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Titlebook: Biology and Biotechnology of the Plant Hormone Ethylene II; A. K. Kanellis,C. Chang,D. Grierson Book 1999 Springer Science+Business Media

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期刊全称Biology and Biotechnology of the Plant Hormone Ethylene II
影响因子2023A. K. Kanellis,C. Chang,D. Grierson
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图书封面Titlebook: Biology and Biotechnology of the Plant Hormone Ethylene II;  A. K. Kanellis,C. Chang,D. Grierson Book 1999 Springer Science+Business Media
影响因子The inflorescence of the monoecious maize plant is unique among the Gramineae in the sharp separation of the male and female structures. The male tassel at the terminus of the plant most often sheds pollen before the visual appearance of the receptive silks of th the female ear at a lateral bud, normally at the 10 leaf [I]. Earlier studies examined the ontogeny of the growing tissues beginning with the embryo in the kernel through to the obvious protuberances of the growing point as the kernel germinates. The differentiated developing soon-to-become tassel and the lateral bulges that develop into the ears on the lateral buds become apparent very early in the germinating kernel [2, 3, 46]. A certain number of cells are destined for tassel and ear development [8]. As the plant develops, there is a phase transition [3, 16] from the vegetative lateral buds to the reproductive lateral buds. This change in phase has been ascribed to genotypic control as evidenced in the differences among different genotypes in the initiation of the reproductive [I]. The genetic control of tassel and ear initiation has been gleaned from anatomical observations. Lejeune and Bernier [I2] found that maize pl
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Organization and Structure of 1-Aminocyclopropane-1-Carboxylate Oxidase Gene Family from Peachthe isolation and characterization of an ACO peach cDNA clone (pch313) [1]. Southern analysis indicated that also in peach ACO is encoded by a multigene family in which at least three members are present [4]. Herein the isolation and characterization of two (. and .) of these members is reported.
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Hubert Hinterhofer,Christian Rosbaudroposed to account for the provision of ascorbate to the enzyme functioning in the plant cell. Evidence indicates that the enzyme is located in the apoplasm, at least in ripening fruit. It is suggested that ascorbate in the apoplast remains in a reduced state by the outward flow of reducing potentia
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https://doi.org/10.1007/3-211-31398-2. activates the enzyme. Mutants of ACO were expressed in . as His-Tag fusion proteins. A consensus sequence search of 38 known or putative ACO revealed 8 completely conserved lysine residues; K., K., K., K., K., K. K. and K.. All of the lysine mutant forms were typically activated by CO. indicating
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Abschnitt VerwaltungsstrafbestimmungenA by Sato and Theologis [3] and subsequent production of transgenic tomatoes with reduced levels of ethylene and delayed ripening [2] opened the door to the use of molecular biology approaches to control of ripening in other climacteric fruit crops. Nevertheless, nonclimacteric fruit ripening is sti
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