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Effect of oxygen on growth and respiration of potato tuber callus
Authors:Linus H. W. van der Plas  Marijke J. Wagner
Affiliation:(1) Dept. of Plant Physiology, Vrije Universiteit, De Boelelaan 1087, 1081 HV Amsterdam, The Netherlands
Abstract:Growth and oxygen uptake of potato callus is faster in an oxygen-enriched atmosphere (70% oxygen, v/v; ldquooxygen-callusrdquo) than in air (20% oxygen, v/v; ldquoair-callusrdquo). Especially the non-mitochondrial, so-called lsquoresidual respirationrsquo is increased in ldquooxygen-callusrdquo. The capacities of the mitochondrial respiratory pathways (cytochrome pathway, Vcyt and alternative pathway, Valt) are also higher in this callus. In both callus types only a small part of the alternative pathway capacity is used in uninhibited respiration. The lower oxygen uptake of ldquoair-callusrdquo at normal air oxygen pressures is partially due to diffusional impedance. Measurement of the respiratory parameters of ldquoair-callusrdquo in oxygen-saturated medium leads to higher values than measurement in air-saturated medium, although these values are still lower than those of ldquooxygen-callusrdquo.ATP-production was calculated from the oxygen-uptake data and compared with the dry weight production of the callus to give values of 10.0 and 10.8 g dry weight produced.-mol ATP-1, for ldquoair-callusrdquo and ldquooxygen-callusrdquo respectively. As no harmful side-effects are observed, cultivation of callus under elevated oxygen pressures may be useful, when rapid callus-growth is necessary.Abbreviations AA antimycin A; A; - BHAM benzohydroxamate - DW dry weight - FW fresh weight - 8-OHQ 8-hydroxyquinolin - RC respiratory control - SHAM salicylhydroxamate
Keywords:callus  mitochondria  oxygen  potato  respiration
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