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Microscopic investigation of the formation of a thermoset wheat gluten network in a model system relevant for bread making

  • Annelien E. Verbauwhede
  • , Marlies A. Lambrecht
  • , Mario Jekle
  • , Isabelle Lucas
  • , Ellen Fierens
  • , Oksana Shegay
  • , Kristof Brijs
  • , Jan A. Delcour
  • Department of Microbial and Molecular Systems (M2S)
  • Technical University of Munich
  • Flanders’ Food
  • Puratos Group

Research output: Contribution to journalArticlepeer-review

35 Scopus citations

Abstract

Although the impact of heat on molecular properties of wheat gluten is well understood, changes in its microstructure have rarely been studied. Here, formation of the thermoset gluten network in a model system relevant for bread baking was studied with confocal laser scanning microscopy and protein network analysis. From 65 °C onwards, gluten converts from thick aligned protein strands in a highly branched and homogeneous network of small thin protein threads. Neither gliadin incorporation in the network nor application of aqualysin 1, the thermo-active serine peptidase from Thermus aquaticus which recently has been reported to hydrolyse gluten proteins in dough only at temperatures exceeding 80 °C, impacts on the gluten microstructure. As starch causes structure setting itself and thereby decreases protein mobility, molecular scale changes in the gluten network at temperatures exceeding 80 °C brought about by aqualysin 1 do not impact its microstructure.

Original languageEnglish
Pages (from-to)891-898
Number of pages8
JournalInternational Journal of Food Science and Technology
Volume55
Issue number2
DOIs
StatePublished - 1 Feb 2020

Keywords

  • Aqualysin 1
  • confocal laser scanning microscopy
  • model for bread making
  • protein network analysis
  • thermoset gluten microstructure

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