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Genetic Manipulation of Condensed Tannins in Higher Plants1 : II. Analysis of Birdsfoot Trefoil Plants Harboring Antisense Dihydroflavonol Reductase Constructs

机译:高等植物缩合单宁的遗传操纵 植物1 :II。鸟脚三叶植物怀有反义词的分析 二氢黄酮醇还原酶构建体

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摘要

We have produced and analyzed transgenic birdsfoot trefoil (Lotus corniculatus L.) plants harboring antisense dihydroflavonol reductase (AS-DFR) sequences. In initial experiments the effect of introducing three different antisense Antirrhinum majus L. DFR constructs into a single recipient genotype (S50) was assessed. There were no obvious effects on plant biomass, but levels of condensed tannins showed a statistical reduction in leaf, stem, and root tissues of some of the antisense lines. Transformation events were also found, which resulted in increased levels of condensed tannins. In subsequent experiments a detailed study of AS-DFR phenotypes was carried out in genotype S33 using pMAJ2 (an antisense construct comprising the 5′ half of the A. majus cDNA). In this case, reduced tannin levels were found in leaf and stem tissues and in juvenile shoot tissues. Analysis of soluble flavonoids and isoflavonoids in tannin down-regulated shoot tissues indicated few obvious default products. When two S33 AS-DFR lines were outcrossed, there was an underrepresentation of transgene sequences in progeny plants and no examples of inheritance of an antisense phenotype were observed. To our knowledge, this is the first report of the genetic manipulation of condensed tannin biosynthesis in higher plants.
机译:我们已经生产和分析了带有反义二氢黄酮醇还原酶(AS-DFR)序列的转基因鸟足三叶草(Lotus corniculatus L.)植物。在最初的实验中,评估了将三种不同的反义抗大枣(Antirrhinum majus L.)DFR构建体引入单个受体基因型(S50)的效果。对植物生物量没有明显影响,但单宁缩合水平显示某些反义品系的叶,茎和根组织在统计上减少。还发现了转化事件,导致单宁缩合水平增加。在随后的实验中,使用pMAJ2(包含A. majus cDNA 5'一半的反义构建体)在S33基因型中进行了AS-DFR表型的详细研究。在这种情况下,在叶片和茎组织以及幼枝组织中发现单宁水平降低。单宁酸下调的芽组织中可溶性黄酮和异黄酮的分析表明,几乎没有明显的默认产物。当两个S33 AS-DFR品系杂交时,在后代植物中转基因序列的表达不足,并且未观察到反义表型遗传的实例。据我们所知,这是高等植物中缩合单宁生物合成的遗传操作的第一个报道。

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