Literature DB >> 33233119

The role of rye bran acidification and in situ dextran formation on structure and texture of high fibre extrudates.

Markus Nikinmaa1, Ilkka Kajala2, Xia Liu3, Emilia Nordlund2, Nesli Sozer2.   

Abstract

High insoluble dietary fibre content causes challenges with structure and texture in extrusion. This paper focused on studying the structure of extrudate enriched with rye bran modified in different ways. Fermentation of rye bran with dextran-producing Weissella confusa (with 10 g/100 g, 5 g/100 g and 0 g/100 g added sucrose as substrate for dextran production), in situ enzymatic production of dextran in the bran and chemical acidification of bran with lactic acid were compared in extrusion trials. Endosperm rye flour was the base in extrusion, of which 32 g/100 g was substituted for rye bran. Fermentation with dextran production showed similar improvement in extrudate expansion as chemically acidified bran samples (489 and 493%), in comparison with native bran (420%). Similarly, these treatments decreased extrudate hardness and increased crispiness index (CI) (16 N, 0.06 and 14 N, 0.071 respectively) compared to the control (39 N, 0.008). Enzymatically produced dextran did not affect expansion, although it decreased hardness (26 N) and increased CI compared to the control (0.023). Chemical changes in the fermented and acidified rye bran included reduction in insoluble dietary fibre (DF) (19 g/100 g → 17 g/100 g) and increase in soluble DF (5.17 g/100 g → 5.51-7.19 g/100 g), as well as soluble protein (8 g/100 g → 11 g/100 g) content. Lactic acid bacteria fermentation or acidification is therefore a promising method to increase the functionality of rye bran in extrusion.
Copyright © 2020 The Authors. Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Bran; Dextransucrase; Exopolysaccharides; High fibre extrusion; Lactic acid bacteria fermentation

Mesh:

Substances:

Year:  2020        PMID: 33233119     DOI: 10.1016/j.foodres.2020.109438

Source DB:  PubMed          Journal:  Food Res Int        ISSN: 0963-9969            Impact factor:   6.475


  2 in total

1.  Brewers' spent grain as substrate for dextran biosynthesis by Leuconostoc pseudomesenteroides DSM20193 and Weissella confusa A16.

Authors:  Prabin Koirala; Ndegwa Henry Maina; Hanna Nihtilä; Kati Katina; Rossana Coda
Journal:  Microb Cell Fact       Date:  2021-01-22       Impact factor: 5.328

Review 2.  Grains - a major source of sustainable protein for health.

Authors:  Kaisa S Poutanen; Anna O Kårlund; Carlos Gómez-Gallego; Daniel P Johansson; Nathalie M Scheers; Ingela M Marklinder; Anne K Eriksen; Pia C Silventoinen; Emilia Nordlund; Nesli Sozer; Kati J Hanhineva; Marjukka Kolehmainen; Rikard Landberg
Journal:  Nutr Rev       Date:  2022-05-09       Impact factor: 6.846

  2 in total

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