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Metabolism in plant storage tissue slices

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Abstract

The tissue of resting plant storage organs such as carrots, red beets, sugar beets or potato tubers can be activated by slicing into thin disks and incubation of these fragments in a moist atmosphere for different periods of time (“aging”). Activation comprises the turning-on of various genes with subsequent synthesis of transfer-, ribosomal and messenger RNAs and their transport into the cytoplasm. The immediate consequence of all these primary reactions is a vigorous synthesis of various enzymes and structural proteins which enable the cell to greatly enhanced metabolic activities. Thus, degradation of storage polymers and the procession of the resulting products through glycolysis, the pentose phosphate shunt and the shikimateprephenate-pathway and cellulose biosynthesis occur. Deinhibition of the tricarboxylic acid cycle opens the flow of metabolites into fatty acid, phospholipid and steroid biosynthesis, simultaneously providing the respiratory chain with electrons. In spite of functional modifications within the electron transport chain, the enhanced respiration of tissue slices serves as an energy source for the various energy-dependent reactions of the cell such as syntheses and the uptake of solutes.

All of these activities accompany a concomitant dedifferentiation process and ultimately lead to renewed redifferentiation of the tissue slice cell.

Zusammenfassung

Das Gewebe ruhender pflanzlicher Speicherorgane wie Karotten, Rote Beeten, Zuckerrüben oder Kartoffelknollen lä\t sich durch einfaches Zerteilen in kleine Fragmente oder Scheiben und deren Aufbewahrung in feuchter Atmosphäre aktivieren. Der Aktivierungsproze\, im englischen Sprachgebrauch unkorrekt als “aging” bezeichnet, umfa\t die Entblockung zahlloser Gene, deren unmittelbare Produkte als Messenger-, Transferoder ribosomale RNA-Spezies im Cytoplasma der Zelle erscheinen. Die auf diese Primärprozesse folgende Synthese vieler Enzyme und Strukturproteine ist unabdingbare Voraussetzung für den verstärkt ablaufenden Stoffwechsel in den Gewebescheiben. Eine Erhöhung des Stoffdurchsatzes in der Glykolyse, im Pentosephosphatzyklus und dem Shikimi-säure-Prephensäure-Weg sowie eine verstärkte Cellulosesynthese ist ein Charakteristikum des “aging”-Prozesses in Gewebescheiben praktisch aller pflanzlicher Speicherorgane. Der Metabolitflu\ in die Fettsäure-, Phospholipid-und Steroidbiosynthese wird durch eine Entblockung des im intakten Speicherorgan geblockten Tricarbonsäurezyklus ermöglicht. Gleichzeitig werden dadurch der Atmungskette verstärkt Elektronen zugeführt, die zum Teil über eine modifizierte Endoxydation verarbeitet werden. Trotzdem bleibt auch hier die Gewinnung von Energie für energieverbrauchende Prozesse in der Zelle die Hauptaufgabe der Atmungskette.

Der gesamte Proze\ der Stoffwechselaktivierung begleitet eine zelluläre Dedifferenzierung der vorher ausdifferenzierten Speicherparenchymzelle und führt letztlich zu ihrer erneuten Redifferenzierung zu einer Zelle mit Abschlu\funktion.

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Kahl, G. Metabolism in plant storage tissue slices. Bot. Rev 40, 263–314 (1974). https://doi.org/10.1007/BF02860064

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