Identifying SNP markers tightly associated with six major genes in peach [Prunus persica (L.) Batsch] using a high-density SNP array with an objective of marker-assisted selection (MAS)

被引:0
作者
Patrick Lambert
Jose Antonio Campoy
Igor Pacheco
Jehan-Baptiste Mauroux
Cassia Da Silva Linge
Diego Micheletti
Daniele Bassi
Laura Rossini
Elisabeth Dirlewanger
Thierry Pascal
Michela Troggio
Maria Jose Aranzana
Andrea Patocchi
Pere Arús
机构
[1] GAFL,
[2] INRA,undefined
[3] UMR 1332 B.P. INRA,undefined
[4] Univ. Bordeaux,undefined
[5] Università degli Studi di Milano,undefined
[6] DiSAA,undefined
[7] INTA,undefined
[8] Universidad de Chile,undefined
[9] IRTA,undefined
[10] Centre de Recerca en Agrigenòmica CSIC-IRTA-UAB-UB,undefined
[11] Research and Innovation Centre,undefined
[12] Fondazione Edmund Mach (FEM),undefined
[13] Parco Tecnologico Padano,undefined
[14] Research Station Agroscope,undefined
来源
Tree Genetics & Genomes | 2016年 / 12卷
关键词
Molecular breeding; Fruit quality; Genetic map; Phenotyping; Mendelian character;
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摘要
One of the applications of genomics is to identify genetic markers linked to loci responsible for variation in phenotypic traits, which could be used in breeding programs to select individuals with favorable alleles, particularly at the seedling stage. With this aim, in the framework of the European project FruitBreedomics, we selected five main peach fruit characters and a resistance trait, controlled by major genes with Mendelian inheritance: fruit flesh color Y, fruit skin pubescence G, fruit shape S, sub-acid fruit D, stone adhesion-flesh texture F-M, and resistance to green peach aphid Rm2. They were all previously mapped in Prunus. We then selected three F1 and three F2 progenies segregating for these characters and developed genetic maps of the linkage groups including the major genes, using the single nucleotide polymorphism (SNP) genome-wide scans obtained with the International Peach SNP Consortium (IPSC) 9K SNP array v1. We identified SNPs co-segregating with the characters in all cases. Their positions were in agreement with the known positions of the major genes. The number of SNPs linked to each of these, as well as the size of the physical regions encompassing them, varied depending on the maps. As a result, the number of useful SNPs for marker-assisted selection varied accordingly. As a whole, this study establishes a sound basis for further development of MAS on these characters. Additionally, we also discussed some limitations that were observed regarding the SNP array efficiency.
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[1]  
Adami M(2013)Identifying a carotenoid cleavage dioxygenase ( Plant Mol Biol Rep 31 1166-1175
[2]  
De Franceschi P(2011)) gene controlling yellow/white fruit flesh color of peach BMC Genomics 12 569-211
[3]  
Brandi F(2010)Whole genome sequencing of peach ( BMC Genet 11 69-547
[4]  
Liverani A(2006) L) for SNP identification and selection Plant Breed 27 175-130
[5]  
Giovannini D(2012)Genetic variation, population structure and linkage disequilibrium in peach commercial varieties Tree Genet Genomes 8 531-350
[6]  
Rosati C(1949)Synteny in the Rosaceae Proc Amer Soc Hortic Sci 29 127-529
[7]  
Dondini L(2010)The peach genome Acta Hortic 859 339-815
[8]  
Tartarini S(2002)The inheritance of certain characteristics in the peach Genome 45 520-790
[9]  
Ahmad R(2009)Marker-assisted breeding in horticultural crops BMC Plant Biol 9 59-9896
[10]  
Parfitt DE(2014)An expanded genetic linkage map of Genome Biol 15 415-13