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首页> 外文期刊>BMC Plant Biology >A new allele of flower color gene W1 encoding flavonoid 3'5'-hydroxylase is responsible for light purple flowers in wild soybean Glycine soja
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A new allele of flower color gene W1 encoding flavonoid 3'5'-hydroxylase is responsible for light purple flowers in wild soybean Glycine soja

机译:花色基因W1的新等位基因编码类黄酮3'5'-羟化酶,负责野生大豆大豆大豆中的淡紫色花

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摘要

Background Glycine soja is a wild relative of soybean that has purple flowers. No flower color variant of Glycine soja has been found in the natural habitat. Results B09121, an accession with light purple flowers, was discovered in southern Japan. Genetic analysis revealed that the gene responsible for the light purple flowers was allelic to the W1 locus encoding flavonoid 3'5'-hydroxylase (F3'5'H). The new allele was designated as w1-lp. The dominance relationship of the locus was W1 > w1-lp > w1. One F2 plant and four F3 plants with purple flowers were generated in the cross between B09121 and a Clark near-isogenic line with w1 allele. Flower petals of B09121 contained lower amounts of four major anthocyanins (malvidin 3,5-di-O-glucoside, petunidin 3,5-di-O-glucoside, delphinidin 3,5-di-O-glucoside and delphinidin 3-O-glucoside) common in purple flowers and contained small amounts of the 5'-unsubstituted versions of the above anthocyanins, peonidin 3,5-di-O-glucoside, cyanidin 3,5-di-O-glucoside and cyanidin 3-O-glucoside, suggesting that F3'5'H activity was reduced and flavonoid 3'-hydroxylase activity was increased. F3'5'H cDNAs were cloned from Clark and B09121 by RT-PCR. The cDNA of B09121 had a unique base substitution resulting in the substitution of valine with methionine at amino acid position 210. The base substitution was ascertained by dCAPS analysis. The polymorphism associated with the dCAPS markers co-segregated with flower color in the F2 population. F3 progeny test, and dCAPS and indel analyses suggested that the plants with purple flowers might be due to intragenic recombination and that the 65 bp insertion responsible for gene dysfunction might have been eliminated in such plants. Conclusions B09121 may be the first example of a flower color variant found in nature. The light purple flower was controlled by a new allele of the W1 locus encoding F3'5'H. The flower petals contained unique anthocyanins not found in soybean and G. soja. B09121 may be a useful tool for studies of the structural and functional properties of F3'5'H genes as well as investigations on the role of flower color in relation to adaptation of G. soja to natural habitats.
机译:背景大豆是大豆的近缘种,具有紫色的花朵。在自然栖息地中未发现大豆大豆的花色变种。结果在日本南部发现了带有浅紫色花朵的种质B09121。遗传分析表明,负责浅紫色花朵的基因与编码类黄酮3'5'-羟化酶(F3'5'H)的W1位点等位基因。新的等位基因被指定为w1-lp。该基因座的优势关系为W1> w1-lp> w1。在B09121与带有w1等位基因的Clark近等基因系的杂交中,产生了1株F 2 植物和4株紫色的F 3 植物。 B09121的花瓣中含有较少量的四种主要花色苷(麦维京3,5-二-O-葡糖苷,矮牵牛苷3,5-二-O-葡糖苷,飞燕草素3,5-二-O-葡糖苷和飞燕草素3-O-糖苷)常见于紫色花中,并含有少量上述花青素的5'-未取代形式:peonidin 3,5-di-O-葡萄糖苷,cyanidin 3,5-di-O-葡萄糖苷和cyanidin 3-O-葡萄糖苷,表明F3'5'H活性降低,类黄酮3'-羟化酶活性提高。通过RT-PCR从Clark和B09121克隆了F3'5'H cDNA。 B09121的cDNA具有独特的碱基取代作用,导致缬氨酸在210位氨基酸上被蛋氨酸取代。碱基取代通过dCAPS分析确定。与dCAPS标记相关的多态性与F 2 种群中的花朵颜色共分离。 F 3 子代测试以及dCAPS和indel分析表明,紫色花朵的植物可能是由于基因内重组所致,而导致这种基因功能异常的65 bp插入可能已被消除。结论B09121可能是自然界发现的花朵颜色变异的第一个例子。淡紫色的花由编码F3'5'H的W1基因座的新等位基因控制。花瓣中含有大豆和大豆大豆中未发现的独特花色苷。 B09121可能是研究F3'5'H基因的结构和功能特性以及调查花色与大豆大豆适应自然栖息地的作用的有用工具。

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