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比较叠氮化钠诱导红米突变体的糠层中的蛋白质、脂质、酚类、γ-谷维素、维生素 E 和矿物质含量。

Comparisons of protein, lipid, phenolics, γ-oryzanol, vitamin E, and mineral contents in bran layer of sodium azide-induced red rice mutants.

机构信息

Biotechnology division, Taiwan Agricultural Research Institute, Wufeng, Taichung County, Taiwan, ROC.

出版信息

J Sci Food Agric. 2011 Jun;91(8):1459-65. doi: 10.1002/jsfa.4333. Epub 2011 Feb 18.

Abstract

BACKGROUND

The bran part of red rice grain is concentrated with many phytochemicals, including proanthocyanidins, oryzanol and vitamin E, that exert beneficial effects on human health, but it contains low levels of essential minerals such as Fe and Zn. In the present study, the protein, lipid, phytochemicals and mineral contents in bran samples were compared among red rice SA-586 and its NaN₃-induced mutants.

RESULTS

The plant heights of NaN₃-induced mutants were decreased. The contents of protein, lipid, total phenolics, total flavonoids, total anthocyanins, total proanthocyanidins, total γ-oryzanol, total tocopherols and total tocotrienols also varied among the tested mutants. The brans of mutants M-18, M-56 and M-50 contained more proanthocyanidins, γ-oryzanol, vitamin E than that of SA-586, respectively. M-54 accumulated more Fe content (588.7 mg kg⁻¹ bran dry weight) than SA-586 (100.1 mg kg⁻¹ bran dry weight).

CONCLUSIONS

The brans of M-18, M-50 and M-56 are good sources of proanthocyanidins, vitamin E and γ-oryzanol, respectively, while the bran of M-54 is rich in Fe. Thus these mutants could be used to produce high-value phytochemicals or Fe byproducts from bran during rice grain milling or as genetic resources for rice improvement programs.

摘要

背景

红米的糠层富含多种植物化学物质,包括原花青素、谷维素和维生素 E,对人体健康有益,但它含有低水平的必需矿物质,如铁和锌。本研究比较了红米 SA-586 及其NaN₃诱导突变体的糠层中蛋白质、脂质、植物化学物质和矿物质含量。

结果

NaN₃诱导突变体的株高降低。蛋白质、脂质、总酚、总黄酮、总花青素、总原花青素、总γ-谷维素、总生育酚和总生育三烯醇的含量在测试的突变体中也有所不同。突变体 M-18、M-56 和 M-50 的糠层中原花青素、γ-谷维素、维生素 E 的含量均高于 SA-586。M-54 积累的铁含量(588.7mgkg⁻¹糠层干重)高于 SA-586(100.1mgkg⁻¹糠层干重)。

结论

M-18、M-50 和 M-56 的糠层分别是原花青素、维生素 E 和γ-谷维素的良好来源,而 M-54 的糠层富含铁。因此,这些突变体可用于在稻米加工过程中从糠层中生产高附加值的植物化学物质或铁副产物,或作为稻米改良计划的遗传资源。

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