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Extraction and Analysis of Natural Color From Beetroot (<i>Beta vulgaris</i> L.) Using Different Techniques, and Its Utilization in Ice Cream Manufacturing. [PDF]
Khalil S +14 more
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?????????????????????? ???????????? ?????????????????????????????????? ???????????? Beta vulgaris L.
2019????????????????????-???????????????????????????? ?? ???????????????????????? ???????????????? ????????????????, ???? ?????????????????????????????? ?????? (??????????) ?????????????????? ???????????? ??????????????????????????????????, ???????? ?????????????? ?????????????????????????????????? ?????????????? ???????????????????????? ???????????????? ??
Marjan Nikan, Azadeh Manayi
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Characterization of Sugarbeet (Beta vulgaris, L.) Protein
Journal of Sugarbeet Research, 2004Proteins are natural components of sugarbeet root that play a negative role during the sugar processing. In this preliminary work, an analysis of the protein fraction extracted from sugarbeet root is presented. The occurrence of oxidative phenomena makes the protein isolation a diffi cult step. Moreover, interference compounds, such as polyphenols and
PARPINELLO, GIUSEPPINA PAOLA +2 more
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A linkage map of sugar beet (Beta vulgaris L.)
Theoretical and Applied Genetics, 1992We have established a first linkage map for beets based on RFLP, isozyme and morphological markers. The population studied consisted of 96 F2 individuals derived from an intraspecific cross. As was expected for outbreeding species, a relatively high degree of polymorphism was found within sugar beet; 47% of the DNA markers were polymorphic for the ...
K, Pillen +4 more
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dw2, a New Mutation of Beet Beta vulgaris L.
Russian Journal of Genetics, 2005Twelve dwarf plants were found in the second hybrid generation of beet. The average height of mutant plants was 21.8 cm, their leaf blades and flowers were significantly smaller than normal, and the plants exhibited male and female sterility. This dwarfism was shown to be caused by a mutation differing from that previously described in beet, which is ...
A V, Mglinets, Z A, Osipova
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Structure of the mitochondrial genome of Beta vulgaris L.
Theoretical and Applied Genetics, 1988The structure of mitochondrial DNA (mt-DNA) from sugarbeet (Beta vulgaris L.) has been studied by biochemical methods and electron microscopy. It was found to be complex multipartite consisting of two main classes of molecules: high molecules weight (HMW) mtDNA and low molecular weight (LMW) mtDNA.
N A, Dudareva +5 more
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2015
An influence of epimutagen 5-azacitidine on a flower stalk morphogenesis in sugar beet was studied. After the epimutagene treatment the great number of the first- and the third-order branch formation was observed. A higher level of branching completely modified the flower stalk architectonics (generations ???????z??? and ???????z???).
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An influence of epimutagen 5-azacitidine on a flower stalk morphogenesis in sugar beet was studied. After the epimutagene treatment the great number of the first- and the third-order branch formation was observed. A higher level of branching completely modified the flower stalk architectonics (generations ???????z??? and ???????z???).
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Origin of gynogenetic embryos of Beta vulgaris L.
Sexual Plant Reproduction, 1994Haploid plants of Beta vulgaris were obtained by gynogenesis from ovules isolated from male-fertile and annual and biennial male-sterile plants. We show that on a N6 basal medium, supplemented with 2.85 μM IAA and 0.94 μM Kinetin or 0.88 μM BAP, haploids originate directly through embryogenesis.
V. Ferrant, J. Bouharmont
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Transformation in Sugar Beet (Beta vulgaris L.)
1993Sugar beet, Beta vulgaris L. (family Chenopodiaceae) is the major sucrose-producing crop grown in temperate zones, and contributes approximately 35% of the world’s supply, with the rest derived from sugarcane (Saccharum officinarum). The sucrose accumulates in the underground storage organ, or beet, and is extracted and purified after pulping.
Lindsey, K +3 more
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Вариации гена SE2 Beta vulgaris L.
2021Цель работы – конструирование и апробация специфического праймера FusA1F/R для изучения гена SE2, контролирующего экспрессию кислой хитиназы. Материалом для исследования служили растения сахарной свёклы отечественной и зарубежной селекции. Ген SE2 локализован на хромосоме 3, контролирует стабильный уровень работы кислой хитиназы.
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