Genotypic and phenotypic verification of plant collections for genetic bank and gene pool of introduced Highbush blueberry (Vaccinium corymbosum L.) varieties creation by microсlonal propagation
https://doi.org/10.25556/VSTISP.2018.2.12308
Abstract
The article presents the results of studies on genotypic and phenotypic verification of in vivo and in vitro highbush blueberry collections of Central Botanical Garden of the NAS of Belarus. Seven-years of phenorhythm monitoring and morphometric analysis of highbush blueberry varieties Bluecrop, Patriot, Duke, Earliblue, Bluetta, Northland, Spartan, Nui that had been introduced in Belarus has revealed significant interseasonal differences. Morphological feature identification of blueberry varieties was complemented with DNA profiling by SSR fingerprinting. A set of five pairs of primers capable of identifying the set of alleles that can identify the varieties was selected based on a minimal microsatellite panel. Allele sets of SSR loci from both in vivo and in vitro collections matched the allele spectra from Corvallis Vaccinium Database and Genetic Resources Information Network (US Department of Agriculture), which allowed to determine the cultivar identity of the plants.
About the Authors
V. L. FilipeniaBelarus
2V Surganov str., Minsk BY-220012
A. N. Yukhimuk
Belarus
2V Surganov str., Minsk BY-220012
T. V. Kurlovich
Belarus
2V Surganov str., Minsk BY-220012
O. V. Chizhik
Belarus
2V Surganov str., Minsk BY-220012
References
1. Powell W., Morgante M., Andre C., Hanafey M., Vogel J., Tingey S., Rafalski A. The comparison of RFLP, RAPD, AFLP and SSR (microsatellite) markers for germplasm analysis // Molecular Breeding, 1996. − Vol. 2. − № 3. – P. 225-238.
2. Vieira M. L. C., Santini L., Diniz A. L., Munhoz C. F. Microsatellite markers: what they mean and why they are so useful // Genetics and Molecular Biology, 2016. − Vol. 39. − № 3. – P. 312-328.
3. Guidelines for DNA-profiling: molecular marker selection and database construction // UPOV:INF – 2010, № 17/1 URL: http://www.upov.int/edocs/infdocs/en/upov_inf_17_1.pdf
4. Bozhiday T. N. Diagnostika sistemnykh patogenov i razmnozheniye v kul’ture in vitro svobodnykhot virusov rasteniy roda Vaccinium L. : avtoref. ... diss. k. b. nauk [Diagnosis of systemic pathogensand reproduction in culture in vitro of virus-free plants of the genus Vaccinium L.: thesis abstract], Minsk, 2017, 22 s.
5. Hinrichsen P., Castro M. H., Ravest G., Rojas G., Mndez M., Bassi N. V., Muсo C. Minimal Microsatellite Marker Panel for Fingerprinting Blueberry // Acta Hort., 2009. – Vol. 810. – P. 173-180.
6. Rowland L. J., Mehra S., Dhanaraj A. L., Ogden E. L., Slovin J. P., Ehlenfeldt M. K. Development of EST-PCR markers for DNA fingerprinting and genetic relationship studies in blueberry (Vaccinium, section Cyanococcus) // J. Am. Soc. Hortic. Sci., 2003. – Vol. 37. − № 7. – P. 1428-1432.
7. Boches P. S., Rowland L. J., Bassil N. V. Microsatellite markers for Vacciniuin from EST and genomic libraries // Mol. Ecol. Notes, 2005. – Vol. 5. – P. 657-660.
8. Boches P. S., Bassil N., Rowland L. J. Genetic Diversity in the Highbush Blueberry Evaluated with Microsatellite Markers // J. Am. Soc. Hortic. Sci., 2006. – Vol. 131, № 5. – P. 674-686.
9. NCGR-Corvallis Vaccinium Catalog // U.S. Department of Agriculture, Agricultural Research Service. − 2005. − https:// www.ars-grin.gov/cor/catalogs/vaccult.html
10. Genetic Resources Information Network. 10 Oct. 2005. // U.S. Department of Agriculture, Agricultural Research Service. − 2005. − http://www.ars-grin.gov/cor/vaccin/blueberry-loci-05.xls
Review
For citations:
Filipenia V.L., Yukhimuk A.N., Kurlovich T.V., Chizhik O.V. Genotypic and phenotypic verification of plant collections for genetic bank and gene pool of introduced Highbush blueberry (Vaccinium corymbosum L.) varieties creation by microсlonal propagation. Horticulture and viticulture. 2018;(2):54-57. (In Russ.) https://doi.org/10.25556/VSTISP.2018.2.12308