Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.

The goal of this work was to evaluate changes in dietary fiber measured by the traditional enzymatic-gravimetric method (AOAC 991.43) and the more recently accepted modified enzymatic-gravimetric method (AOAC 2011.25), mono- and disaccharides, and starch as a function of assessed ripeness in a contr...

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Main Authors: Katherine M Phillips, Ryan C McGinty, Garret Couture, Pamela R Pehrsson, Kyle McKillop, Naomi K Fukagawa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0253366
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spelling doaj-098db4c007514683a5315286d21a2e2b2021-07-22T04:30:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01167e025336610.1371/journal.pone.0253366Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.Katherine M PhillipsRyan C McGintyGarret CouturePamela R PehrssonKyle McKillopNaomi K FukagawaThe goal of this work was to evaluate changes in dietary fiber measured by the traditional enzymatic-gravimetric method (AOAC 991.43) and the more recently accepted modified enzymatic-gravimetric method (AOAC 2011.25), mono- and disaccharides, and starch as a function of assessed ripeness in a controlled study of a single lot of bananas and in bananas at the same assessed stages of ripeness from bananas purchased in retail stores, from different suppliers. Sugars, starch, and dietary fiber were analyzed in bananas from a single lot, at different stages of ripeness, and in retail samples at the same assessed stages of ripeness. Mean fiber measured by the traditional enzymatic-gravimetric method (EG) was ~2 g/100g and not affected by ripeness. Mean fiber assessed with the recently modified method (mEG) was ~18 g/100g in unripe fruit and decreased to 4-5 g/100g in ripe and ~2 g/100g in overripe bananas. Slightly ripe and ripe bananas differed by ~1.1 g/100g in the controlled single-lot study but not among retail samples. There was a large increase in fructose, glucose and total sugar going from unripe to ripe with no differences between ripe and overripe. Aside from stage of ripeness, the carbohydrate composition in retail bananas is likely affected by differences in cultivar and post-harvest handling. Results from this study demonstrate the importance of measuring dietary fiber using the mEG approach, developing more comprehensive and sensitive carbohydrate analytical protocols and food composition data, and recognizing the impact of different stages of maturity and ripeness on carbohydrate intake estimated from food composition data.https://doi.org/10.1371/journal.pone.0253366
collection DOAJ
language English
format Article
sources DOAJ
author Katherine M Phillips
Ryan C McGinty
Garret Couture
Pamela R Pehrsson
Kyle McKillop
Naomi K Fukagawa
spellingShingle Katherine M Phillips
Ryan C McGinty
Garret Couture
Pamela R Pehrsson
Kyle McKillop
Naomi K Fukagawa
Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
PLoS ONE
author_facet Katherine M Phillips
Ryan C McGinty
Garret Couture
Pamela R Pehrsson
Kyle McKillop
Naomi K Fukagawa
author_sort Katherine M Phillips
title Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
title_short Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
title_full Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
title_fullStr Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
title_full_unstemmed Dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
title_sort dietary fiber, starch, and sugars in bananas at different stages of ripeness in the retail market.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description The goal of this work was to evaluate changes in dietary fiber measured by the traditional enzymatic-gravimetric method (AOAC 991.43) and the more recently accepted modified enzymatic-gravimetric method (AOAC 2011.25), mono- and disaccharides, and starch as a function of assessed ripeness in a controlled study of a single lot of bananas and in bananas at the same assessed stages of ripeness from bananas purchased in retail stores, from different suppliers. Sugars, starch, and dietary fiber were analyzed in bananas from a single lot, at different stages of ripeness, and in retail samples at the same assessed stages of ripeness. Mean fiber measured by the traditional enzymatic-gravimetric method (EG) was ~2 g/100g and not affected by ripeness. Mean fiber assessed with the recently modified method (mEG) was ~18 g/100g in unripe fruit and decreased to 4-5 g/100g in ripe and ~2 g/100g in overripe bananas. Slightly ripe and ripe bananas differed by ~1.1 g/100g in the controlled single-lot study but not among retail samples. There was a large increase in fructose, glucose and total sugar going from unripe to ripe with no differences between ripe and overripe. Aside from stage of ripeness, the carbohydrate composition in retail bananas is likely affected by differences in cultivar and post-harvest handling. Results from this study demonstrate the importance of measuring dietary fiber using the mEG approach, developing more comprehensive and sensitive carbohydrate analytical protocols and food composition data, and recognizing the impact of different stages of maturity and ripeness on carbohydrate intake estimated from food composition data.
url https://doi.org/10.1371/journal.pone.0253366
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