Vitamin E isomers in grain amaranths (Amaranthus spp.)

Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase, high‐performance liquid chromatography with fluorescence detection, seeds of thirteen amaranth (Amaranthus cruentus L.,A. hypochondriacus L.) accession...

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Published inLipids Vol. 29; no. 3; pp. 177 - 181
Main Authors Lehmann, J.W, Putnam, D.H, Qureshi, A.A
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer‐Verlag 01.03.1994
Springer
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Abstract Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase, high‐performance liquid chromatography with fluorescence detection, seeds of thirteen amaranth (Amaranthus cruentus L.,A. hypochondriacus L.) accessions were surveyed for the composition of tocols. The most common tocols found were α‐tocopherol (2.97 to 15.65 mg/kg seed) and β‐tocotrienol (5.92 to 11.47 mg/kg seed) and γ‐tocotrienol (0.95 to 8.69 mg/kg seed), while someA. cruentus accessions contained δ‐tocotrienol (0.01 to 0.42 mg/kg seed). This is the first report of tocotrienols in amaranths.Amaranthus cruentus grain‐types of Mesoamerican origin had significantly (P≤0.01) greater levels of four tocols than didA. cruentus African vegetable‐types. Unlike many cereal grains, amaranths have significant amounts of both β‐ and γ‐tocotrienols; however, β‐tocopherol was not detected in any of the amaranths. Using multiple linear regressions, α‐tocopherol variation of both species and types was consistently explained by variation in tocols other than α‐tocopherol. On the whole, fresh amaranth samples of both species tended to have higher levels of tocotrienols than samples stored for two years. Storage effects on amaranth tocol composition are suspected.
AbstractList Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase, high‐performance liquid chromatography with fluorescence detection, seeds of thirteen amaranth (Amaranthus cruentus L.,A. hypochondriacus L.) accessions were surveyed for the composition of tocols. The most common tocols found were α‐tocopherol (2.97 to 15.65 mg/kg seed) and β‐tocotrienol (5.92 to 11.47 mg/kg seed) and γ‐tocotrienol (0.95 to 8.69 mg/kg seed), while someA. cruentus accessions contained δ‐tocotrienol (0.01 to 0.42 mg/kg seed). This is the first report of tocotrienols in amaranths.Amaranthus cruentus grain‐types of Mesoamerican origin had significantly (P≤0.01) greater levels of four tocols than didA. cruentus African vegetable‐types. Unlike many cereal grains, amaranths have significant amounts of both β‐ and γ‐tocotrienols; however, β‐tocopherol was not detected in any of the amaranths. Using multiple linear regressions, α‐tocopherol variation of both species and types was consistently explained by variation in tocols other than α‐tocopherol. On the whole, fresh amaranth samples of both species tended to have higher levels of tocotrienols than samples stored for two years. Storage effects on amaranth tocol composition are suspected.
Abstract Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase, high‐performance liquid chromatography with fluorescence detection, seeds of thirteen amaranth ( Amaranthus cruentus L., A. hypochondriacus L.) accessions were surveyed for the composition of tocols. The most common tocols found were α‐tocopherol (2.97 to 15.65 mg/kg seed) and β‐tocotrienol (5.92 to 11.47 mg/kg seed) and γ‐tocotrienol (0.95 to 8.69 mg/kg seed), while some A. cruentus accessions contained δ‐tocotrienol (0.01 to 0.42 mg/kg seed). This is the first report of tocotrienols in amaranths. Amaranthus cruentus grain‐types of Mesoamerican origin had significantly ( P ≤0.01) greater levels of four tocols than did A. cruentus African vegetable‐types. Unlike many cereal grains, amaranths have significant amounts of both β‐ and γ‐tocotrienols; however, β‐tocopherol was not detected in any of the amaranths. Using multiple linear regressions, α‐tocopherol variation of both species and types was consistently explained by variation in tocols other than α‐tocopherol. On the whole, fresh amaranth samples of both species tended to have higher levels of tocotrienols than samples stored for two years. Storage effects on amaranth tocol composition are suspected.
Author Qureshi, A.A
Lehmann, J.W
Putnam, D.H
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ContentType Journal Article
Copyright 1994 American Oil Chemists' Society (AOCS)
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Issue 3
Keywords Seeds
Vegetable crop
Amaranthus cruentus
Dicotyledones
Angiospermae
α-Tocopherol
Amaranthaceae
Spermatophyta
Chemical composition
Isomer
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  doi: 10.1002/jsfa.2740091206
– ident: e_1_2_2_25_1
  doi: 10.1007/BF01092066
– ident: e_1_2_2_31_1
  doi: 10.2135/cropsci1991.0011183X003100020059x
– volume: 34
  start-page: 950
  year: 1989
  ident: e_1_2_2_9_1
  publication-title: Cereal Foods World
  contributor:
    fullname: Becker R.
– ident: e_1_2_2_18_1
  doi: 10.1007/BF02612988
SSID ssj0021495
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Snippet Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase,...
Abstract Vitamin E isomers are important antioxidants, but their variation is poorly documented in pseduocereal grains such as amaranths. Using normal‐phase,...
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SubjectTerms AMARANTHUS CRUENTUS
AMARANTHUS HYPOCHONDRIACUS
Biological and medical sciences
CHEMICAL COMPOSITION
Chemical constitution
COMPOSICION QUIMICA
COMPOSITION CHIMIQUE
CULTIVARS
DISTRIBUCION NATURAL
DISTRIBUTION NATURELLE
FENOTIPOS
Fundamental and applied biological sciences. Psychology
GENETIC VARIATION
GEOGRAPHICAL DISTRIBUTION
GERMOPLASMA
GERMPLASM
GRAINE
MATERIEL GENETIQUE
NATURAL DISTRIBUTION
PHENOTYPE
PHENOTYPES
PHENOTYPIC CORRELATION
Plant physiology and development
SEEDS
SEMILLA
TOCOFEROLES
TOCOPHEROL
TOCOPHEROLS
TOCOTRIENOL
TOCOTRIENOLES
TOCOTRIENOLS
VARIACION GENETICA
VARIATION GENETIQUE
VARIEDADES
VARIETE
VARIETIES
Title Vitamin E isomers in grain amaranths (Amaranthus spp.)
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Volume 29
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