Page 82 - PC01_L13
P. 82
7. O’Quinn P. R., Nelssen J. L., Goodband R. D. et al. Nutritional value of a genetically
improved highlysine, highoil corn for young pigs // J. Anim. Sci. – 2000. – 78. – P.
2144–2149.
8. Eggeling L., Oberle S., Sahm H. Improved Llysine yield with Corynebacterium
glutamicum:use of dapA resulting in increased flux combined with growth limitation //
Appl. Microbiol.Biotechnol. – 1998. – 49. – P. 24–30.
9. Falco S. C., Guida T., Locke M. et al. Transgenic canola and soybean seeds with
increased lysine // Biotechnology. – 1995. – 13. – P. 577–582.
10. Beauregard M., Dupont C., Hefford M. A. Design, expression and initial
characterization of MB1, a de novo protein enriched in essential aminoacids // Ibid. –
1995. – 13. – P. 974–981.
11. Simmonds D. H., Donaldson P. A. Genotype screening for proliferative
embryogenesis and biolistic transformation of shortseason soybean genotypes //
Plant. Cell. Rep. – 2000. – 19. – P. 485–490.
12. Egnin M., Prakash C. S. Transgenic sweet potato expressing a synthetic storage
protein gene exhibits high level of total protein and essential amino acids // In Vitro
Cell. Dev. Biol. – 1997. – 33. – P. 52.
13. International Life Sciences Institute. Nutritional and safety assessments of foods and
feeds nutritionally improved through biotechnology: case studies // Comprehensive
Reviews in Food Science and Food Safety. – 2008. – 7. – P. 50–99.