identifierGénétique et Amélioration des Fruits et Légumes [GAFL]
dc.contributor.authorLEFEBVRE, Véronique
hal.structure.identifierGénétique et Amélioration des Fruits et Légumes [GAFL]
dc.contributor.authorCAROMEL, Bernard
hal.structure.identifierPlantes et systèmes de culture horticoles [PSH]
dc.contributor.authorGÉNARD, Michel
hal.structure.identifierPlantes et systèmes de culture horticoles [PSH]
dc.contributor.authorBERTIN, Nadia
dc.contributor.editorSpringer
dc.date.issued2020-03-03
dc.identifier.isbn978-3-319-97414-9
dc.description.abstractEnTomato is the first vegetable consumed in the world. It is grown in very different conditions and areas, mainly in field for processing tomatoes while fresh-market tomatoes are often produced in greenhouses. Tomato faces many environmental stresses, both biotic and abiotic. Today many new genomic resources are available allowing an acceleration of the genetic progress. In this chapter, we will first present the main challenges to breed climate-smart tomatoes. The breeding objectives relative to productivity, fruit quality, and adaptation to environmental stresses will be presented with a special focus on how climate change is impacting these objectives. In the second part, the genetic and genomic resources available will be presented. Then, traditional and molecular breeding techniques will be discussed. A special focus will then be presented on ecophysiological modeling, which could constitute an important strategy to define new ideotypes adapted to breeding objectives. Finally, we will illustrate how new biotechnological tools are implemented and could be used to breed climate-smart tomatoes.
dc.language.isoen
dc.source.titleGenomic Designing of Climate-Smart Vegetable Crops
dc.subject.enModeling
dc.subject.enProductivity
dc.subject.enBiotic stress
dc.subject.enBreeding
dc.subject.entomato
dc.subject.enAbiotic stress
dc.subject.enIdeotypes
dc.title.enGenomic Designing for Climate-Smart Tomato
dc.typeChapitre d'ouvrage
dc.identifier.doi10.1007/978-3-319-97415-6_2
dc.subject.halSciences du Vivant [q-bio]
dc.subject.halSciences du Vivant [q-bio]/Génétique/Génétique des plantes
dc.subject.halSciences du Vivant [q-bio]/Biologie végétale
dc.subject.halSciences du Vivant [q-bio]/Biologie végétale/Amélioration des plantes
bordeaux.page47-159
bordeaux.title.proceedingGenomic Designing of Climate-Smart Vegetable Crops
hal.identifierhal-02886663
hal.version1
hal.popularnon
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-02886663v1
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.btitle=Genomic%20Designing%20of%20Climate-Smart%20Vegetable%20Crops&rft.date=2020-03-03&rft.spage=47-159&rft.epage=47-159&rft.au=CAUSSE,%20Mathilde&ZHAO,%20Jiantao&DIOUF,%20Isidore&WANG,%20Jiaojiao&LEFEBVRE,%20V%C3%A9ronique&rft.isbn=978-3-319-97414-9&rft.genre=unknown


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