NED365343NED
166 310. Varshney R.V., Hoisington D.A., Tyagi A.K. Advances in cereal genomics and applications in crop breeding. Trends Biotechnol. 2006. 24: 490-499 311. Visscher P.M. Proportion of the variation in genomic composition in backcross- ing programs explained by molecular markers. J. Hered. 1996. 87: 136-138 312. Vogel B. Smart Breeding. Marker assisted selection: A non-invasive biotechnol- ogy alternative to genetic engineering of plant varieties. Greenpeace International. Amsterdam, The Netherlands. JN 268. 2009. 28 p. 313. Vogel B. Smart Breeding: The Next Generation. Marker assisted selection: a bio- technology for plant breeding without genetic engineering. Greenpeace Interna- tional. Amsterdam, The Netherlands. JN 468. 2014. 60 p. 314. Vos P., Holgers R., Bleeker M., Reijans M., Van de Lee T., Hornes M., Frijters A., Pot J., Peleman J., Kupier M., Zabeau M. AFLP: a new technique for DNA fingerprinting. Nucl. Acids Res. 1995. 23: 4407-4414 315. Wang D.G., Fan J.B., Siao C.J. et al . Large-scale identification, mapping, and genotyping of single-nucleotide polymorphisms in the human genome // Science. 1998. 280: 1077-1082 316. Wang J., Bernardo R. Variance of marker estimates of parental contributions to F2 and BC1 derived inbreds. Crop Sci. 2000. 40: 659-665 317. Wang Y.H., Thomas C.E., Dean R.A. A genetic map of melon ( Cucumis melo L.) based on amplified fragment length polymorphism (AFLP) markers. Theor. Appl. Genet. 1997. 95: 791-798 318. Ward J.H. Hierarchical grouping to optimize an objective function. J. Am. Stat. Assos. 1963. 58: 236-244 319. Ward S.M., Gaskin J.F., Wilson L.M. Ecological genetics of plant invasions: what do we know? Invasive Plant Science and Management. 2008. 1: 98-109 320. Waugh R., McLean K., Flavell A.J. et al. Genetic distribution of Bare-1-like retrotransposable elements in the barley genome revealed by sequence-specific amplification polymorphisms (S-SAP) //Mol. Gen. Genet. 1997. 253: 687-694 321. Weising K., Kaemmer D., Weigand F., Epplen J.T., Kahl G. Oligonucleotide fingerprinting reveals various probe-dependent levels of informativeness in chickpea ( Cicer arietinum ). Genome. 1992. 35:436-442 322. Weising K., Nybom H., Wolff K., Kahl G. DNA Fingerprinting in Plants. Prin- ciples, Methods, and Applications. Boca Raton, CRC Press. 2005. 323. Weining S., Langridge P. Identification and mapping of polymorphisms in cere- als based on the polymerase chain reaction. Theor. Appl. Genet. 1991. 82:209- 216 324. Whelan K. The atlas of the Irish rural landscape . Cork University Press, Cork. 1997. 325. Welsh J., Chada K., Dalal S.S. et al . Arbitrarily primed PCR fingerprinting of RNA // Nucl. Acids Res. 1992. 20: 4965-4970 326. Welsh J., McClelland M. Fingerprinting genomes using PCR with arbitrary primers. Nucl. Acids Res. 1990. 18: 7213-7218 327. Whitt S.R., Wilson L.M., Tenaillon M.I., Gaut B.S., Buckler E.S. Genetic di- versity and selection in the maize starch pathway. Proc. Natl. Acad. Sci. USA. 2002. 99: 12959-12962
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