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Firming of fruit tissues by vacuum-infusion of pectin methylesterase: Visualisation of enzyme action
Authors:Anne Guillemin,Fabienne Guillon,Pascal Degraeve,Corinne Rondeau,Marie-Franç  oise Devaux,Franç  oise Huber,Eric Badel,Ré  mi Saurel,Marc Lahaye
Affiliation:1. Université Lyon 1, Laboratoire de Recherche en Génie Industriel Alimentaire (EA 3733), IUT A -- Département de Génie Biologique, Technopole Alimentec -- rue Henri de Boissieu, 01060 Bourg en Bresse Cedex 9, France;2. UR1268 Biopolymères Interactions Assemblages, INRA, 44300 Nantes, France;3. Laboratoire d’Etudes et de Recherches sur le Matériau Bois, UMR 1093 INRA-AgroParisTech-Université Nancy I, 54042 Nancy, France;4. Université de Bourgogne, Equipe Eau -- Molécules actives -- Macromolécules -- Activités (EA 581), ENSBANA, 1 Esplanade Erasme, 21000 Dijon, France
Abstract:Apple pieces were vacuum-impregnated with either a pectin methylesterase (PME) and calcium solution or with water prior to pasteurization. Pasteurized apple pieces impregnated with PME and calcium showed a significantly higher firmness. Moreover, solid state 13C NMR spectroscopy of apple cell wall residues revealed an increase of their molecular rigidity. Exogenous PME addition involved a decrease from 82% to 45% of apple pectin degree of methyl-esterification. Microscopic observations of apple slices immunolabelled with antibodies specific for pectins showed that (i) demethyl-esterification was more intense in the cell wall region lining intercellular spaces (demonstrating a key role for these intercellular channels in the enzyme penetration in the tissue during vacuum-infusion) and that (ii) the number of calcium-dimerized deesterified homogalacturonan chains increased. The results corroborate the hypothesis that vacuum-impregnated PME action liberates free carboxyl groups along pectin chains that could interact with calcium, increasing the rigidity of pectins and finally the mechanical rigidity of apple tissue.
Keywords:Vacuum-impregnation   Fruit firmness   Pectin   Pectin methylesterase
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