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在喂食缺乏草酸钙的基因工程植物的小鼠中,钙的生物利用度增加。

Increased calcium bioavailability in mice fed genetically engineered plants lacking calcium oxalate.

作者信息

Morris Jay, Nakata Paul A, McConn Michele, Brock Amanda, Hirschi Kendal D

机构信息

Vegetable and Fruit Improvement Center, Texas A&M University, College Station, TX 77845, USA.

出版信息

Plant Mol Biol. 2007 Jul;64(5):613-8. doi: 10.1007/s11103-007-9180-9. Epub 2007 May 20.

Abstract

Bioavailable calcium affects bone formation and calcification. Here we investigate how a single gene mutation altering calcium partitioning in the model forage crop Medicago truncatula affects calcium bioavailability. Previously, the cod5 M. truncatula mutant was identified which contains identical calcium concentrations to wild-type, but contains no oxalate crystals. In this study, equal number of male and female mice were randomly grouped and then fed one of four 45Ca-containing diets: M. truncatula extrinsically or intrinsically labeled, and cod5 extrinsically or intrinsically labeled. Absorption of the tracer was determined in the legs one day after consumption. The absorption was similar in the M. truncatula and cod5 extrinsically labeled diets; however, in the intrinsically labeled diets, calcium absorption was 22.87% (P < 0.001) higher in mice fed cod5. Our study presents the first genetic evidence demonstrating the nutritional impact of removing oxalate crystals from foods.

摘要

生物可利用钙会影响骨骼形成和钙化。在此,我们研究了在模式饲料作物蒺藜苜蓿中,一个改变钙分配的单基因突变如何影响钙的生物利用度。此前,已鉴定出蒺藜苜蓿cod5突变体,其钙浓度与野生型相同,但不含草酸盐晶体。在本研究中,将数量相等的雄性和雌性小鼠随机分组,然后喂食四种含45Ca的饲料之一:外在或内在标记的蒺藜苜蓿,以及外在或内在标记的cod5。在食用一天后,测定腿部示踪剂的吸收情况。在外在标记的蒺藜苜蓿和cod5饲料中,吸收情况相似;然而,在内在标记的饲料中,喂食cod5的小鼠钙吸收高出22.87%(P < 0.001)。我们的研究首次提供了基因证据,证明从食物中去除草酸盐晶体对营养的影响。

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