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首页> 外文期刊>Journal of Cereal Science >Thiamin (vitamin B1) and thiamin phosphate esters in five cereal grains during maturation.
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Thiamin (vitamin B1) and thiamin phosphate esters in five cereal grains during maturation.

机译:五个谷物中的硫胺素(维生素B 1 )和硫胺素磷酸酯在成熟过程中。

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Non-phosphorylated thiamin (T), thiamin monophosphate (TMP), and thiamin diphosphate (TDP) were extracted from whole grains of wheat (Triticum aestivum, cv. Dekan), triticale (Triticosecale, cv. SW Talentro), rye (Secale cereale, cv. Agronom), oats (Avena sativa, cv. Dominik), and barley (Hordeum vulgare, cv. Merlot) at different growth stages (from inflorescence emergence to full ripeness of the grains) and determined with high-performance liquid chromatography and fluorescence detection. No thiamin triphosphate or adenosine thiamin triphosphate was found in these cereals. Total thiamin levels (the sum of T and its phosphate esters) determined on a dry matter (DM) basis were found to be quite similar in all grain samples throughout the analysis period, ranging from 5.59 (wheat) to 13.00 nmol/g DM (oats). In spikelets 3-5 days after flowering, the total thiamin content in all cereals was 40-75% T, 5-13% TMP, and 18-46% TDP. Generally, T increased and TDP decreased continuously with grain development, with maximum T (88-99%), and minimum TDP (2-10%) at ripeness. No TMP was detected in mature grains. The results indicate that variation in T, TMP, and TDP levels is probably due above all to the conversion of phosphorylated thiamin phosphate esters into less highly or non-phosphorylated forms. All rights reserved, Elsevier.
机译:从小麦( Triticum aestivum ,德坎(Dekan)),小黑麦(Triticosecale,cv.SW)的全谷物中提取非磷酸化的硫胺素(T),单磷酸硫胺素(TMP)和二磷酸硫胺素(TDP)。塔伦特罗(Talentro),黑麦( Secale谷类,农用农作物),燕麦( Avena sativa ,多米尼克)和大麦(大麦), cv。Merlot)在不同的生长阶段(从花序出苗到谷物完全成熟),并通过高效液相色谱和荧光检测进行测定。在这些谷物中未发现硫胺素三磷酸或腺苷三磷酸硫胺素。在整个分析期间,发现所有谷物样品中以干物质(DM)为基准的总硫胺素水平(T及其磷酸酯的总和)非常相似,范围从5.59(小麦)至13.00 nmol / g DM(燕麦)。开花后3-5天的小穗中,所有谷物中的总硫胺素含量为40-75%T,5-13%TMP和18-46%TDP。通常,随着籽粒的发育,T升高而TDP连续降低,成熟时最大T(88-99%)和最小TDP(2-10%)。在成熟谷物中未检测到TMP。结果表明,T,TMP和TDP含量的变化可能首先归因于磷酸化硫胺磷酸酯转化为不太高或非磷酸化的形式。保留所有权利,Elsevier。

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