SOMATIC FLOWER-COLOR VARIATIONS AND MORPHOLOGICAL CHANGES INDUCED BY C14 IN THE SNAPDRAGON, ANTIRRHINUM MAJUS
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چکیده
منابع مشابه
Oxidation of Flavanones to Flavones with Flower Extracts of Antirrhinum majus (Snapdragon)
Antirrhinum majus, Flavonoid Biosynthesis, Flavanone Oxidase, Apigenin, Luteolin Enzyme preparations from flowers of Antirrhinum majus catalysed the oxidation of naringenin to apigenin and of eriodictyol to luteolin. Enzyme activity was found to be localized in the microsomal fraction. The reaction required NADPH as cofactor and had a pH optimum of about 7.0. The NADPH-dependent microsomal enzy...
متن کاملGenetic control of flower shape in Antirrhinum majus.
The asymmetric shape of the Antirrhinum corolla is determined by genes acting differentially along the dorsoventral axis of the flower. Genes so far identified determine asymmetry by acting in dorsal regions. We describe a gene, divaricata, which in contrast to previously identified genes acts in ventral regions of the flower. We show by the analysis of mutant combinations that the divaricata g...
متن کاملSome growth and biochemical changes of viola (Viola × wittrockiana) and Snapdragon (Antirrhinum majus) ornamental plants to freezing stress
Exposure to freezing stress causes physiological, biochemical and molecular changes in plants, that are associated with reduced growth and development. In these areas, sensitive species are removed and the geographical distribution is changed. This study was conducted to evaluate some vegetative and biochemical responses of two cold-resistant ornamental plants, viola (Viola wittrockiana) and Sn...
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Previously it has been shown that the Xoral scent of snapdragon Xowers consists of a relatively simple mixture of volatile organic compounds (VOCs). These compounds are thought to be involved in the attraction of pollinators; however, little is known about their eVect on other organisms, such as neighboring plants. Here, we report that VOCs from snapdragon Xowers inhibit Arabidopsis root growth...
متن کاملGenetic Control of Flavanone 3-Hydroxylase Activity and Flavonoid 3'-Hydroxylase Activity in Antirrhinum majus (Snapdragon)
Anthocyanin Biosynthesis, Antirrhinum majus, Flavonoids, Flavanone 3-Hydroxylase, Flavonoid 3'-Hydroxylase, Genetic Control In flower extracts of defined genotypes of Antirrhinum majus, two different hydroxylases were found catalysing the hydroxylation of naringenin and eriodictyol in the 3-position and of naringenin in the 3'-position. The 3-hydroxylase is a soluble enzyme and belongs accordin...
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ژورنال
عنوان ژورنال: Genetics
سال: 1961
ISSN: 1943-2631
DOI: 10.1093/genetics/46.8.959