首页> 外文期刊>Plant Physiology and Biochemistry >Manipulation of sinapine, choline and betaine accumulation in Arabidopsis seed: Towards improving the nutritional value of the meal and enhancing the seedling performance under environmental stresses in oilseed crops
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Manipulation of sinapine, choline and betaine accumulation in Arabidopsis seed: Towards improving the nutritional value of the meal and enhancing the seedling performance under environmental stresses in oilseed crops

机译:操纵拟南芥种子中芥子碱,胆碱和甜菜碱的积累:在环境胁迫下提高油料作物的膳食营养价值并提高幼苗性能

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Sinapoylcholine (sinapine) is the most abundant antinutritional phenolic compound in cruciferous seeds. The quaternary ammonium compounds, choline, betaine and N,N-dimethylglycine, reside along a biosynthetic pathway linked to the synthesis of membrane phospholipids and neurotransmitters with various biological functions. In chicken, choline intake is required for optimal egg-laying performance and a choline supplement in diet is positively correlated with weight gains. A key step in sinapine biosynthesis is catalyzed by sinapoylglucose: choline sinapoyltransferase (SCT; EC 2.3.1.91) to form an ester linkage with sinapoylglucose and choline. The objective of this work was to reduce the sinapine content and simultaneously enhance free choline levels in cruciferous seeds. We report here the characterization of an Arabidopsis T-DNA insertion mutant lacking SCT activity in the seed. The sct mutant seeds contain less than 1% of sinapine and a more than 2-fold increase in free choline compared with wild type. We further expressed a choline oxidase (COX; EC 1.1.3.17) gene from Arthrobacter pascens in the Arabidopsis sct mutant and wild-type background using a napin gene promoter to convert free choline into betaine, an effective stress-alleviating compound in plants. Betaine was not detected in WT or sct mutant seeds. The sct+COX seeds contain nearly 2-fold greater levels of betaine relative to WT+COX seeds, demonstrating a positive correlation between endogenous choline and betaine production. In contrast, stable comparable levels of free choline were detected between sct+COX and WT+COX plants suggesting choline homeostasis likely prevent high levels of betaine production in the seed of transgenic COX plants. Crown Copyright (c) 2008 Published by Elsevier Masson SAS. All rights reserved.
机译:芥子碱(sinapine)是十字花科种子中含量最丰富的抗营养酚类化合物。季铵化合物胆碱,甜菜碱和N,N-二甲基甘氨酸沿着一条生物合成途径存在,该途径与具有各种生物学功能的膜磷脂和神经递质的合成有关。在鸡肉中,胆碱摄入量是最佳产蛋性能所必需的,饮食中胆碱补充剂与体重增加呈正相关。 sinapoylglucose:胆碱sinapoyltransferase(SCT; EC 2.3.1.91)催化sinapine生物合成的关键步骤,与sinapoylglucose和胆碱形成酯键。这项工作的目的是减少西那平的含量,同时提高十字花科种子中的游离胆碱水平。我们在这里报告缺乏种子中SCT活性的拟南芥T-DNA插入突变体的表征。与野生型相比,sct突变体种子含有少于1%的sinapine,其游离胆碱含量增加了2倍以上。我们进一步使用napin基因启动子在拟南芥sct突变体和野生型背景中表达了来自节杆菌的胆碱氧化酶(COX; EC 1.1.3.17)基因,使用napin基因启动子将游离胆碱转化为甜菜碱,这是一种有效的缓解植物胁迫的化合物。在WT或sct突变体种子中未检测到甜菜碱。相对于WT + COX种子,sct + COX种子的甜菜碱含量高出将近2倍,这表明内源性胆碱和甜菜碱的产量呈正相关。相比之下,在sct + COX和WT + COX植物之间检测到稳定的可比较水平的游离胆碱,表明胆碱稳态可能阻止了转基因COX植物种子中甜菜碱的高水平产生。官方版权(c)2008,由Elsevier Masson SAS发布。版权所有。

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