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Marker assisted selection of new high oleic and low linolenic winter oilseed rape ( Brassica napus L.) inbred lines revealing good agricultural value

机译:标记辅助选择新的高油酸和低亚麻酸冬季油菜(Brassica Napus L.)自交系,揭示了良好的农业价值

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Development of oilseed rape ( Brassica napus L.) breeding lines producing oil characterized by high oleic and low linolenic acid content is an important goal of rapeseed breeding programs worldwide. Such kind of oil is ideal for deep frying and can also be used as a raw material for biodiesel production. By performing chemical mutagenesis using ethyl methanesulfonate, we obtained mutant winter rapeseed breeding lines that can produce oil with a high content of oleic acid (C18:1, more than 75%) and a low content of linolenic acid (C18:3, less than 3%). However, the mutant lines revealed low agricultural value as they were characterized by low seed yield, low wintering, and high content of glucosinolates in seed meal. The aim of this work was to improve the mutant lines and develop high-oleic and low-linolenic recombinants exhibiting both good oil quality and high agronomic value. The plant materials used in this study included high-oleic and low-linolenic mutant breeding lines and high-yielding domestic canola-type breeding lines of good agricultural value with high oleic acid content and extremely low glucosinolates content. Field trials were conducted in four environments, in a randomized complete block design. Phenotyping was performed for wintering, yield of seed and oil, and seed quality traits. Genotype × environment interaction was investigated with respect to the content of C18:1 and C18:3 acids in seed oil. Genotyping was done for the selection of homozygous high oleic and low linolenic lines using allele-specific CAPS markers and SNaPshot assay, respectively. Finally, new high oleic and low linolenic winter rapeseed recombinant lines were obtained for use as a starting material for the development of new varieties that may be of high value on the oil crop market.
机译:油菜(甘蓝型油菜L.)育种生产线的开发生产的油脂具有高油菜和低亚麻酸含量的含油是全球菜籽油育种计划的重要目标。这种油是深度油炸的理想选择,也可用作生物柴油生产的原料。通过使用甲磺酸乙酯进行化学诱变,我们获得了可以生产具有高含量的油酸(C18:1,超过75%)和低含量的亚麻酸(C18:3,小于3%)。然而,突变线显示出低农业价值,因为它们的特征在于种子产量低,越水和种子粉中的葡萄糖苷的高含量。这项工作的目的是改善突变线,并开发高油酸和低亚麻重组,表现出良好的油质和高农艺价值。本研究中使用的植物材料包括高油酸和低亚麻酸突变型育种线,高产国产水煮液型繁殖系良好的农业价值,具有高油酸含量和极低的葡糖苷含量。现场试验在四种环境中进行,在随机完整的块设计中。进行表型以进行越冬,种子和油,种子质量性状。研究了基因型×在种子油中的C18:1和C18:3酸的含量研究了环境相互作用。通过分别使用等位基因特异性帽标记和快照测定选择纯合高油酸和低亚麻酸线来完成基因分型。最后,获得了新的高油酸和低亚麻酸冬季油菜籽重组系以用作开发新品种的起始材料,这些品种可能对石油作物市场具有高价值。

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