New GWAS, QTL, marker, map and phenotype data from 15 publications are available. View data in QTL/GWAS Search, Marker Search, Trait Evaluation Search, and in MapViewer.
- Dujak C, Coleto-Alcudia V, José Aranzana M, Genomic analysis of fruit size and shape traits in apple: unveiling candidate genes through GWAS analysis, Horticulture Research, Volume 11, Issue 2, February 2024, uhad270
- Jiang L, Geng D, Zhi F, Li Z, Yang Y, Wang Y, Shen X, Liu X, Yang Y, Xu Y, Tang Y, Du R, Ma F, Guan Q, Zhang J. Genome-wide association study provides insights to fatty acid synthesis and metabolism in Malus fruits.. Journal of experimental botany. 2022 Sep 16.
- Cornelissen S, Hefer CA, Rees DJG, Burger JT. Defining the QTL associated with chill requirement during endodormancy in Malus × domestica Borkh. Euphytica. 2020; 216(8):122.
- Rey-Serra P, Mnejja M, Monfort A. Inheritance of esters and other volatile compounds responsible for the fruity aroma in strawberry.. Frontiers in plant science. 2022; 13:959155.
- Manivannan A, Han K, Lee SY, Lee HE, Hong JP, Kim J, Lee YR, Lee ES, Kim DS. Genome-Wide Analysis of MYB10 Transcription Factor in Fragaria and Identification of QTLs Associated with Fruit Color in Octoploid Strawberry.. International journal of molecular sciences. 2021 Nov 22; 22(22).
- Lee HE, Manivannan A, Lee SY, Han K, Yeum JG, Jo J, Kim J, Rho IR, Lee YR, Lee ES, Kang BC, Kim DS. Chromosome Level Assembly of Homozygous Inbred Line 'Wongyo 3115' Facilitates the Construction of a High-Density Linkage Map and Identification of QTLs Associated With Fruit Firmness in Octoploid Strawberry (Fragaria × ananassa).. Frontiers in plant science. 2021; 12:696229.
- Barbey CR, Hogshead MH, Harrison B, Schwartz AE, Verma S, Oh Y, Lee S, Folta KM, Whitaker VM. Genetic Analysis of Methyl Anthranilate, Mesifurane, Linalool, and Other Flavor Compounds in Cultivated Strawberry (Fragaria × ananassa).. Frontiers in plant science. 2021; 12:615749.
- Nellist CF, Vickerstaff RJ, Sobczyk MK, Marina-Montes C, Wilson FM, Simpson DW, Whitehouse AB, Harrison RJ. Quantitative trait loci controlling Phytophthora cactorum resistance in the cultivated octoploid strawberry (Fragaria x ananassa). Horticulture research. 2019; 6:60.
- Labadie M, Vallin G, Petit A, Ring L, Hoffmann T, Gaston A, Potier A, Schwab W, Rothan C, Denoyes B. Metabolite Quantitative Trait Loci for Flavonoids Provide New Insights into the Genetic Architecture of Strawberry (Fragaria × ananassa) Fruit Quality. Journal of agricultural and food chemistry. 2020; 68(25):6927-6939.
- Samad S, Kurokura T, Koskela E, Toivainen T, Patel V, Mouhu K, Sargent DJ, Hytönen T. Additive QTLs on three chromosomes control flowering time in woodland strawberry (Fragaria vesca L.). Horticulture research. 2017; 4:17020.
- Ring L, Yeh SY, Hücherig S, Hoffmann T, Blanco-Portales R, Fouche M, Villatoro C, Denoyes-Rothan B, Monfort A, Caballero JL, Munoz-Blanco J, Gershenzon J, Schwab W. Metabolic interaction between anthocyanin and lignin biosynthesis is associated with peroxidase FaPRX27 in strawberry fruit. Plant physiology. 2013 Jul 8.
- Eikemo H, Stensvand A, Davik J, & Tronsmo AM. (2003). Resistance to crown rot (Phytophthora cactorum) in strawberry cultivars and in offspring from crosses between cultivars differing in susceptibility to the disease. Annals of Applied Biology, 142(1), 83-89.
- Knapp, S. J., Cole, G. S., Pincot, D. D. A., Dilla-Ermita, C. J., Bjornson, M., Famula, R. A., Gordon, T. R., Harshman, J. M., Henry, P. M., & Feldmann, M. J. (2024). Transgressive segregation, hopeful monsters, and phenotypic selection drove rapid genetic gains and breakthroughs in predictive breeding for quantitative resistance to Macrophomina in strawberry. Horticulture Research, 11(2).
- Vining, K. J., T. M. Davis, A. R. Jamieson and L. L. Mahoney (2015). "Germplasm resources for verticillium wilt resistance breeding and genetics in strawberry (Fragaria)." Journal of Berry Research 5: 183-195.
- Jiménez NP, Feldmann MJ, Famula RA, Pincot DDA, Bjornson M, Cole GS, Knapp SJ. Harnessing underutilized gene bank diversity and genomic prediction of cross usefulness to enhance resistance to Phytophthora cactorum in strawberry.. The plant genome. 2022 Dec 08; e20275.