| [1] |
Iezzoni A, Wünsch A, Höfer M, Giovannini D, Jensen M, et al. 2017. Biodiversity, germplasm resources and breeding methods. In Cherries: Botany, Production and Uses, eds. Quero-Garcia J, Iezzoni A, Pulawska J, Lang G. Cambridge: CABI Publishing. pp. 36–59 doi: 10.1079/9781780648378.0036 |
| [2] |
Quero-Garcia J. 2019. Cherry breeding in the world: current analysis and future perspectives. |
| [3] |
Peace CP. 2017. DNA-informed breeding of rosaceous crops: promises, progress and prospects. |
| [4] |
Hedrick UP. 1915. The Cherries of New York. Albany: JB Lyon Company. 371 pp. www.biodiversitylibrary.org/item/115106 |
| [5] |
Sansavini S, Lugli S. 2008. Sweet cherry breeding programs in Europe and Asia. |
| [6] |
Olmstead JW, Ophardt DR, Lang GA. 2000. Sweet cherry breeding at Washington State University. |
| [7] |
Oraguzie NC, Watkins CS, Chavoshi MS, Peace C. 2017. Emergence of the Pacific Northwest sweet cherry breeding. |
| [8] |
Brown SK, Iezzoni AF, Fogle HW. 1996. Cherries. In Fruit Breeding, Vol. 1: Tree and Tropical Fruits, eds. Janick J, Moore JN. New York: John Wiley & Sons. pp. 213–255 www.wiley.com/en-ae/Fruit+Breeding%2C+Volume+1%2C+Tree+and+Tropical+Fruits-p-9780471310143 |
| [9] |
Bargioni G. 1996. Sweet cherry scions: characteristics of the principal commercial cultivars, breeding objectives and methods. In Cherries: Crop Physiology, Production and Uses, eds. Webster AD, Looney NE. Wallingford: CAB International. pp. 73–112 |
| [10] |
Kappel F. 2008. Breeding cherries in the 'new world'. |
| [11] |
Kappel F, Granger A, Hrotkó K, Schuster M. 2012. Cherry. In Fruit Breeding, eds. Badenes ML, Byrne DH. Boston, MA: Springer. pp. 459–504 doi: 10.1007/978-1-4419-0763-9_13 |
| [12] |
Webster AD, Looney NE. (eds.) 1996. World distribution of sweet and sour cherry production: national statistics. In Cherries: Crop Physiology, Production and Uses. Wallingford: CAB International. pp. 25–72 |
| [13] |
Northwest Horticultural Council. 2018. Pacific Northwest Sweet Cherries Fact Sheet. http://nwhort.org/industry-facts/cherry-fact-sheet (Accessed on 4 Oct. 2025) |
| [14] |
Lang G, Ophardt D, Olmstead J. 1998. Sweet cherry breeding at Washington State University. |
| [15] |
Warner G. 2013. Career comes to late fruition. Good Fruit Grower 64:19 |
| [16] |
Oraguzie NC, Ophardt D, Whiting MD, Lang GA, Long LE. 2010. Kiona™ sweet cherry. |
| [17] |
Oraguzie NC, Ophardt D, Whiting MD, Lang GA, Long LE. 2014. Cowiche™ (‘PC 7903-2’) sweet cherry. |
| [18] |
Warner G. 2013. WSU program focused on self-fertility. Good Fruit Grower 64:18 |
| [19] |
Olmstead JW, Whiting MD, Ophardt D, Oraguzie NC, Lang GA. 2011. 'PC7064-3' (Selah®) sweet cherry. |
| [20] |
Toyama TK, Ophardt DR, Howell WE, Grove GG. 1993. New powdery mildew resistant sweet cherry. |
| [21] |
Olmstead JW, Lang GA, Grove GG. 2001. Inheritance of powdery mildew resistance in sweet cherry. |
| [22] |
Johnson A, Porter LD, Grove G, Harper SJ, Peace C. 2023. Genetic and molecular disease management of powdery mildew, bacterial canker, and X-disease in US Pacific Northwest sweet cherry: current obstacles and future opportunities. |
| [23] |
Long LE, Whiting M, Nuñez-Elisea R. 2007. Sweet cherry cultivars for the fresh market. Corvallis, OR: Oregon State University. 604 pp. |
| [24] |
Bujdosó G, Hrotkó K. 2017. Cherry production. In Cherries: Botany, Production and Uses, eds. Quero-Garcia J, Iezzoni A, Pulawska J, Lang G. Cambridge: CABI Publishing. pp. 1–13 doi: 10.1079/9781780648378.0001 |
| [25] |
Cai L, Voorrips RE, van de Weg E, Peace C, Iezzoni A. 2017. Genetic structure of a QTL hotspot on chromosome 2 in sweet cherry indicates positive selection for favorable haplotypes. |
| [26] |
Pohlert T. 2024. PMCMRplus: Calculate Pairwise Multiple Comparisons of Mean Rank Sums Extended. R package version 1.9. 12. doi: 10.32614/CRAN.package.PMCMRplus |
| [27] |
Rosyara UR, Sebolt AM, Peace C, Iezzoni AF. 2014. Identification of the paternal parent of ‘Bing’ sweet cherry and confirmation of descendants using single nucleotide polymorphism markers. |
| [28] |
Fogle HW, Snyder JC, Baker H, Cameron HR, Cochran LC, et al. 1973. Sweet cherries: production, marketing, and processing. Agricultural Handbook No. 442. Washington, DC: Agricultural Research Service, USDA. 98 pp. www.govinfo.gov/content/pkg/GOVPUB-A-PURL-gpo25996/pdf/GOVPUB-A-PURL-gpo25996.pdf |
| [29] |
Grădinariu G, Istrate M, Gradinariu F, Petre L, Corneanu G, et al. 2008. New sources of germplasm used in sweet cherry breeding at Iasi fruit research station, Romania. |
| [30] |
López-Corrales M, Mateos JR, Alarcón MV, Bañuls P, Pérez F, et al. 2014. Sweet cherry (Prunus avium L.) breeding program in southern Spain. |
| [31] |
Matzneller P, Götz KP, Chmielewski FM. 2016. Spring frost vulnerability of sweet cherries under controlled conditions. |
| [32] |
Lapins KO. 1970. The Stella cherry. |
| [33] |
Kappel F. 2010. Sweet cherry cultivars vary in their susceptibility to spring frosts. |
| [34] |
Kaya O, Kose C. 2022. Sensitivity of some sweet cherry (Prunus avium L.) cultivars to late spring frosts during different phenological stages following bud burst. |
| [35] |
Andersen RL. 1998. Current status of sweet cherry breeding. |
| [36] |
Choi C, Kappel F. 2004. Inbreeding, coancestry, and founding clones of sweet cherries from North America. |
| [37] |
Fisher HH, States U. 1963. Survey of apple clones in the United States. USA: U.S. Dept. of Agriculture, Agricultural Research Service. doi: 10.5962/bhl.title.109388 |
| [38] |
Vanderzande S, Howard NP, Cai L, Da Silva Linge C, Antanaviciute L, et al. 2019. High-quality, genome-wide SNP genotypic data for pedigreed germplasm of the diploid outbreeding species apple, peach, and sweet cherry through a common workflow. |
| [39] |
Cabe PR, Baumgarten A, Onan K, Luby JJ, Bedford DS. 2005. Using microsatellite analysis to verify breeding records: a study of 'Honeycrisp' and other cold-hardy apple cultivars. |
| [40] |
Luby JJ, Howard NP, Tillman JR, Bedford DS. 2022. Extended pedigrees of apple cultivars from the University of Minnesota breeding program elucidated using SNP array markers. |
| [41] |
Howard NP, Peace C, Silverstein KAT, Poets A, Luby JJ, et al. 2021. The use of shared haplotype length information for pedigree reconstruction in asexually propagated outbreeding crops, demonstrated for apple and sweet cherry. |
| [42] |
Farrell SL, Hendrickson LG, Mastel KL, Allen KA, Kelly JA. 2019. Resurfacing historical scientific data: a case study involving fruit breeding data. |