Multi-year analyses on three populations reveal the first stable QTLs for tolerance to rain-induced fruit cracking in sweet cherry (Prunus avium L.)
LETOURMY, Philippe
Agroécologie et intensification durables des cultures annuelles [UPR AIDA]
Département Performances des systèmes de production et de transformation tropicaux [Cirad-PERSYST]
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Agroécologie et intensification durables des cultures annuelles [UPR AIDA]
Département Performances des systèmes de production et de transformation tropicaux [Cirad-PERSYST]
LETOURMY, Philippe
Agroécologie et intensification durables des cultures annuelles [UPR AIDA]
Département Performances des systèmes de production et de transformation tropicaux [Cirad-PERSYST]
< Réduire
Agroécologie et intensification durables des cultures annuelles [UPR AIDA]
Département Performances des systèmes de production et de transformation tropicaux [Cirad-PERSYST]
Langue
en
Article de revue
Ce document a été publié dans
Horticulture research. 2021, vol. 8, n° 1, p. 136
Nature Publishing Group
Résumé en anglais
Rain-induced fruit cracking is a major problem in sweet cherry cultivation. Basic research has been conducted to disentangle the physiological and mechanistic bases of this complex phenomenon, whereas genetic studies have ...Lire la suite >
Rain-induced fruit cracking is a major problem in sweet cherry cultivation. Basic research has been conducted to disentangle the physiological and mechanistic bases of this complex phenomenon, whereas genetic studies have lagged behind. The objective of this work was to disentangle the genetic determinism of rain-induced fruit cracking. We hypothesized that a large genetic variation would be revealed, by visual field observations conducted on mapping populations derived from well-contrasted cultivars for cracking tolerance. Three populations were evaluated over 7-8 years by estimating the proportion of cracked fruits for each genotype at maturity, at three different areas of the sweet cherry fruit: pistillar end, stem end, and fruit side. An original approach was adopted to integrate, within simple linear models, covariates potentially related to cracking, such as rainfall accumulation before harvest, fruit weight, and firmness. We found the first stable quantitative trait loci (QTLs) for cherry fruit cracking, explaining percentages of phenotypic variance above 20%, for each of these three types of cracking tolerance, in different linkage groups, confirming the high complexity of this trait. For these and other QTLs, further analyses suggested the existence of at least two-linked QTLs in each linkage group, some of which showed confidence intervals close to 5 cM. These promising results open the possibility of developing marker-assisted selection strategies to select cracking-tolerant sweet cherry cultivars. Further studies are needed to confirm the stability of the reported QTLs over different genetic backgrounds and environments and to narrow down the QTL confidence intervals, allowing the exploration of underlying candidate genes.< Réduire
Mots clés
fruit à noyau
arbre fruitier à noyau
éclatement du fruit
déterminisme génétique
QTL
Mots clés en anglais
Fruit cracking
sweet cherry
prunus
Origine
Importé de halUnités de recherche