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Physiological and biochemical characteristics of the grain of high-lysine maize

, : Physiological and biochemical characteristics of the grain of high-lysine maize. Fiziologiya i Biokhimiya Kul' turnykh Rastenii 21(3): 211-218

The subject is reviewed under the following headings: physical characteristics and chemical composition of the grain; the nitrogen complex of the ripe grain; and nucleic acids and enzymes in the grain of high-lysine maize.

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Related references

Pyl'neva P.N., 1989: Physiological and biochemical characteristics of high lysine maize grain. Fiziologiya i Biokhimiya Kul'turnykh Rastenii 21(3): 211-218

Volobueva, V.F.; Pleshkov, B.P., 1983: Biochemical characteristics of proteins of grain endosperm of normal and high-lysine maize. Electrophoresis at pH 8.9 and 4.3 on polyacrylamide gel showed that the introduction of opaque-2 gene into normal maize had no marked influence on the grain albumin component composition. When separated at pH 2.9 the component composition of album...

Volobueva, V.; Pleshkov, B., 1983: Biochemical characteristics of grain endosperm proteins of common and high lysine maize. Izvestiia Timiriazevskaia sel'skokhoziaistvennaia akademiia: (5) 176-180

Pyl' neva, P.N.; Levitskii, A.P., 1986: Biochemical characteristics of the protein fractions in the grain of normal and high-lysine maize differing in buoyant density. In a comparison of the normal line VIR44 and its high-lysine opaque-2 counterpart, incorporation of the o2 gene was found to result in a reduction in the percentage of protein fractions with a relative density of <1.45 g/cmsuperscript 3. In the...

Kirtoka, Ikh, 1973: Physiological and biochemical studies of high-protein and high-lysine forms of maize. Biokhimicheskie Issledovaniia v Protsesse Selektsii Kukuruzy: 22-135

Kalenich, V.I.; Osipov, Y.F.; Bukreeva, G.I., 1998: Physiological and biochemical peculiarities of new high-protein lines of high-lysine maize. Field trials in 1992-94 in Russia showed that new high protein lines of high lysine (HL) maize have an efficient photosynthetic apparatus, high nitrate reductase activity (NRA) in leaves, high grain productivity potential under favourable conditio...

Fadeeva, O.I.; Ostroukh, L.N.; Plotnikova, A.V.; Filipas, T.B., 1988: Use of physiological and biochemical traits in producing high- protein hybrids of high-lysine maize. In order to produce high-protein hybrids, lines were selected with relatively high values for N accumulation in the above-ground biomass and for N index (ratio of grain N to biomass N). The 27 hybrids from topcrosses involving these lines were gro...

Romanova, E.Y.; Chernova, E.S.; Kirpaneva, O.L.; Korobochkina, L.B., 1981: Physiological and biochemical features of germinating grains of high-lysine maize. In a comparison of seedlings of normal and opaque maize, respiration rate of the embryo was higher in normal than opaque maize, apparently owing to a high activity of enzymes involved in glycolysis and the Krebs cycle. The rate of accumulation of...

Romanova, E.Y.; Korobochkina, L.B., 1990: Physiological and biochemical features of high-lysine maize with the opaque-2 gene. At high N doses, the energy efficiency of root respiration and the rate of bleeding from plants fell, the fall being markedly greater in high-lysine than in normal maize. This fall in respiration efficiency is seen as one reason for the considerab...

Ostroukh, L.N.; Normov, A.A.; Bukreeva, G.I., 1988: Inheritance of some physiological characters associated with yield and protein content of the grain in high-lysine maize. Genotypic variation was found in a number of physiological characters associated with grain yield and accumulation of protein in the grain, together with heterosis for these characters in F1 hybrids over the parental lines, which differed in GCA f...