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The genetics of phytate and phosphate accumulation in seeds and leaves of Arabidopsis thaliana, using natural variation

机译:利用自然变异对拟南芥种子和叶片中植酸和磷酸盐积累的遗传

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摘要

Phytate (myo-inositol-1,2,3,4,5,6-hexakisphosphate, InsP6) is the most abundant P-containing compound in plants, and an important anti-nutritional factor, due to its ability to complex essential micro-nutrients, e.g. iron and zinc. Analysis of natural variation for InsP6 and Pi accumulation in seeds and leaves for a large number of accessions of Arabidopsis thaliana, using a novel method for InsP6 detection, revealed a wide range of variation in InsP6 and Pi levels, varying from 7.0 mg to 23.1 mg of InsP6 per gram of seed. Quantitative trait locus (QTL) analysis of InsP6 and Pi levels in seeds and leaves, using an existing recombinant inbred line population, was performed in order to identify a gene(s) that is (are) involved in the regulation of InsP6 accumulation. Five genomic regions affecting the quantity of the InsP6 and Pi in seeds and leaves were identified. One of them, located on top of chromosome 3, affects all four traits. This QTL appears as the major locus responsible for the observed variation in InsP6 and Pi contents in the Ler/Cvi RIL population; the Ler allele decreases the content of both InsP6 and Pi in seeds and in leaves. The InsP6/Pi locus was further fine-mapped to a 99-kb region, containing 13 open reading frames. The maternal inheritance of the QTL and the positive correlation between InsP6 and total Pi levels both in seeds and in leaves indicate that the difference in InsP6 level between Ler and Cvi is likely to be caused by a difference in transport rather than by an alteration in the biosynthesis. Therefore, we consider the vacuolar membrane ATPase subunit G, located in the region of interest, as the most likely candidate gene for InsP6/Pi.
机译:植酸盐(肌醇-1,2,3,4,5,6-六磷酸,InsP6)是植物中最丰富的含P化合物,并且由于其能够使必需的微量微量元素复合而具有重要的抗营养作用。营养,例如铁和锌。使用一种新颖的InsP6检测方法分析大量拟南芥种的种子和叶片中InsP6和Pi积累的自然变化,发现InsP6和Pi的水平变化范围很广,从7.0 mg到23.1 mg每克种子InsP6的数量。使用现有的重组近交系种群,对种子和叶片中的InsP6和Pi水平进行了定量性状基因座(QTL)分析,以鉴定参与InsP6积累调控的基因。确定了影响种子和叶片中InsP6和Pi数量的五个基因组区域。其中之一位于3号染色体的顶部,影响所有四个特征。这个QTL似乎是导致Ler / Cvi RIL群体中InsP6和Pi含量变化的主要基因座。 Ler等位基因可降低种子和叶片中InsP6和Pi的含量。将InsP6 / Pi基因座进一步精细映射到一个99kb区域,其中包含13个开放阅读框。 QTL的母系遗传以及种子和叶片中InsP6与总磷水平之间的正相关性表明,Ler和Cvi之间InsP6水平的差异很可能是由于运输差异而不是由于蛋白质的变化引起的。生物合成。因此,我们认为位于感兴趣区域的液泡膜ATPase亚基G是InsP6 / Pi最可能的候选基因。

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  • 来源
    《Theoretical and Applied Genetics》 |2003年第7期|1234-1243|共10页
  • 作者单位

    Laboratory of Genetics Wageningen University Arboretumaan 4 6703 BD Wageningen The NetherlandsGraduate School of Experimental Plant Science Wageningen University Arboretumlaan 4 6703 BD Wageningen The Netherlands;

    Laboratory of Plant Physiology Department of Plant Sciences Wageningen University Arboretumlaan 4 6703 BD Wageningen The NetherlandsShandong Institute of Pomology Taian 271000 Shandong P.R. China;

    Laboratory of Genetics Wageningen University Arboretumaan 4 6703 BD Wageningen The NetherlandsGraduate School of Experimental Plant Science Wageningen University Arboretumlaan 4 6703 BD Wageningen The Netherlands;

    Graduate School of Experimental Plant Science Wageningen University Arboretumlaan 4 6703 BD Wageningen The NetherlandsLaboratory of Plant Physiology Department of Plant Sciences Wageningen University Arboretumlaan 4 6703 BD Wageningen The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arabidopsis; QTL analysis; Phytate; Phosphate; Natural variation;

    机译:拟南芥;QTL分析;磷酸盐;磷酸盐;自然变异;

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