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Titlebook: Alkaloid Biology and Metabolism in Plants; George R. Waller,Edmund K. Nowacki Book 1978 Plenum Press, New York 1978 agriculture.agronomy.a

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期刊全稱Alkaloid Biology and Metabolism in Plants
影響因子2023George R. Waller,Edmund K. Nowacki
視頻videohttp://file.papertrans.cn/154/153369/153369.mp4
圖書封面Titlebook: Alkaloid Biology and Metabolism in Plants;  George R. Waller,Edmund K. Nowacki Book 1978 Plenum Press, New York 1978 agriculture.agronomy.a
影響因子* This book is designed for the use of the advanced student and professional worker interested in the international scientific community, particularly those in the fields of agronomy, agricultural sciences, botany, biological sciences, natural products chemistry, pharmaceutical chemistry and bio- chemistry. The purpose is to inform the reader about significant advances in the biology and metabolism of alkaloids in plants. Since alkaloids are generally referred to as "secondary metabolites," the reactions discussed are not, for the most part, involved with the main metabolic pathways. The reactions that we are interested in are pathways that have been developed for the formation of these secondary metabolites, using as their starting mole- cules one of the compounds produced via a main or primary metabolic path- way. The primary metabolic pathways are common to all plants, indeed to most living organisms, whereas the highly specialized branches leading to alkaloid formation are found in only about 10 to 20 % of the known plants. The reason for these diversities in plant metabolism is not clear; however, it seems likely that the formation of highly individualized and specialized path
Pindex Book 1978
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https://doi.org/10.1007/978-3-322-83273-3cal characters in the pea, . (Peters, 1959). One of these was a chemical character; while crossing red and white flowering peas, Mendel actually crossed varieties with and without the ability to synthesize the red flower pigment known as anthocyanidin. The ability to synthesize the pigment was a dom
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und der , — Von der , zum Mainstreamg on the tissue; however, this process is mostly irreversible, e.g., there is no way known at present to reverse the development of a nerve cell or a liver cell into an embryonic one. This is true to some extent for plant cells also; usually a leaf cell performs leaf metabolism, while a root cell pe
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und der , — Von der , zum Mainstreamtorage reservoirs of nitrogen, (3) protective agents for the plant against attack by predators, (4) growth regulators (since structures of some of them resemble structures of known growth regulators), or (5) substitutes for minerals in plants, such as potassium and calcium (according to Justus von L
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