Intrinsic wheat lipid composition effects the interfacial and foaming properties of dough liquor

Doughs were prepared from a single variety breadmaking flour (cv. Hereward), from three successive harvests (years; 2011, 2012 and 2013). A preparation of the aqueous phase from dough, known as dough liquor (DL), was prepared by ultracentrifugation and its physico-chemical properties were investigated. Surface tension and interfacial rheology, showed that the interface of DL was lipid-dominated and that 2013 DL had a different type of interface to 2011 and 2012 DL. This data was consistent with the improved foam stability observed for 2013 DL and with the types of lipids identified. All foams collapsed quickly, but the most stable foam was from 2013 DL with 89.2% loss in foam, followed by 2011 DL with 91.7% loss and 2012 had the least stable foam with a loss of 92.5% of the foam structure. Glycolipids (DGDG and MGDG) were enriched in 2013 DL, and were also present in DL foam, contributing towards improved stability. Neutral lipids, such as FFAs, were enriched in DL foams contributing towards instability and rapid foam collapse. Baking trials using 2012 and 2013 flour, showed increased loaf volumes and gas bubble diameter in 2013 bread compared to 2012 bread, highlighting the potential impact that surface active polar lipids, enriched in the aqueous phase of dough, could have on improving breadmaking quality.

Data and Resources

Additional Info

Field Value
Source
Version
Authors
Maintainer
Maintainer Email
Article Host Type repository
Article Is Open Access true
Article License Type cc-by
Article Version Type publishedVersion
Citation Report https://scite.ai/reports/10.1016/j.foodhyd.2017.08.020
DFW Organisation RRes
DFW Work Package 2
DOI 10.1016/j.foodhyd.2017.08.020
Date Last Updated 2019-07-24T20:54:03.411053
Evidence oa repository (via OAI-PMH title and first author match)
Journal Is Open Access false
Open Access Status green
PDF URL https://repository.rothamsted.ac.uk/download/00f85abf5e84f9ba6b62b79f2c4a6660fc8d9679c966af8d25eb591aeebcacad/2114244/1-s2.0-S0268005X17302369-main.pdf
Publisher URL https://doi.org/10.1016/j.foodhyd.2017.08.020