首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Soybean seed lipoxygenase genes: molecular characterization and development of molecular marker assays
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Soybean seed lipoxygenase genes: molecular characterization and development of molecular marker assays

机译:大豆种子脂氧合酶基因:分子表征和分子标记测定的发展

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Soybean seeds contain three lipoxygenase (Lox) enzymes that are controlled by separate genes, Lox1, Lox2 and Lox3. Lipoxygenases play a role in the development of unpleasant flavors in foods containing soybean by oxidation of polyunsaturated fatty acids. Null alleles for all three enzymes have been identified, lox1, lox2 and lox3, and are known to be inherited as simple recessive alleles. Previous studies determined that a missense mutation rendered Lox2 inactive; however, the genetic cause of either lox1 or lox3 mutation was not known. The objectives of this study were the molecular characterization of both lox1 and lox3 mutant alleles and the development of molecular markers to accelerate breeding for Lox-free soybean varieties. We identified two independent mutant alleles as the genetic causes of the lack of Lox1 in seeds of two lox1 mutant soybean lines. Similarly, a mutant allele that truncates Lox3 in a lox3 mutant soybean line was identified. Molecular markers were designed and confirmed to distinguish mutant, wild type, and heterozygous individuals for Lox1, Lox2 and Lox3 genes. Genotype and Lox phenotype analysis showed a perfect association between the inheritance of homozygous lox mutant alleles and the lack of Lox activity. Molecular characterization of a seed-lipoxygenase-free soybean line led to the discovery that an induced recombination event within the Lox1 gene was responsible for breaking the tight linkage in repulsion phase between mutant alleles at the Lox1 and Lox2 loci. The molecular resources developed in this work should accelerate the inclusion of the lipoxygenase-free trait in soybean varieties.
机译:大豆种子包含三种受单独的基因Lox1,Lox2和Lox3控制的脂氧合酶(Lox)酶。脂氧合酶通过氧化多不饱和脂肪酸,在含有大豆的食品中产生令人不快的风味中起作用。已经确定了lox1,lox2和lox3这三种酶的无效等位基因,已知它们是简单的隐性等位基因。先前的研究确定,错义突变使Lox2失活。但是,尚不清楚lox1或lox3突变的遗传原因。这项研究的目的是lox1和lox3突变体等位基因的分子表征,以及开发分子标记以加速无Lox大豆品种的育种。我们确定了两个独立的突变体等位基因,这是两个lox1突变体大豆品系种子中Lox1缺乏的遗传原因。类似地,鉴定了在lox3突变大豆系中截短Lox3的突变等位基因。设计并确认了分子标记,以区分Lox1,Lox2和Lox3基因的突变型,野生型和杂合型个体。基因型和Lox表型分析显示纯合的lox突变等位基因的遗传与缺乏Lox活性之间存在完美的联系。不含种子脂肪氧合酶的大豆品系的分子特征导致发现,Lox1基因内的诱导重组事件负责破坏Lox1和Lox2基因座突变等位基因之间排斥相的紧密联系。这项工作中开发的分子资源应加快大豆品种中无脂氧合酶性状的吸收。

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