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The Tomato Fruit Cell Wall : II. Polyuronide Metabolism in a Nonsoftening Tomato Mutant

Overview
Journal Plant Physiol
Specialty Physiology
Date 1990 Mar 1
PMID 16667328
Citations 1
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Abstract

A nonsoftening tomato (Lycopersicon esculentum L.) variety, dg, was examined to assess the physiological basis for its inability to soften during ripening. Total uronic acid levels, 18 milligrams uronic acid/100 milligrams wall, and the extent of pectin esterification, 60 mole%, remained constant throughout fruit development in this mutant. The proportion of uronic acid susceptible to polygalacturonase in vitro also remained constant. Pretreatment of heat-inactivated dg fruit cell walls with tomato pectinmethylesterase enhances polygalacturonase susceptibility at all ripening stages. Pectinesterase activity of cell wall protein extracts from red ripe dg fruit was half that in extracts from analogous tissue of VF145B. Polygalacturonase activities of cell wall extracts, however, were similar in both varieties. Diffusion of uronic acid from tissue discs of both varieties increased beginning at the turning stage to a maximum of 2.0 milligrams uronic acid released/gram fresh weight at the ripe stage. The increased quantity of hydrolytic products released during ripening suggests the presence of in situ polygalacturonase activity. Low speed centrifugation was employed to induce efflux of uronide components from the cell wall tree space. In normal fruit, at the turning stage, 2.1 micrograms uronic acid/gram fresh weight was present in the eluant after 1 hour, and this value increased to a maximum of 8.2 micrograms uronic acid/gram fresh weight at the red ripe stage. However, centrifuge-aided extraction of hydrolytic products failed to provide evidence for in situ polygalacturonase activity in dg fruit. We conclude that pectinesterase and polygalacturonase enzymes are not active in situ during the ripening of dg fruit. This could account for the maintenance of firmness in ripe fruit tissue.

Citing Articles

Novel Technique for Measuring Tissue Firmness within Tomato (Lycopersicon esculentum Mill.) Fruit.

Kojima K, Sakurai N, Kuraishi S, Yamamoto R, Nevins D Plant Physiol. 1991; 96(2):545-50.

PMID: 16668220 PMC: 1080804. DOI: 10.1104/pp.96.2.545.

References
1.
BLUMENKRANTZ N, ASBOE-HANSEN G . New method for quantitative determination of uronic acids. Anal Biochem. 1973; 54(2):484-9. DOI: 10.1016/0003-2697(73)90377-1. View

2.
Koch J, Nevins D . Tomato fruit cell wall : I. Use of purified tomato polygalacturonase and pectinmethylesterase to identify developmental changes in pectins. Plant Physiol. 1989; 91(3):816-22. PMC: 1062081. DOI: 10.1104/pp.91.3.816. View

3.
Maynard J, Lucas W . Sucrose and Glucose Uptake into Beta vulgaris Leaf Tissues : A Case for General (Apoplastic) Retrieval Systems. Plant Physiol. 1982; 70(5):1436-43. PMC: 1065902. DOI: 10.1104/pp.70.5.1436. View

4.
Rushing J, Huber D . In vitro characterization of tomato fruit softening : the use of enzymically active cell walls. Plant Physiol. 1984; 75(4):891-4. PMC: 1067019. DOI: 10.1104/pp.75.4.891. View

5.
Terry M, Bonner B . An Examination of Centrifugation as a Method of Extracting an Extracellular Solution from Peas, and Its Use for the Study of Indoleacetic Acid-induced Growth. Plant Physiol. 1980; 66(2):321-5. PMC: 440591. DOI: 10.1104/pp.66.2.321. View