首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A mutation screening platform for rapeseed (Brassica napus L.) and the detection of sinapine biosynthesis mutants.
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A mutation screening platform for rapeseed (Brassica napus L.) and the detection of sinapine biosynthesis mutants.

机译:油菜(甘蓝型油菜)突变筛选平台和sinapine生物合成突变体的检测。

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We developed two mutant populations of oilseed rape (Brassica napus L.) using EMS (ethylmethanesulfonate) as a mutagen. The populations were derived from the spring type line YN01-429 and the winter type cultivar Express 617 encompassing 5,361 and 3,488 M2 plants, respectively. A high-throughput screening protocol was established based on a two-dimensional 8x pooling strategy. Genes of the sinapine biosynthesis pathway were chosen for determining the mutation frequencies and for creating novel genetic variation for rapeseed breeding. The extraction meal of oilseed rape is a rich protein source containing about 40% protein. Its use as an animal feed or human food, however, is limited by antinutritive compounds like sinapine. The targeting-induced local lesions in genomes (TILLING) strategy was applied to identify mutations of major genes of the sinapine biosynthesis pathway. We constructed locus-specific primers for several TILLING amplicons of two sinapine synthesis genes, BnaX.SGT and BnaX.REF1, covering 80-90% of the coding sequences. Screening of both populations revealed 229 and 341 mutations within the BnaX.SGT sequences (135 missense and 13 nonsense mutations) and the BnaX.REF1 sequences (162 missense, 3 nonsense, 8 splice site mutations), respectively. These mutants provide a new resource for breeding low-sinapine oilseed rape. The frequencies of missense and nonsense mutations corresponded to the frequencies of the target codons. Mutation frequencies ranged from 1/12 to 1/22 kb for the Express 617 population and from 1/27 to 1/60 kb for the YN01-429 population. Our TILLING resource is publicly available. Due to the high mutation frequencies in combination with an 8x pooling strategy, mutants can be routinely identified in a cost-efficient manner. However, primers have to be carefully designed to amplify single sequences from the polyploid rapeseed genome.
机译:我们使用EMS(甲烷磺酸乙酯)作为诱变剂,开发了两个油菜(突变甘蓝型油菜)突变种群。种群分别来自春季型YN01-429和冬季型Express 617,分别包含5,361和3,488 M 2 植物。基于二维8x合并策略,建立了高通量筛选方案。选择sinapine生物合成途径的基因以确定突变频率并为油菜育种创造新的遗传变异。油菜的提取粉是一种富​​含蛋白质的蛋白质,含有约40%的蛋白质。然而,其被用作动物饲料或人类食品受到诸如辛那平(sinapine)等抗营养化合物的限制。应用靶向诱导的基因组局部病变(TILLING)策略来鉴定sinapine生物合成途径主要基因的突变。我们为两个sinapine合成基因 BnaX.SGT 和 BnaX.REF1 的几个TILLING扩增子构建了基因座特异性引物,覆盖了80-90%的编码序列。对这两个种群的筛选都显示了 BnaX.SGT 序列中的229和341个突变(135个错义突变和13个无意义突变)和 BnaX.REF1 序列(162个错义,3个无意义, 8个剪接位点突变)。这些突变体为培育低芥子油菜籽提供了新的资源。错义和无义突变的频率对应于靶密码子的频率。 Express 617种群的突变频率范围为1/12至1/22 kb,YN01-429种群的突变频率范围为1/27至1/60 kb。我们的TILLING资源是公开可用的。由于高突变频率结合8x合并策略,因此可以以经济高效的方式常规识别突变体。然而,必须仔细设计引物以扩增多倍油菜籽基因组中的单个序列。

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