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Titlebook: Cell and Developmental Biology of Arabinogalactan-Proteins; Eugene A. Nothnagel,Antony Bacic,Adrienne E. Clark Book 2000 Springer Science+

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Structure and Biosynthesis of L-Fucosylated Arabinogalactan-Proteins in Cruciferous Plantson exchange resin followed by gel filtration was effective for the preparation of higher purity AGPs differing in molecular masses. From radish, rape, and . leaves and radish primary roots, recoveries of total AGPs were 100–200 mg/kg fresh tissue weight. The purified AGPs were apparently homogenous
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Arabinogalactan-Proteins and Cell Development in Roots and Somatic Embryostions that they may function as lubricants, adhesion molecules or nutrients. It has also been proposed that they in some way encode information at cell surfaces that is utilized during development. Given such apparent complexity, several diverse experimental approaches to AGP function are applicable
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Transcriptional, Post-Transcriptional and Post-Translational Regulation of a , Stylar Transmitting Temely efficient (e.g., reaching a rate of 1 cm/hour in maize). In ., pollen tubes elongate at an approximate rate of 0.15 cm/hour under normal greenhouse conditions (.). However, . pollen tubes elongated at a rate of 235 μm/hour under what was considered to be the most optimal . conditions reported
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Arabinogalactan-Proteins in Pollen Tube Growth recent discovery that some plasma membrane AGPs have glycosylphosphatidylinositol anchors has suggested the possibility of their involvement in signaling cascades at the cell surface (., ., .). Polyclonal and monoclonal antibodies to AGPs have been produced with polysaccharide epitopes of mostly un
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Arabinogalactan-Proteins, Place-Dependent Suppression and Plant Morphogenesisferent stages of plant ontogeny, three separate aspects of plant morphogenesis are modified. In each case the experimentally induced changes in plant morphogenesis could be correlated with quantitative and/or qualitative differences in AGPs.
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Induction of Phyletic Phenocopies in Streptocarpus (Gesneriaceae) by Three Antagonists of Hydroxyproscattered throughout the Cyrtandroideae, the single cotyledon continues development to become the entire vegetative structure of the mature plant. This reaches an extreme in the genus ., which completely lacks a shoot apical meristem (.). The “fuzzy morphology” (.) of this self-contained organism (h
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Evidence for the Interrelated Actions of Auxin, Ethylene, and Arabinogalactan-Proteins on the Transisearch in this area indicated that the auxin-ethylene-AGP system played a critical role in three important aspects of pattern formation and pattern change in leafy liverworts, and probably all plants (.). One aspect, already mentioned, is to stop (suppress) the further development of specific organ
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