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Titlebook: Genetic Engineering of Plant Secondary Metabolism; Brian E. Ellis,Gary W. Kuroki,Helen A. Stafford Book 1994 Springer Science+Business Med

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Rudolf Schabus,Elisabeth Bosinaatalyzing the .- hydroxylation of a monophenol, followed by its oxidation to the .-diquinone (cresolase activity), or the oxidation of an .-dihydroxyphenol to the .-diquinone (catecholase activity). The quinonoid reaction products formed by PPO are familiar to anyone who has homogenized plant tissue
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Schußverletzungen des Kniegelenkes The evolution of lignin was a key factor in the appearance and radiation of land plants, and lignin still plays important physiological and developmental roles in terrestrial vascular plants.. Hemicelluloses and lignin form the embedding matrix of both primary and secondary plant cell walls, reinfo
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https://doi.org/10.1007/978-1-4615-2544-8Terpene; biosynthesis; genetic engineering; metabolism; microorganisms; regulation
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Progress in the Genetic Engineering of the Pyridine and Tropane Alkaloid Biosynthetic Pathways of Sieved in a few examples by selective breeding within the natural germplasm pool. In the 1960s, however, the potential of using plant cell . cultures to enhance variation was developed, and since then substantial effort has been put into the empirical manipulation of such cultures to yield high level
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Polyketide Biosynthesis: Antibiotics in ,,led by the head to tail condensation of thioesters derived from short chain carboxylic acids, most commonly acetyl-SCoA, malonyl-SCoA, methylmalonyl-SCoA, and ethylmalonyl-SCoA.. Despite this common biosynthetic origin, members of this class of natural products include a wide variety of structures r
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,The Biologist’s Palette: Genetic Engineering of Anthocyanin Biosynthesis and Flower Color,iety of plant parts. The color of flowers has received particular attention. Interest in flower color was focused not only in chemistry and biochemistry, but also in the genetics of flower color in a number of amenable plants, including . (snapdragon), . (carnation), and . (stock). Interest in the g
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Engineering Altered Glucosinolate Biosynthesis by Two Alternative Strategies,n and product synthesis. Both plants and microorganisms have evolved unique biosynthetic pathways for the production of a rich diversity of secondary metabolites that are utilized as medicinal chemicals, antimicrobial compounds and/or signalling molecules that are essential for the plant’s survival
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Genetic Manipulation of Lignin and Phenylpropanoid Compounds Involved in Interactions with Microorgility of engineering novel pathways or reducing unwanted metabolites by genetic engineering strategies. Such approaches should lead to significant improvements in agronomic performance and post-harvest processing. At present, the necessary knowledge base is most advanced in the area of phenylpropano
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The Genetic Origins of Biosynthesis and Light-Responsive Control of the Chemical UV Screen of Land B regions of the spectrum while allowing transmission of nearly all photosynthetically useful wavelengths.. These UV-absorbing pigments are mainly phenylpropanoids and flavonoids. This chapter summarizes current understanding of the mechanism of UV protection in higher land plants, evaluates the inf
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