Episodit
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Li, Lin, et al. "Agronomic advancement in tillage, crop rotation, soil health, and genetic gain in durum wheat cultivation: A 17-year Canadian story." Agronomy 8.9 (2018): 193.
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Li, Jinquan, Britta Schulz, and Benjamin Stich. "Population structure and genetic diversity in elite sugar beet germplasm investigated with SSR markers." Euphytica 175 (2010): 35-42
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Puuttuva jakso?
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Djè, Yao, et al. "Assessment of genetic diversity within and among germplasm accessions in cultivated sorghum using microsatellite markers." Theoretical and Applied Genetics 100 (2000): 918-925.
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Riday, Heathcliffe. "Progress made in improving red clover (Trifolium pratense L.) through breeding.
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Annicchiarico, Paolo, et al. "Pea breeding for intercropping with cereals: variation for competitive ability and associated traits, and assessment of phenotypic and genomic selection strategies." Frontiers in plant science 12 (2021): 731949.
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Fleming, William Melvin. Inheritance in sweet peas.Diss. University of British Columbia, 1925.
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Rugienius, Rytis & Siksnianas, T. & Gelvonauskienė, Dalia & Staniene, G. & Sasnauskas, A. & Zalunskaite, I. & Stanys, Vidmantas. (2009). Evaluation of genetic resources of fruit crops as donors of cold and disease resistance in Lithuania. Acta Horticulturae. 825. 117-124. 10.17660/ActaHortic.2009.825.14.
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Cerqueira-Silva, Carlos Bernard Moreno, et al. "Thegenetic diversity, conservation, and use of passion fruit (Passifloraspp.)." Genetic Diversity and Erosion in Plants: Case Histories (2016):215-231.
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Schnell, R. J., et al. "AFLP analysis of genetic diversity within a jackfruit germplasm collection." Scientia Horticulturae 91.3-4 (2001): 261-274.
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Mursyidin, Dindin Hidayatul, Muhammad Irfan Makruf, and AidiNoor. "Molecular diversity of exotic durian (Durio spp.) germplasm: a casestudy of Kalimantan, Indonesia." Journal of Genetic Engineering andBiotechnology 20.1 (2022): 39.
Hariyati, Tati, Joni Kusnadi, and Estri L. Arumingtyas."Genetic diversity of hybrid durian resulted from cross breeding betweenDurio kutejensis and Durio zibethinus based on random amplified polymorphicDNAs (RAPDs)." (2013).
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Mursyidin, Dindin Hidayatul, and Budi Setiadi Daryono."Genetic diversity of local durian (Durio zibethinus Murr.) cultivars ofSouth Kalimantan’s province based on RAPD markers." AIP ConferenceProceedings. Vol. 1755. No. 1. AIP Publishing, 2016.
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Assefa, Kebebew, et al. "Genetic diversity in tef [Eragrostis tef (Zucc.) Trotter]." Frontiers in plant science 6 (2015): 177.
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Die Pflanzenwelt Ost-Afrikas und der Nachbargebiete vol. 2 tabl. 22 (http://www.botanicus.org/page/351588)
Olukolu, Bode A., et al. "Genetic diversity in Bambara groundnut (Vigna subterranea (L.) Verdc.) as revealed by phenotypic descriptors and DArT marker analysis." Genetic Resources and Crop Evolution 59 (2012): 347-358. -
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Göl, Şurhan, Sami Doğanlar, and Anne Frary. "Relationship between geographical origin, seed size and genetic diversity in faba bean (Vicia faba L.) as revealed by SSR markers." Molecular Genetics and Genomics 292 (2017): 991-999.
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Lombardi, M., Materne, M., Cogan, N.O.I. et al. Assessment of genetic variation within a global collection of lentil (Lens culinaris Medik.) cultivars and landraces using SNP markers. BMC Genet 15, 150 (2014). https://doi.org/10.1186/s12863-014-0150-3
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Beers, L.; Rowland, L.J.; Drummond, F. Genetic Diversity of Lowbush Blueberry throughout the United States in Managed and Non-Managed Populations. Agriculture 2019, 9, 113. https://doi.org/10.3390/agriculture9060113
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Bian, Y., Ballington, J., Raja, A. et al. Patterns of simple sequence repeats in cultivated blueberries (Vaccinium section Cyanococcus spp.) and their use in revealing genetic diversity and population structure. Mol Breeding 34, 675–689 (2014). https://doi.org/10.1007/s11032-014-0066-7
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Boches, P., Bassil, N. V., & Rowland, L. (2006). Genetic diversity in the highbushblueberry evaluated with microsatellite markers. Journal of the AmericanSociety for Horticultural Science, 131(5), 674–686. https://doi.org/10.21273/jashs.131.5.674
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Reid, L. M., et al. "Genetic diversity analysis of 119 Canadian maize inbred lines based on pedigree and simple sequence repeat markers." Canadian Journal of Plant Science 91.4 (2011): 651-661.
Romero-Severson, J., et al. "Pedigree analysis and haplotype sharing within diverse groups of Zea mays L. inbreds." Theoretical and Applied Genetics 103 (2001): 567-574.
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Weber, C. A. (2003). Genetic diversity in black raspberry detected by RAPD markers. HortScience, 38(2), 269–272. https://doi.org/10.21273/hortsci.38.2.269
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Ipek, A. & Barut, Erdogan & Gulen, Hatice & Ipek, Meryem. (2011). Genetic diversity among some blackberry cultivars and their relationship with Boysenberry assessed by AFLP Markers. African Journal of Biotechnology. 8.
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