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Titlebook: Gibberellins; Nobutaka Takahashi,Bernard O. Phinney,Jake MacMill Conference proceedings 1991 Springer-Verlag New York Inc. 1991 Brassinost

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书目名称Gibberellins
编辑Nobutaka Takahashi,Bernard O. Phinney,Jake MacMill
视频video
图书封面Titlebook: Gibberellins;  Nobutaka Takahashi,Bernard O. Phinney,Jake MacMill Conference proceedings 1991 Springer-Verlag New York Inc. 1991 Brassinost
描述The cultivation of rice in Japan has suffered from damage caused by baka­ nae disease, in which rice seedlings show abnormal growth (elongation) as the result of infection by a plant pathogen. Investigation of the taxonomy of this pathogen led to the commencement of gibberellin (GA) research among Japanese plant pathologists, who later identified it as Gibberella jujikuroi, its other name being Fusarium moniliforme. In 1926, Kurosawa demon­ strated the occurrence of an active principle in the culture media of fungus that showed the same symptoms as those of the rice disease. In 1938, this finding was followed by the successful isolation of the active principles as crystals from the culture filtrate. This was achieved by the Japanese agri­ cultural chemists Yabuta and Sumiki, of The University of Tokyo, who named these active principles gibberellins A and B. Following World War II, this discovery attracted the interest of scientists around the world, and research on GA was pursued on a worldwide scale. One of the most outstanding discoveries in GA research after the isolation of GA as the metabolite of the plant pathogen must be the isolation and characterization of GAs from tissues
出版日期Conference proceedings 1991
关键词Brassinosteroid; Calcium; Gibberellin; biosynthesis; cell; endoplasmic reticulum; enzyme; enzymes; metabolis
版次1
doihttps://doi.org/10.1007/978-1-4612-3002-1
isbn_softcover978-1-4612-7754-5
isbn_ebook978-1-4612-3002-1
copyrightSpringer-Verlag New York Inc. 1991
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Nobutaka Takahashi,Bernard O. Phinney,Jake MacMill
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Gibberellin Metabolism in Maize: Tissue Specificityiosynthesis in maize shoots; the results clearly define the specific steps controlled by two of the mutants (. and .). The above studies have led to the conclusion that GA. is the only GA bioactive per se in the pathway controlling stem elongation in maize shoots.; the other GAs in the pathway are a
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Gibberellins and the Regulation of Shoot Elongation in Woody Plantsngation are separated in time and shoot extension is a result of elongation of these preformed stem units.. The growth pattern is an inherent characteristic of the plant, and species showing various combinations of free and fixed growth can also be found. In addition, the growth pattern of a species
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