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高铁含量的珍珠粟(黍稷)能提供更多可吸收的铁,但这受到多酚含量增加的限制。

Higher iron pearl millet (Pennisetum glaucum L.) provides more absorbable iron that is limited by increased polyphenolic content.

作者信息

Tako Elad, Reed Spenser M, Budiman Jessica, Hart Jonathan J, Glahn Raymond P

机构信息

USDA/ARS, Robert W, Holley Center for Agriculture and Health, Cornell University, Ithaca, NY 14853, USA.

出版信息

Nutr J. 2015 Jan 23;14:11. doi: 10.1186/1475-2891-14-11.

Abstract

BACKGROUND

Our objective was to compare the capacity of iron (Fe) biofortified and standard pearl millet (Pennisetum glaucum L.) to deliver Fe for hemoglobin (Hb)-synthesis. Pearl millet (PM) is common in West-Africa and India, and is well adapted to growing areas characterized by drought, low-soil fertility, and high-temperature. Because of its tolerance to difficult growing conditions, it can be grown in areas where other cereal crops, such as maize, would not survive. It accounts for approximately 50% of the total world-production of millet. Given the widespread use of PM in areas of the world affected by Fe-deficiency, it is important to establish whether biofortified-PM can improve Fe-nutriture.

METHODS

Two isolines of PM, a low-Fe-control ("DG-9444", Low-Fe) and biofortified ("ICTP-8203 Fe",High-Fe) in Fe (26 μg and 85 μg-Fe/g, respectively) were used. PM-based diets were formulated to meet the nutrient requirements for the broiler (Gallus-gallus) except for Fe (Fe concentrations were 22.1±0.52 and 78.6±0.51 μg-Fe/g for the Low-Fe and High-Fe diets, respectively). For 6-weeks, Hb, feed-consumption and body-weight were measured (n = 12).

RESULTS

Improved Fe-status was observed in the High-Fe group, as suggested by total-Hb-Fe values (15.5±0.8 and 26.7±1.4 mg, Low-Fe and High-Fe respectively, P<0.05). DMT-1, DcytB, and ferroportin mRNA-expression was higher (P<0.05) and liver-ferritin was lower (P>0.05) in the Low-Fe group versus High-Fe group. In-vitro comparisons indicated that the High-Fe PM should provide more absorbable-Fe; however, the cell-ferritin values of the in-vitro bioassay were very low. Such low in-vitro values, and as previously demonstrated, indicate the presence of high-levels of polyphenolic-compounds or/and phytic-acid that inhibit Fe-absorption. LC/MS-analysis yielded 15 unique parent aglycone polyphenolic-compounds elevated in the High-Fe line, corresponding to m/z = 431.09.

CONCLUSIONS

The High-Fe diet appeared to deliver more absorbable-Fe as evidenced by the increased Hb and Hb-Fe status. Results suggest that some PM varieties with higher Fe contents also contain elevated polyphenolic concentrations, which inhibit Fe-bioavailability. Our observations are important as these polyphenols-compounds represent potential targets which can perhaps be manipulated during the breeding process to yield improved dietary Fe-bioavailability. Therefore, the polyphenolic and phytate profiles of PM must be carefully evaluated in order to further improve the nutritional benefit of this crop.

摘要

背景

我们的目标是比较铁(Fe)生物强化珍珠粟和标准珍珠粟(黍稷)在为血红蛋白(Hb)合成提供铁方面的能力。珍珠粟在西非和印度很常见,非常适合在干旱、土壤肥力低和高温的种植区生长。由于其对恶劣生长条件的耐受性,它可以在其他谷类作物(如玉米)无法存活的地区种植。它约占世界粟总产量的50%。鉴于珍珠粟在世界缺铁地区的广泛使用,确定生物强化珍珠粟是否能改善铁营养状况很重要。

方法

使用珍珠粟的两个近等基因系,一个低铁对照品种(“DG - 9444”,低铁)和铁生物强化品种(“ICTP - 8203 Fe”,高铁),其铁含量分别为26 μg和85 μg Fe/g。配制以珍珠粟为基础的日粮,以满足肉鸡(家鸡)的营养需求,但铁含量除外(低铁和高铁日粮的铁浓度分别为22.1±0.52 μg Fe/g和78.6±0.51 μg Fe/g)。为期6周,测量血红蛋白、采食量和体重(n = 12)。

结果

高铁组的铁状态有所改善,总血红蛋白铁值表明了这一点(低铁组和高铁组分别为15.5±0.8 mg和26.7±1.4 mg,P<0.05)。与高铁组相比,低铁组的二价金属离子转运蛋白1(DMT - 1)、十二指肠细胞色素b(DcytB)和铁转运蛋白的mRNA表达较高(P<0.05),而肝脏铁蛋白较低(P>0.05)。体外比较表明,高铁珍珠粟应能提供更多可吸收铁;然而,体外生物测定的细胞铁蛋白值非常低。如此低的体外值,以及如先前所示,表明存在高水平的多酚类化合物或/和植酸,它们会抑制铁的吸收。液相色谱/质谱分析在高铁品系中产生了15种独特的母糖苷配基多酚类化合物,对应于m/z = 431.09。

结论

高铁日粮似乎能提供更多可吸收铁,血红蛋白和血红蛋白铁状态的增加证明了这一点。结果表明,一些铁含量较高的珍珠粟品种也含有较高浓度的多酚,这会抑制铁的生物利用度。我们的观察结果很重要,因为这些多酚类化合物是潜在的靶点,也许可以在育种过程中加以调控,以提高膳食中铁的生物利用度。因此,必须仔细评估珍珠粟的多酚和植酸谱,以进一步提高这种作物的营养益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2461/4325945/ca2e2591a272/12937_2014_868_Fig1_HTML.jpg

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